亚洲乱码中文字幕久久孕妇,亚洲AV午夜精品一区二区三区,精品人妻一区二区三区日产,国产69精品久久久久网站
文章詳情

四倍體期鼠胚胎干細胞雜交

日期:2025-09-04 07:37
瀏覽次數(shù):5525
摘要:

MOLECULAR AND CELLULAR BIOLOGY, June 2003, p. 3982–3989 Vol.23,No. 11
0270-7306/03/$08.000 DOI: 10.1128/MCB.23.11.3982–3989.2003
Copyright ? 2003, American Society for Microbiology. AllRightsReserved.
Hybrid Embryonic Stem Cell-Derived Tetraploid Mice Show
Apparently Normal Morphological, Physiological, and
Neurological Characteristics
Frieder Schwenk,1 Branko Zevnik,1 Jens Bru¨ning,2 MathiasRo¨hl,2Antje Willuweit,1
Anja Rode,1 Thomas Hennek,1 Gunther Kauselmann,1RudolfJaenisch,3
and Ralf Ku¨hn1*
Artemis Pharmaceuticals GmbH1 and Klinik II und Poliklinikfu¨rInnere Medizin der Universita¨t Ko¨ln and
Center of Molecular Medicine,2 Cologne, Germany, andWhiteheadInstitute for Biomedical Research and
Department of Biology, Massachusetts Institute ofTechnology,Cambridge, Massachusetts3
Received 23 October 2002/Returned for modification 25November2002/Accepted 24 February 2003
ES cell-tetraploid (ES) mice are completely derived fromembryonicstem cells and can be obtained at high
efficiency upon injection of hybrid ES cells intotetraploidblastocysts. This method allows the immediate
generation of targeted mouse mutants from genetically modifiedEScell clones, in contrast to the standard
protocol, which involves the production of chimeras andseveralbreeding steps. To provide a baseline for the
analysis of ES mouse mutants, we performed aphenotypiccharacterization of wild-type B6129S6F1 ES mice
in relation to controls of the same age, sex, and genotyperaisedfrom normal matings. The comparison of 90
morphological, physiological, and behavioral parametersrevealedelevated body weight and hematocrit as the
only major difference of ES mice, which exhibited anotherwisenormal phenotype. We further demonstrate that
ES mouse mutants can be produced from mutant hybrid ES cellsandanalyzed within a period of only 4
months. Thus, ES mouse technology is a valid research toolforrapidly elucidating gene function in vivo.
The standard protocol to derive mouse mutants currently
requires the production of germ line chimeras from heterozygous
targeted embryonic stem (ES) cells, followed by at least
two breeding steps to obtain homozygous mutants (2). Thus,
the production of a mutant strain is a time-intensivetaskexceeding
12 months prior to the analysis of ***** mutants. In
addition, substantial resources are required for the breeding
and genotyping of several hundred mice involved in a typical
knockout project. Besides this classical approach, conditional
gene targeting through Cre/LoxP-mediated recombination is
increasingly used as it allows the spatial and temporal control
of gene inactivation (13, 21). Given that a Cre transgene needs
to be introduced via additional breeding steps, the production
of conditional knockout mice involves four reproductive cycles
requiring at least 16 months before the target gene’s function
can be analyzed in vivo.
Due to these extensive timelines, the impact of targeted
mutants in high-throughput functional genome analysisiscurrently
limited, creating a demand for a time-saving single-step
procedure. Cloning of mice does not provide a viablealternative
because the nuclear transplantation procedure is inefficient
and a variety of abnormalities have been described in
cloned mice which likely result from incompletegenomereprogramming
(8, 17, 25, 30). Alternatively, ES cell-tetraploid
(ES) mice can be produced in a single step throughtheintroduction
of diploid ES cells into tetraploid blastocysts (16). The
latter provide an initial host environment forthedifferentiation
of ES cells but do not contribute to the embryo at later
developmental stages. Although the methodology to produce
ES mice from inbred ES cell lines was described more than a
decade ago, its application was limited due to the extremely
low frequency at which viable ES pups are recovered (16).
Recently, this technology was significantly improved through
the discovery that ES cell lines derived from hybrid mouse
strains support the development of viable ES mice at a 50-fold
higher rate than inbred ES cells (4). Importantly,theproduction
of ES mice is technically not more demanding than the
generation of chimeras (15). Thus, ES mouse technology now
offers the opportunity to efficiently produce targeted mouse
mutants directly from hybrid ES cell clones within a single
mouse generation and without the requirement for further
breeding. With this approach, classical as well as conditional
mouse mutants can be obtained in less than half the time
compared to the current knockout protocol. The technical
feasibility of this novel approach is demonstrated by therecent
report that hybrid ES cell lines tolerate multiple consecutive
gene-targeting cycles without loosing their potencyfortetraploid
blastocyst complementation (5, 23).
The biological characteristics of ES cell-tetraploid mice have
not yet been fully described. This aspect is ofparticularinterest
because faulty expression of imprinted genes and increased
body weight have been documented for both cloned neonates
and ES mice (9). A validation of the biological characteristics
of ES mice is therefore required to provide a baseline for the
phenotyping of ES mouse mutants.
We report here an extensive phenotypic characterization of
***** B6129S6F1 ES mice derived from wild-type ES cells in
relation to controls of the same age, sex, and genotype raised
by normal breeding. The comparison of multiple morphologi-
* Corresponding author. Present address: GSF Research Center,
Institute for Developmental Genetics, IngolstaedterLandstrasse,1,
85764 Neuherberg/Munich, Germany. Phone: 49 89 3187 3674.Fax:49
89 3187 3099. E-mail: ralf.kuehn@gsf.de.
3982
cal, physiological, and neurological parametersrevealedelevated
body weights and hematocrits of ES mice as the only
differences and an otherwise normal phenotype. We further
demonstrate that ES mouse mutants can be produced from
mutant hybrid ES cells and analyzed within a period of only 4
months. Our results indicate that ES mouse technology provides
a useful research tool which expedites the generation and
analysis of designed mouse mutants for functional genome
analysis.
MATERIALS AND METHODS
Cell culture. ES cells were cultured in Dulbecco’s modifiedEagle’smedium
with 15% fetal calf serum containing 2,000 U of leukemiainhibitoryfactors (LIF)
(Chemicon International, Hofheim, Germany) per ml onmitomycinC-treated
embryonic fibroblasts as previously described (27). Fortheestablishment of
wild-type ES lines and adenomatous polyposis colimultipleintestinal neoplasia
(APCMin) ES cell lines, blastocysts were collected 3.5dayspostcoitum from
C57BL/6B6JRj females (Janvier, Le Genest St Isle, France) matedto129S6/
SvEvTac@Bom males (M&B,Ry,Denmark) or from C57BL/6J-APCMin females
(Jackson Laboratories, Bar Harbor, Maine) matedto129S2/SvPasIco-
CrlBR males (Charles River Laboratories, Sulzfeld,Germany),respectively.
Blastocysts were cultured in ES cell medium on a feeder layer;atday 5 the
outgrowth was dissociated by pipetting in trypsin solution, andthecell suspension
was replated on a fresh feeder layer. These plates were screened3days later
for the presence of ES cell colonies. About half of thedissociatedblastocysts
developed into ES cell lines, which were further expanded.
All ES cell lines were controlled for a correct karyotypebychromosome
counts on Giemsa-stained metaphases, and their sex was determinedbyhybridization
of Southern-blotted genomic DNA with a Ychromosome-specificprobe
(1). ES cell lines derived from mice heterozygous for theAPCMinmutation were
further characterized for the presence or absence of theAPCMinallele with a
PCR assay of genomic DNA with primers 5-GCCATCCCTTCACGTTAG-3
(0.02 M), 5-TTCCACTTTGGCATAAGGC-3 (1.0 M), and 5-TTCTGAG
AAAGACAGAAGTTA-3 (3.5 M) and cycling conditions of 94°C for5min,
56°C for 2 min, and 72°C for 3 min for 28 cycles, followed byafinal extension step
at 94°C for 5 min.
Production of ES and control mice. ES mice were producedbytetraploid
embryo complementation as previously described (4, 15).Briefly,embryo culture
was carried out in microdrops on standard bacterial petridishes(Falcon) under
mineral oil (Sigma). Modified CZB medium was used for embryocultureunless
otherwise noted. HEPES-buffered CZB was used for roomtemperatureoperations.
After administration of hormones, superovulated B6D2F1femaleswere
mated with B6D2F1 males (Janvier). Fertilized oocytes wereisolatedfrom the
oviduct, and any remaining cumulus cells were removedwithhyaluronidase.
After overnight culture, two-cell embryos were electrofused withtheCF-150B
cell fusion instrument (BLS Ltd., Budapest, Hungary) toproducetetraploid
embryos. Embryos that had not undergone fusion within 1 hwerediscarded.
Embryos were then cultured in vitro to the blastocyst stage.Formicroinjection,
10 to 20 blastocysts were placed in a drop of Dulbecco’smodifiedEagle’s
medium with 15% fetal calf serum under mineral oil. Aflat-tippedpiezo-actuated
microinjection pipette with an internal diameter of 12 to 15 mwasused to
inject 20 ES cells into each tetraploid blastocyst. Priortoblastocyst injection, ES
cells were trypsinized, resuspended in ES cell medium, andplatedfor 30 min to
remove feeder cells and debris. After recovery, 10injectedblastocysts were
transferred to each uterine horn of pseudopregnant NMRI females2.5days post
coitum. Recipient mothers were sacrificed at day ofembryonicdevelopment 19.5
(E 19.5), and pups were quickly removed and cross-fosteredtolactating NMRI
females.
B6129S6F1 ES mice were generated with the wild-type ES celllineART4/12
derived from a male B6129S6F1 blastocyst. Control males oftheB6129S6F1
genotype were raised from matings of 129S6/SvEvTac@Bom males(M&B)with
C57BL/B6JRj females (Janvier). ES and control mice were born inthesame
week and raised under the same housing conditions. A second groupofnormal
mice (in vitro controls) were raised from B6129S6F1 zygotesthatwere treated
like B6D2F1 tetraploid blastocysts except that electrofusion andEScell injections
were omitted. B6129S6F1 zygotes were cultured to theblastocyststage in
modified CZB medium and transferred into pseudopregnantNMRIfemales.
Pups of the in vitro control group were recovered like ES micebycaesarean
section at E 19.5 and cross-fostered to lactating NMRI females.
B6129S2F1-APCMin ES mice were generated with the ES celllineART/
APCMin-8, established from a male B6129S2F1-APCMinblastocyst.Control
males of the B6129S2F1-APCMin genotype were obtained from matingsof129S2/
SvPasIcoCrlBR males (Charles River Laboratories)withC57BL/6J-APCMin females
(Jackson Laboratories). All mice were typed for the presenceofthe
APCMin allele with a specific PCR assay with tail DNA asdescribedabove. ES
and control mice were born in the same week and raised underthesame housing
conditions. Both groups were maintained on the high-fat diet US17asdescribed
previously (19).
The analysis of glycosylphosphatidylinositol (GPI) isoformswasperformed
exactly as described previously (15). Briefly, tissues from 8-to12-week-old
B6D2F1 control or B6129S6F1 ES mice were homogenized insamplebuffer and
centrifuged. Aliquots of the supernatants were applied toTitan-IIIcelluloseacetate
plates with the Super Z applicator kit and run for 90 min at 300Vin a
zip zone chamber with Supreheme buffer (all reagents fromHelenaLaboratories
Inc., Beaumont, Tex.). Next, the plates were overlaid withanagarose-staining
solution mixture, incubated for 10 min in the dark, and fixedinacetic acidglycerol
before being photographed.
Phenotype analysis. An experienced veterinarianpathologistperformed the
external examination and necropsy of B6129S6F1 ES and controlmice.For the
preparation of histological sections, mice were perfused intheheart with Bouin’s
solution, and the organs were embedded in paraffin, sectioned,andstained with
hematoxylin-eosin. Brains were stained in addition with acombinedNissl/Luxol
fast blue stain. Images were recorded with a Leica DMEmicroscopeconnected
to a Hitachi HVC20 M camera with the Diskus imaging program(C.Hilgers,
Ko¨nigswinter, Germany). Tumors in the complete small intestineofAPCMin ES
and control mice were counted and also subjected tohistologicalanalysis.
For measurement of hematological parameters, blood-EDTAsampleswere
collected from the retrobulbar venous plexus from each animalfordetermination
of complete blood counts, including differentiation of whitecells.Hematology
parameters were measured from EDTA-blood with anautomaticelectronic cell
counter (CD3500; Abbott Diagnostics, Baar, Switzerland).Forclinical biochemistry
tests, serum was prepared immediately after blood coagulationandanalyzed
in a Cobas Integra 700 instrument (Roche Diagnostics,Rotkreuz,Switzerland)
with Roche reagent kits under the measurement conditionsspecifiedby the
International Federation of Clinical Chemistry at 37°C.Precedingthe hematological
and biochemical measurements, the CD3500 and the Cobas Integra
instruments were tested for accuracy and precision withqualitycontrol EDTAblood
and serum samples, respectively. Data analysis was performedwitha
Mann-Whitney U test, and the level of significance was set atP0.05. All
analyses were performed by Frimorfo Ltd. (Fribourg,Switzerland).Body weights
were measured at the age of 9 to 30 weeks with a standardlaboratoryelectronic
balance; data analysis was performed with a Student’s t test,andthe level of
significance was set at P 0.05.
For the behavioral assessment of 10-week-old ES (n 5) and control(n5)
mice, mice were housed individually per cage and maintained inanincubator
with controlled temperature (21 to 22°C) and a reversedlight-darkcycle (12 h/12
h) with food and water available ad libitum. All experimentswerecarried out by
Neurofit S.A. (Illkirch, France) in accordance withinstitutionalguidelines. The
test battery was based on a modified Irwin screen (10).Allparameters were
scored to provide a quantitative assessment. Aggressivenessandconvulsions
when the animals were handled were recorded. To assessnormalbehavior, each
animal was placed in a glass viewing jar 17 cm in height and 21cmin diameter
for 5 min. On the back of the jar, a sheet of white absorbentpaperwas placed.
The jar was placed in a room with red lights. Without disturbingtheanimal, the
spontaneous activity, respiration rate, and tremors wererecorded,and the
amount of urination or defecation was measured at the end oftheobservation
period.
Afterwards, each animal was transferred from the viewing jar toanopen field
without being handled. The observation was performed in aPlexiglas(52 by 52
by 40 cm) open field divided into nine equal squares, placed inadark room with
red light. During the transfer into the new environment,transferarousal was
noted, and palpebral closure was recorded immediately afterthetransfer. Within
the open field, the locomotor activity, tail elevation,touchescape, and startle
response (90-dB noise) were recorded. Finally, the animalwasremoved from the
open field to record visual placing, grip strength, body tone,andcorneal and
righting reflexes as described previously (10). The skin colorwasrecorded from
the plantar surface and digits of forelimbs. Data analysiswasperformed with the
Mann-Whitney U test. The level of significance was set atP0.05.
Serum insulin and leptin levels were determined byenzyme-linkedimmunosorbent
assay (ELISA) with serum from fed and fasted mice,respectively.
Blood was collected from the tail vein, and plasma was separatedbycentrifugation
at 4°C. The ELISAs were performed according to themanufacturer’sprotocol
(Crystal Chem. Inc.). Glucose and insulin tolerance testswereperformed
VOL. 23, 2003 CHARACTERISTICS OF ES CELL TETRAPLOID MICE 3983
on animals that had been fasted overnight. Blood glucose valuesweredetermined
from tail venous blood with an automatic glucosereader(Glucomen
sensor; A. Menarini Diagnostics). For the glucose tolerancetest,animals were
injected with 2 mg of D-glucose per g of body weight intotheperitoneal cavity.
Blood glucose levels were measured before and 15, 30, 60, and120min after the
administration of glucose. For the insulin tolerance test,animalswere injected
with 1 IU of human insulin (Novo Nordisk Pharma) per kg ofbodyweight. Blood
glucose levels were measured before and 15, 30, and 60 minafterintraperitoneal
administration of insulin. For measurement of white adiposetissuemass, the
peritoneal cavity was opened and epididymal fat pads werecompletelyremoved
and weighed. Data analysis was performed with a Student’s ttest,and the level
of significance was set at P 0.05.
RESULTS
Generation of wild-type ES mice. To generate ES mice from
wild-type ES cells, we established hybrid ES cell lines from
blastocysts of the (C57BL/6 129S6)F1 genotype (B6129S6F1).
Upon injection into tetraploid B6D2F2 blastocysts, ES cell
lines of this genotype generated ES pups at an efficiency of 10
to 15%, comparable to the results obtained with other hybrid
ES lines (4). The ES cell origin of these mice was confirmed by
the analysis of glucose phosphate isomerase (GPI) isoenzymes
(15) in tissue lysates. Figure 1 shows a comparison of samples
from a B6D2F1 control (GPI-a/b) with two mice derived from
tetraploid B6D2F2 blastocysts (GPI a/a, a/b, or b/b) injected
with cells of the B6129S6F1 ES line ART4/12 (GPI-b/c). The
presence of the GPI-c isoform as either the c/c homodimer or
c/b heterodimer in all samples of ES mice confirmed their
origin from ART4/12 ES cells. GPI c/c dimers are unstable and
show a less intense signal than GPI b/b dimers (18, 29). The
GPI a isoform was not detected in lysates from ES mice (Fig.
1), excluding a contribution from GPI a/a or GPI a/b host
blastocysts; only a small fraction (one-eighth) of tetraploid
blastocysts are expected to exhibit only the GPI b isoform. The
same results were obtained from the analysis of six additional
ES mice (R. Ku¨hn, unpublished data).
For the phenotypic characterization of ES mice, we selected
a group of 10 males derived from the B6129S6F1 ES cell line
ART4/12 through tetraploid blastocyst complementation and
an age-matched control group of the same genotype raised by
normal breeding. To control for potential effects of the embryo
culture and transfer procedure, we raised a third group of mice
from B6129S6F1 zygotes that were cultivated like tetraploid
blastocysts and transferred into pseudopregnant females (in
vitro controls).
Morphological and metabolic analysis of ES and control
mice. The morphology analysis program for B6129S6F1 ES
mice and controls included skeleton radiography,externalexamination,
body weight measurement, macroscopic examination
of body cavities, organs, and tissues (necropsy),andpathological
diagnosis based on histological sections of various
organs. Inspection of all external and internal organs and the
skeleton of five 10-week-old ES mice and five controls revealed
no visible abnormalities in either group. Thehistologicalexamination
of sections prepared from liver, lung, and intestine
(Fig. 2) as well as heart, kidney, and brain also showed no
difference between ES and control mice. These results indicate
that the embryonic and postnatal development of organs and
tissues in ES mice proceeds normally.
As expected from previous studies (4), ***** ES mice and
controls from in vitro-cultured embryos exhibited elevated
body weight relative to controls derived from natural matings
(Fig. 3). The relative weights of ES mice versus normalcontrols
did not increase but were stable over the time measured
(9 to 30 weeks), with a mean elevation of 21%. The same result
was obtained for ES mice derived from an independent
B6129S6F1 ES cell line (R. Ku¨hn, unpublished data). We did
not measure the birth weight of ES mice and controls, but an
earlier study reported 20% elevated birth weight for ES
neonates (4).
In order to characterize whether the elevated weight of ES
mice resulted from the development of obesity, we measured
food intake, white adipose tissue mass, plasma insulin, and
leptin levels of five 11-month-old B6129S6F1 ES mice and five
normal controls. We found no significant differences between
these groups for any of these parameters (Fig. 4A to D). To
further characterize glucose metabolism in ES mice, weperformed
insulin and glucose tolerance tests with five 11-monthold
B6129S6F1 ES mice and five normal controls of the same
age and genotype. These studies revealed that ES mice showed
a normal blood glucose response upon challenge with insulin
or glucose (Fig. 4E and F). We conclude that ES mice, unlike
mice cloned by nuclear transfer (25), have a normal glucose
and lipid metabolism and do not become obese.
Hematological analysis of ES and control mice. To further
assess the health status of ES mice, we performedahematological
analysis and determined levels of metabolites, enzymes,
and electrolytes in the serum of five B6129S6F1 ES and five
control mice at the age of 10 weeks. The concentrations of four
metabolites, three enzymes, and seven electrolytes under study
showed no significant differences between ES and control mice
(Table 1), indicative of a normal metabolism and normal liver
and kidney functions in ES mice. The numbers ofbloodlymphocytes,
monocytes, basophils, eosinophils, and neutrophils
showed no significant differences between the groups (Table
1), suggesting a normal immune cell lineage differentiation in
ES mice. The only differences found in the ES mouse group
were mildly enhanced hematocrit values and erythrocyte numbers.
Behavioral analysis of ES and control mice. To compare the
behavioral and neurological functions of B6129S6F1 ES mice
FIG. 1. Analysis of GPI isoenzymes in tissue lysates of ES and
control mice. Lysates of the indicated tissues of a B6D2F1(GPIa/b)
control mouse and two ES mice (ES#T35, ES#T34) derived from the
ART4/12 ES cell line (GPI b/c) were separated byelectrophoresison
a cellulose-acetate gel. The gel was stained for GPI enzymeactivityand
fixed. The run positions of the GPI homo- and heterodimers are
indicated by arrows. The anode () and cathode () positions are
indicated.
3984 SCHWENK ET AL. MOL. CELL. BIOL.
and normal mated controls, five mice each were assessed
through the behavioral observation profile described by Irwin
(10). As shown in Table 2, ES mice performed like normal
mated controls for all 17 parameters of the test batterywithout
statistically significant differences between the groups.ESmice
exhibited normal responses to environmental stimuli, including
social, exploratory, and avoidance behavior, indicating that
their muscle and motor neuron, spinocerebellar, and sensory
functions were within the normal range. Furthermore,theautonomic
functions and reflexes of the ES mice were indistinguishable
from those of the controls; bizarre behavior and
convulsions were not observed in any of the groups. Upon
mating to wild-type C57BL/6 females, all ES males tested (n
11) proved to be fertile, with an average first litter sizeofsix
pups (range, three to nine), indicating normal mating behavior.
Tumor development in APCMin mutant ES mice. ES mouse
technology allows the assessment of mutant phenotypes within
a short time, as mice can be produced directly from genetically
modified ES cells through tetraploid embryo complementation.
To demonstrate the feasibility of this approach, we generated
ES mice and control mice harboring the Min allele
of the adenomatous polyposis coli (APC) tumor suppressor
gene, an established genetic model for colorectal cancer in
humans (6, 24). Mutant ES mice were produced with a male
ES cell line (ART/APCMin-8), established from a blastocyst
of the (C57BL/6-APCMin 129S2)F1 genotype (B6129S2F1-
APCMin). Tumor development in mice of this genetic background
has been described previously (7).
Upon injection of ART/APCMin-8 ES cells into tetraploid
blastocysts, ES mice were obtained at normal frequency (10%).
A control group of B6129S2F1-APCMin males was raised from
contemporaneous normal matings. At 3 months of age, the
small intestines of three B6129S2F1-APCMin ES mice and two
normal mated controls were analyzed for the presence of tumors.
All mice under study exhibited intestinal tumors typical
of the APCMin mutation (five to nine tumors in ES mice, 7 to
17 tumors in controls). While the small groups do not allow
quantitative comparison of tumorigenesis, the phenotype of
the APCMin ES mice demonstrates that ES mouse mutants are
suitable for assaying tumor suppressor gene function. With the
availability of genetically modified ES cells, we produced and
analyzed ***** mutants within a period of 4 months. Inaddition,
ART/APCMin-8 ES cells provide a useful tool allowing us
to inactivate other putative tumor modifiers in the APCMin
FIG. 2. Histological analysis of ES and control mice. Tissuesof10-week-old B6129S6F1 ES mice and normal mated controls werefixed,paraffin
embedded, sectioned, and stained with either cresyl violet(brain)or hematoxylin and eosin (liver, lung, and colon).Magnification,40.
FIG. 3. Body weights of B6129S6F1 ES and control mice. The body
weights of ES males (solid squares), control mice fromnormalmatings
(open squares), and control mice from in vitro-culturedembryos(open
triangles) were measured at the indicated ages. Resultsareexpressed
as mean values   standard deviations.
VOL. 23, 2003 CHARACTERISTICS OF ES CELL TETRAPLOID MICE 3985
background to assess the phenotype of compound mutants in a
time-saving manner.
DISCUSSION
The recent finding that viable ES mice can be efficiently
produced with hybrid ES cells (4), even after multiple rounds
of gene targeting (5, 23), led us to study the utility of these
mice for biological studies. To assess the phenotype of hybrid
ES mice, we studied a variety of morphological, physiological,
and neurological parameters able to indicate abnormal embryonic
or postnatal development as well as disease states of the
*****. We found that ***** B6129S6F1 ES mice, despite their
full in vitro origin, are apparently normal and healthy. The
elevated body weight of ES mice did not result from obesity or
diabetes. A similar weight increase was found for normalcontrol
mice derived from in vitro-cultured embryos. Thus, weight
increase is not unique to ES mice but likely results from the
common experimental procedure used to derive the ES and
control mice. In particular, the specific pre- and postnatal
nursing conditions of ES mice and in vitro controls may be of
critical importance, since both were raised by outbred (NMRI)
females upon embryo transfer. In contrast, the F1 controls
were derived from normal matings by inbred (C57BL/6) mothers.
It is well known that the offspring’s body weight can be
increased through uterine heterosis, depending on the mother’s
genotype (3, 20, 22).
Our results are consistent with an earlier report showing that
ES pups and neonates derived from in vitro-cultured blastocysts
exhibit 20% elevated birth weight (4). In addition, a
great variability in the expression of imprinted genes that are
frequently involved in fetal and placental growth (8, 31) was
documented in ES cell lines and neonatal ES mice (9). The in
vitro culture of murine preimplantation embryos has also been
shown to cause the altered expression ofgrowth-relatedimprinted
genes (12). Thus, the deregulated expression of such
genes could also contribute, besides uterine heterosis, to the
increased body weight of ES mice and pups derived from in
vitro-cultured embryos. Presently we cannot determine which
of these explanations is the main cause for the observed weight
increase.
The elevated weight of ES mice and control mice may be
distinguished from the neonatal overgrowth found in cloned
FIG. 4. Metabolic parameters of B6129S6F1 ES and control mice.Allassays were performed with groups of five 11-month-old *****miceas
indicated. (A) Food intake. Daily food intake of ES mice (leftbar)and F1 controls (right bar). (B) Insulin levels. Plasmainsulinconcentrations
were determined by ELISA with tail venous blood. (C) Leptinlevels.Plasma leptin concentrations were determined by ELISA withtailvenous
blood of fasted mice. (D) Body fat. White adipose tissue masswasexpressed as a percentage of total body weight. (E)Glucosetolerance test. Blood
glucose levels were measured before and afterintraperitonealadministration of glucose (2 mg/g of body weight).Results areexpressed as mean
glucose levels of ES mice (solid circles) and controls(opensquares)   standard error of the mean. (F) Insulintolerancetest. Animals were injected
with 1.0 IU of human insulin/kg of body weight and analyzedforblood glucose levels at the indicated time points. Resultsareexpressed as a
percentage of the initial glucose level   standard error ofthemean of ES mice (solid circles) and controls (open squares).Glucoseand insulin
tolerance tests were performed on animals that had beenfastedovernight.
3986 SCHWENK ET AL. MOL. CELL. BIOL.
mice as a direct consequence of the cloning procedure. Newborn
mice cloned from ES cell nuclei were reported to exhibit
a 60% weight increase, and placental weights were more than
doubled (4). Cloned mice also exhibit abnormal imprinted
gene expression (9), and severe health impairments such as
reduced life span, frequent pneumonia, and obesityweredescribed
(17, 25, 30). It was recently shown that genome reprogramming
in mice cloned from both nuclei of cultured ES cells
and freshly isolated cumulus cells is associated with a broadly
disturbed expression profile in the placenta, representing at
least 4% of all expressed genes (8). The majority of these
genes were common to both types of clones. Gene expression
changes in the livers of cloned pups were less pronounced than
in the placentas and affected a largely distinct set ofgenes(8).
Even surviving clones may not be normal at birth or laterinlife
as a result of severe placental dysfunction during gestation.In
contrast to clones, the extra-embryonic tissues of ES mice,such
as the placenta, are largely derived from the tetraploid host
blastocysts rather then the donor cells (16). It was further
shown that neither the placenta nor the birth weight of ES
pups exhibited overgrowth and did not differ from those of
neonates derived from in vitro-cultured control embryos (4).
Vice versa, neonatal overgrowth and other abnormalities may
be reduced if cloned mice were derived by tetraploid embryo
complementation with ES cell lines established from cloned
blastocysts.
Apart from the increased body weight, our results show that
all other studied biological characteristics of B6129S6F1 ES
mice fell into the wild-type range as defined byisogeniccontrols
derived from normal matings. The histological, physiological,
and neurological parameters reported in this work provide
a phenotypic baseline for ***** hybrid ES mice and and
confirm their general suitability for the analysis of mutant
phenotypes. We believe that these results strongly encourage
the future use of this technology for the rapid production of
targeted mouse mutants. It is beyond the scope of a single
study to investigate all biological features of ES mice and
controls. Our results, however, will also stimulatefurthercharacterization
of ES mice in more specialized disciplines.
ES mouse technology offers the benefit of producing *****
mutants directly from genetically modified ES cells without the
requirement for breeding. Mutants are thus availableforanalysis
in less than half the time required by the current methodology
involving the generation of germ line chimeras and multiple
breeding cycles. In an earlier report, we confirmed the
technical feasibility of this approach through the productionof
ES mice from homozygous mutant ES cell clones generated by
gene targeting (23). In a proof-of-principle experiment, withan
ES cell clone harboring a biologically relevant mutant tumor
suppressor gene, we now demonstrate that the phenotypic
analysis of ***** ES mouse mutants, including their production
from ES cells, can be completed within 4 months. In addition,
this ES cell line provides a tool to expedite the mutagenesisof
other tumor modifiers to assess the phenotype of compound
mutants.
Besides the production of classical knockout mice, ES
mouse technology will also allow the direct,time-savingproduction
of conditional mutants with hybrid ES cell lines established
from Cre recombinase transgenic mouse strains. Conditional
alleles may be introduced into such ES cells by two
TABLE 1. Hematology and clinical biochemistry of
ES and control mice
Parameter
Value for:
Controls ES mice Pa
Mean SD Mean SD
Metabolites
Glucose (mmol/liter) 7.84 2.13 9.86 1.78 0.17
Albumin (g/liter) 25.8 1.30 26.2 1.64 0.91
Cholesterin (mmol/liter) 2.4 0.12 2.6 0.19 0.08
Triglycerides (mmol/liter) 1.46 0.39 1.5 0.65 0.75
Enzymes
Alkaline phosphatase (U/liter) 130.2 10.4 122.4 13.2 0.47
Aspartate amino transferase (U/liter) 68.8 2.9 62.8 15.9 0.92
Alanine amino transferase (U/liter) 39.2 16.6 42.8 10.4 0.60
Electrolytes
Ca2 (mmol/liter) 2.4 0.05 2.45 0.07 0.25
Mg (mmol/liter) 1.41 0.09 1.37 0.09 0.21
Fe (mol/liter) 31.6 2.5 33.9 2.1 0.25
Phosphorus (mmol/liter) 2.65 0.19 2.71 0.17 0.56
Na (mmol/liter) 167.6 3.9 16.7 1.6 0.83
K (mmol/liter) 4.78 0.40 4.96 0.59 0.60
Cl (mmol/liter) 122.8 2.8 122.8 2.0 0.83
Erythrocytes
Hematocrit (%) 47.2 1.4 49.6 1.1 0.03
Hemoglobin (g/dl) 15.6 0.5 16.2 0.3 0.02
Erythrocytes (106/l) 9.8 0.39 10.6 0.3 0.01
Mean corpuscular hemoglobin (pg) 1.6 0 15.2 0.5 0.04
Mean corpuscular hemoglobin
content (g/dl)
33.2 0.5 32.8 0.5 0.35
Mean corpuscular volume (fl) 4.8 0.7 46.8 0.8 0.60
Leukocytes
Leukocytes (103/l) 4.1 0.8 5 0.8 0.08
Neutrophils/l 1,410 2,060 70.2 15.8 0.25
Eosinophils/l 9.4 5.2 8.1 3.1 0.34
Basophils/l 24 23 2.8 26
0.99
Monocytes/l 5.6 5.1 10.8 7.9 0.34
Lymphocytes/l 3,424 81.5 4,073 69.0 0.60
a P values were calculated by using the Mann-Whitney U test;thelevel of
significance was set at a P value of 0.05.
TABLE 2. Behavioral analysis of ES and control mice
Behavioral or
physiologic parameter
Response of ES mice
and controls Pa
Aggressivity Normal
0.99
Spontaneous activity Normal
0.99
Respiration rate Normal
0.99
Defecation Normal 0.89
Urination Normal 0.74
Palpebral closure Normal
0.99
Locomotor activity Normal 0.26
Tail elevation Normal 0.12
Touch escape Normal 0.67
Startle response Normal 0.60
Struggle response Normal
0.99
Visual placing Normal
0.99
Grip strength Normal
0.99
Body tone Normal
0.99
Corneal reflex Normal
0.99
Righting reflex Normal
0.99
Skin color Normal
0.99
a P values were calculated by using the Mann-Whitney U test;thelevel of
significance was set at a P value of 0.05.
VOL. 23, 2003 CHARACTERISTICS OF ES CELL TETRAPLOID MICE 3987
sequential gene targeting cycles followed by the removal of
selection markers flanked by FLP recombinase recognition
sites prior to blastocyst injection. As a prerequisite for this
approach, we recently established B6129S6F1 ES cell lines
harboring cell type-specific or inducible Cre transgenes,ableto
derive ES mice at the same frequency as wild-type ES lines (R.
Ku¨hn, F. Schwenk, and B. Zevnik, unpublished data).
Since ES mice are efficiently produced from hybrid but not
inbred ES cell lines, mutants derived from targeted F1 ES cells
necessarily exhibit a hybrid genetic background. Provided that
B6129F1 ES lines are employed (B6129S6F1 [Art4/12] cells in
this study), ES mouse mutants can be studied in a genetic
background that has been frequently used for phenotypeanalysis.
So far, most targeted mutations have been introduced into
129-derived inbred ES cells, and mutant strains have been
established through the cross of chimeras to C57BL/6 females
and subsequent intercrosses resulting in homozygous mouse
mutants in a mixed 129 C57BL/6 background (14). In contrast,
ES mouse technology can deliver homozygous mutants at
a defined F1 (129 C57BL/6) genetic background, since further
intercrossing is not required. However, ES mouse technology
is not suitable for the generation of mutants which
require phenotype analysis on an inbred background.
The production of homozygous mutant ES mice requires
two sequential transfection rounds to target both copies of an
autosomal gene in hybrid cells, e.g., B6129F1 ES cells. Thus,F1
ES cells must maintain their pluripotency during prolonged in
vitro culture, and gene targeting vectors should recombine
efficiently with the C57BL/6- and 129-derived allele of the
target gene. In earlier reports we have shown that B6129F1 ES
cells (including line Art4/12) tolerate up to three consecutive
gene targeting cycles without losing the ability to complement
tetraploid blastocysts (5, 23). We have also reported that both
alleles of an autosomal gene (Rosa 26) can betargetedefficiently
in B6129F1 ES cells by using gene targeting vectors with
identical, 129-derived homology arms (23). In our experience,
about 75% of the targeting vectors that we havetestedrecombined
at comparable efficiency with C57BL/6- and 129-derived
alleles with a single set of homology regions derived from one
of these strains (R. Ku¨hn and F. Schwenk, unpublishedresults).
Specific genes, such as the retinoblastoma gene, which exhibit
high sequence diversity in different mouse strains can be
targeted in inbred ES cells only with isogenic homology arms
derived from the same inbred strain (26). The targeting of such
genes in B6129F1 ES cells would require the use oftwoindependent
gene targeting vectors, one derived from C57BL/6
genomic DNA and the other from the respective 129 substrain.
However, with the availability of the complete sequences of the
C57BL/6 genome and several 129 strains (11, 28), it is now
possible to predict beforehand from the sequence diversity of
a given gene whether a single set of homology arms issufficient
to target both alleles in B6129F1 ES cells.
Taken together, our results indicate that ES mouse technology
provides a useful research tool to expedite the generation
and analysis of mouse mutants in a hybrid background. Since
this approach is simple and technically no more demanding
than the current gene targeting protocols, we expect ittobecome
a widely used tool in reverse mouse genetics.
ACKNOWLEDGMENTS
We thank I. Falkner, A. Hortz, D. Schulz, and D. Thielforexcellent
technical assistance, J. Lo¨hler for comments, and G. StottandL.
Jackson-Grusby for critically reading the manuscript.
This work was supported by Artemis Pharmaceuticals GmbH and
the German Ministry for Education and Science (BMBF, grants
0311956 and ZMMKTV2).
F. Schwenk and B. Zevnik contributed equally to this work.
REFERENCES
1. Bishop, C. E., and D. Hatat. 1987. Molecular cloning andsequenceanalysis
of a mouse Y chromosome RNA transcript expressed in thetestis.Nucleic
Acids Res. 15:2959–2969.
2. Capecchi, M. R. 1989. The new mouse genetics: altering thegenomeby gene
targeting. Trends Genet. 5:70–76.
3. Cowley, D. E., D. Pomp, W. R. Atchley, E. J. Eisen, andD.Hawkins-Brown.
1989. The impact of maternal uterine genotype on postnatalgrowthand
***** body size in mice. Genetics 122:193–203.
4. Eggan, K., H. Akutsu, J. Loring, L. Jackson-Grusby, M. Klemm,W.M.
Rideout III, R. Yanagimachi, and R. Jaenisch. 2001. Hybridvigor,fetal
overgrowth, and viability of mice derived by nuclear cloningandtetraploid
embryo complementation. Proc. Natl. Acad. Sci. USA98:6209–6214.
5. Eggan, K., A. Rode, I. Jentsch, C. Samuel, T. Hennek, H.Tintrup,B. Zevnik,
J. Erwin, J. Loring, L. Jackson-Grusby, M. R. Speicher, R.Kuehn,and R.
Jaenisch. 2002. Male and female mice derived from thesameembryonic
stem cell clone by tetraploid embryo complementation.Nat.Biotechnol.
20:455–459.
6. Fodde, R., and R. Smits. 2001. Disease model:familialadenomatous polyposis.
Trends Mol. Med. 7:369–373.
7. Gould, K. A., C. Luongo, A. R. Moser, M. K. McNeley,N.Borenstein, A.
Shedlovsky, W. F. Dove, K. Hong, W. F. Dietrich, and E. S.Lander.1996.
Genetic evaluation of candidate genes for the Mom1 modifierofintestinal
neoplasia in mice. Genetics 144:1777–1785.
8. Humpherys, D., K. Eggan, H. Akutsu, A. Friedman, K.Hochedlinger,R.
Yanagimachi, E. S. Lander, T. R. Golub, and R. Jaenisch.2002.Abnormal
gene expression in cloned mice derived from embryonic stem cellandcumulus
cell nuclei. Proc. Natl. Acad. Sci. USA 99:12889–12894.
9. Humpherys, D., K. Eggan, H. Akutsu, K. Hochedlinger, W.M.Rideout III,
D. Biniszkiewicz, R. Yanagimachi, and R. Jaenisch. 2001.Epigeneticinstability
in ES cells and cloned mice. Science 293:95–97.
10. Irwin, S. 1968. Comprehensive observational assessment. Ia.Asystematic,
quantitative procedure for assessing the behavioral andphysiologicstate of
the mouse. Psychopharmacologia 13:222–257.
11. Kerlavage, A., V. Bonazzi, M. di Tommaso, C. Lawrence, P. Li,F.Mayberry,
R. Mural, M. Nodell, M. Yandell, J. Zhang, and P. Thomas.2002.The
Celera discovery system. Nucleic Acids Res. 30:129–136.
12. Khosla, S., W. Dean, D. Brown, W. Reik, and R. Feil.2001.Culture of
preimplantation mouse embryos affects fetal development andtheexpression
of imprinted genes. Biol. Reprod. 64:918–926.
13. Kwan, K. M. 2002. Conditional alleles in mice:Practicalconsiderations for
tissue-specific knockouts. Genesis 32:49–62.
14. Mak, T. W. 1998. The gene knockout facts book. AcademicPress,London,
UK.
15. Nagy, A. 2000. Production and analysis of ES cellaggregationchimaeras, p.
177–206. In A. L. Joyner (ed.), Gene targeting: apracticalapproach, 2nd ed.
Oxford University Press, Oxford, United Kingdom.
16. Nagy, A., E. Gocza, E. M. Diaz, V. R. Prideaux, E. Ivanyi,M.Markkula, and
J. Rossant. 1990. Embryonic stem cells alone are able tosupportfetal
development in the mouse. Development 110:815–821.
17. Ogonuki, N., K. Inoue, Y. Yamamoto, Y. Noguchi, K. Tanemura,O.Suzuki,
H. Nakayama, K. Doi, Y. Ohtomo, M. Satoh, A. Nishida, and A.Ogura.2002.
Early death of mice cloned from somatic cells. Nat.Genet.30:253–254.
18. Padua, R. A., G. Bulfield, and J. Peters. 1978.Biochemicalgenetics of a new
glucosephosphate isomerase allele (Gpi-1c) from wildmice.Biochem.
Genet. 16:127–143.
19. Petrik, M. B., M. F. McEntee, B. T. Johnson, M. G.Obukowicz,and J.
Whelan. 2000. Highly unsaturated (n-3) fatty acids, butnotalpha-linolenic,
conjugated linoleic or gamma-linolenic acids, reducetumorigenesisin Apc-
(Min/) mice. J. Nutr. 130:2434–2443.
20. Pomp, D., D. E. Cowley, E. J. Eisen, W. R. Atchley, andD.Hawkins-Brown.
1989. Donor and recipient genotype and heterosis effects onsurvivaland
prenatal growth of transferred mouse embryos. J. Reprod.Fertil.86:493–
500.
21. Rajewsky, K., H. Gu, R. Kuhn, U. A. Betz, W. Muller, J.Roes,and F.
Schwenk. 1996. Conditional gene targeting. J. Clin.Investig.98:600–603.
22. Rhees, B. K., C. A. Ernst, C. H. Miao, and W. R. Atchley.1999.Uterine and
postnatal maternal effects in mice selected for differential rateofearly
development. Genetics 153:905–917.
23. Seibler, S., B. Zevnik, B. Ku¨ter-Luks, S. Andreas, H. Kern,T.Hennek, A.
Rode, C. Heimann, N. Faust, R. Jaenisch, K. Rajewsky, R. Ku¨hn,andF.
3988 SCHWENK ET AL. MOL. CELL. BIOL.
Schwenk. 2003. Rapid generation of inducible mouse mutants.NucleicAcids
Res. in press.
24. Sieber, O. M., I. P. Tomlinson, and H. Lamlum. 2000.Theadenomatous
polyposis coli (APC) tumour suppressor—genetics, functionanddisease.
Mol. Med. Today 6:462–469.
25. Tamashiro, K. L., T. Wakayama, H. Akutsu, Y. Yamazaki, J.L.Lachey,
M. D. Wortman, R. J. Seeley, D. A. D’Alessio, S. C. Woods,R.Yanagimachi,
and R. R. Sakai. 2002. Cloned mice have an obese phenotypenottransmitted
to their offspring. Nat. Med. 8:262–267.
26. te Riele, H., E. R. Maandag, and A. Berns. 1992.Highlyefficient gene
targeting in embryonic stem cells through homologousrecombinationwith
isogenic DNA constructs. Proc. Natl. Acad. Sci.USA89:5128–5132.
27. Torres, R. M., and R. Ku¨hn. 1997. Laboratory protocolsforconditional gene
targeting. Oxford University Press, Oxford, UK.
28. Waterston, R. H., K. Lindblad-Toh, E. Birney, J. Rogers, J.F.Abril, P.
Agarwal, R. Agarwala, R. Ainscough, M. Alexandersson, P. An, S.E.Antonarakis,
J. Attwood, R. Baertsch, J. Bailey, K. Barlow, S. Beck,E.Berry,
B. Birren, T. Bloom, P. Bork, M. Botcherby, N. Bray, M. R. Brent,D.G.
Brown, S. D. Brown, C. Bult, J. Burton, J. Butler, R. D.Campbell,P.
Carninci, S. Cawley, F. Chiaromonte, A. T. Chinwalla, D. M.Church,M.
Clamp, C. Clee, F. S. Collins, L. L. Cook, R. R. Copley, A.Coulson,O.
Couronne, J. Cuff, V. Curwen, T. Cutts, M. Daly, R. David,J.Davies, K. D.
Delehaunty, J. Deri, E. T. Dermitzakis, C. Dewey, N. J.Dickens,M.
Diekhans, S. Dodge, I. Dubchak, D. M. Dunn, S. R. Eddy, L.Elnitski,R. D.
Emes, P. Eswara, E. Eyras, A. Felsenfeld, G. A. Fewell, P.Flicek,K. Foley,
W. N. Frankel, L. A. Fulton, R. S. Fulton, T. S. Furey, D. Gage,R.A. Gibbs,
G. Glusman, S. Gnerre, N. Goldman, L. Goodstadt, D. Grafham,T.A.
Graves, E. D. Green, S. Gregory, R. Guigo, M. Guyer, R. C.Hardison,D.
Haussler, Y. Hayashizaki, L. W. Hillier, A. Hinrichs, W. Hlavina,T.Holzer,
F. Hsu, A. Hua, T. Hubbard, A. Hunt, I. Jackson, D. B. Jaffe, L.S.Johnson,
M. Jones, T. A. Jones, A. Joy, M. Kamal, E. K. Karlsson, etal.2002. Initial
sequencing and comparative analysis of the mouse genome.Nature420:520–
562.
29. West, J. D., and J. H. Flockhart. 1989. Non-additiveinheritanceof glucose
phosphate isomerase activity in mice heterozygous at theGpi-1sstructural
locus. Genet. Res. 54:27–35.
30. Wilmut, I. 2002. Are there any normal cloned mammals? Nat.Med.8:215–
216.
31. Young, L. E., K. Fernandes, T. G. McEvoy, S. C. Butterwith,C.G. Gutierrez,
C. Carolan, P. J. Broadbent, J. J. Robinson, I. Wilmut, and K.D.Sinclair.
2001. Epigenetic change in IGF2R is associated with fetalovergrowthafter
sheep embryo culture. Nat. Genet. 27:153–154.
VOL. 23, 2003 CHARACTERISTICS OF ES CELL TETRAPLOID MICE 3989

京公網(wǎng)安備 11010702001818號

亚洲乱码中文字幕久久孕妇,亚洲AV午夜精品一区二区三区,精品人妻一区二区三区日产,国产69精品久久久久网站 又黄又刺激超爽动态图| 成人精品久久国产av| 91tv官网精品成人亚洲| 国产黄色A级故事言情中文字幕 | 高清无码视频在线观看| 99久久国产综合精品2020| 日韩二丶三区视频免费| 97se亚洲综合不卡| 99re久热只有精品6| 最新日韩高清无码| 91精品国产在线伊人 | 国产成年无码AU在线观看 | k频道网络视频国产自产| av片在线播放 | s色在线观看一区二区| av资源在线永久免费观看| 国产在线精品免费91| 插b内射18免费视频 | 91天堂精品在线观看| 92电影网午夜福利| 91短视频在线免费观看| 97无码人妻福利免费公开在线视频 | 高清无码视频在线观看| 最近中文字幕国语免费av| Xvideos精品国产| 国产swag无套剧情在线观看| 99久久婷婷国产综合| 草莓成人app下载| ****亚洲精品无码网站老牛| A片生活片免费看| 国产swag无套剧情在线观看| 99 精品视频网站| 91丝袜国产欧美| 911色主站性欧美| 丁香花高清在线观看完整版| 三级黄色精品一区二区| 91在线精品亚洲第一区香蕉| 成人免费视频免费看www毛片 | 98国产成人综合久久精品| 女生奖励自己的声音素材高清版| 成人毛片视频看看| 放荡人妻少妇中文字幕91| 98精品国产自产免费观看| 国产成a人亚洲精v| 高清大片国产片 | 高潮痉挛大喷水在线观看| 99爱在线精品免费观看| 大学生扒开粉嫩喷白浆| 91久久香蕉国产熟女线 | 各种少妇正面着bbw撒尿视频| h片在线观看网站| 成人国产精品秘欧美高清| 91免费国产精品| 成人午夜福利电影天堂| av人摸人人人澡人人超碰小说| 99在线精品视频网站| 97热久久免费频精品99| 91亚洲中文天堂在线播放| 成人无码A级毛片免费播放| 大伊香蕉精品一区视频在线 | 国产不卡av免费在线观看| s色在线观看一区二区| 白洁老师全文全集| 中文字幕欧美老熟妇一区二区| 各种少妇正面着bbw撒尿视频| 国产+日韩+欧美高清视频| 99999久久久久9国产精品| 国产农村妇女一二三毛片| 91久久国产精品| 国产av最新精品| xxxx18一20岁hd第一次 | av人摸人人人澡人人超碰小说| 91精品在线观看免费| 少一女乱一交一精一品| 最近日本电影影视在线观看免费 | yy22tv夜月| 55夜色66夜色国产精品站| 91日韩欧美综合 | 91全国探花精品正在播放| 最新日韩三级视频| 自拍偷区亚洲综合美| 春色校园人妻综合| 凹凸福利导航视频| 春天影视在线观看免费 | 99久久精品无码专区免费| 1区2区3区4区产品乱码芒果| 99久久国产综合精品1 | 最爽无遮挡行房视频| 91日韩欧美综合 | 成人亚洲色欲色一欲WWW| AV无码国产精品色午夜 | 91热久久免费视频精品99| www天堂资源在线| 97精品伊人久久久大香线蕉 | 国产女主播19播放| 国产爆乳成人AV在线播放| 三级黄色精品一区二区| 成人一级免费视频| 9.1国产精品成人午夜在线| D亚洲国产欧美一区二区在线| 自拍偷拍亚洲欧美日韩| 国产va免费精品观看精品黄片 | 337p日本大胆欧久久| 国产69精品久久久久网站| 中文字幕在线视频永久| 国产超碰女人任你爽| 丁香六月伊人啪啪综合网 | 超碰97噜噜噜色| z欧美一区二区不卡视频| 亚洲高清无码不卡在线视频| 99在线观视频免费观看| 大学生扒开粉嫩喷白浆| 91国产丝袜在线播放| 国产+日韩+欧美高清视频| av在线不卡网站无码18禁| 最好看的中文字幕在线播放 | 成人国产一区二区三区香蕉| 国产亚洲精品一级āv三级无码毛片| wap.hntmw.com | 911色主站性欧美| 背德乱辈伦中文字幕日韩电影片 | 99久久精品无码专区免费| 911色主站性欧美| 午夜久久久久久噜噜噜| 波多野结衣视频三区 | 97在线观看高清免费| 91精品国产aⅴ一区二区| zaixian中文av| 91制服丝袜在线| 91小视频精品一区二区| 国产成人精品电影不卡| 成人动漫bt下载| 国产97超级碰碰视频| 最近日本韩国免费高清视频| 91会所技师口爆在线播放| 国产a国产片国产| 91天堂第一在线播放| 成AV人片在线观看| 国产99成人在线| 99久久国产免费中文无字幕| av中文亚洲字幕 | 91国产丝袜在线播放| 国产69精品久久久久99尤物| 大香蕉在线综合在线观看| 15yc午夜在福利在线观看| 国产99视频精品免费视频6| 国产99视频精品免费视频6| 91大香蕉国产一区| 国产ts上海在线观看| 18禁黄色女同网站网站| 91在线无码精品| 成年美女黄网站18禁动态图片| 15yc午夜在福利在线观看| 国产成人91高清精品免费| 高清亚洲日本中文| 18国产成人在线| 91精品成人国产在线不卡| 91精品国产91久久久久粉嫩| 三级黄色精品一区二区| 18禁午夜免费福利久久| 抱起来内射丰满少妇视频| 二区视频亚洲免费| 最近中文字幕免费大全 | 97色偷偷色噜噜狠狠爱网站 | 二区视频亚洲免费| 成人午夜大片免费看热热色| 成人免费毛片在线| 不卡av一区二区在线观看| 99资源在线视频一区二区 | av资源站国产一区二区三区| 成人免费a在线视频国产| 成人福利在线视频| 91直播在线入口| 亚洲欧美日韩中文字幕精品一区老牛| 中文字幕在线视频永久| 国产爆乳无码视频在线观看 | 91日韩高清国产在线pron| 暴力强奷在线播放无码| 2018国产成人在线 | 9.1国产精品成人午夜在线 | BBBBBXXXXX欧洲熟妇 | 日本亚洲免费播放| 亚洲国产精品久久久久爰色欲| 国产乱子伦视频大全| 精品无码国产一区二区深花| 久久无码一区二区三区少妇| 扒开双腿粉嫩流白浆视频| 成年人免费在线观看视频的视频| 97人妻人人做人人爱| AV无码免费岛国动作片片段欣赏网| 成全视频在线观看免费看视频| 国产v日韩v欧美v不卡 | 91看电影91在线| www.avtt| 扒开女人内裤猛进猛出免费视频 | 第4色影院午夜在线观看| 成人免费a在线视频国产| 99久久国产综合亚洲区| 99资源在线视频一区二区 | 97人妻免费视频中文| 国产成人A亚洲精V品无码| 垂耳执事漫画免费阅读下拉式漫画六漫画 | 99久久精品免费看国产一区福利 | 成年人在线免费观看av| 最新免费大片a∨手机看片不卡 | av手机看片免费中文字幕| 69精品丰满人妻无码视频A片| 成人片亚洲日本久久| 91日韩欧美综合 | EEUSS国产一区二区三区黑人| 超碰中文字幕日本| 成人性生交大片免费看试看| 3P人妻少妇对白精彩视频 | 91在线精选入口| 91视频91视频| 日韩专区亚洲精品视频在线观看| 大学生高潮一级A片视频| 国产精品白丝AV网站| 5566成人精品视频免费| 亚洲国产精品久久久久爰色欲| 2025男人天堂手机在线| 99视频精品在线| a级毛片高清免费播放| 丰满熟妇人妻中文字幕| 亚洲v?久久久噜噜噜久久刺激| 中文字幕在线观看视频你懂的 | 欧洲野花视频天堂视频 | 最新国产精品专区| 够浪的熟妇让你爽视频| 不卡的神马电影网| 2012韩国高清完整版在线播放| a国产做国产爱免费视频| 成人久久国产精品毛片| 男日本韩国污污猛在线观看| 午夜成人免费在线观看| av美女高潮呻吟在线观看| 大学生扒开粉嫩喷白浆| 主页亚洲视频专区| 99激情视频盗拍这里免费| 综合久久一区二区三区| 日日噜噜夜夜狠狠视A片| 99精品国产免费观看| 国产美女裸体黄污网站免费观看| 成人影视一区二区| 99久久精品无码专区免费| 自拍日本在线观看欧美| 成人抖音在线app| 毛茸茸BBwBBw中国妓女| 国产白丝一区二区三区免费精品 | 粗壮挺进人妻水蜜桃成熟漫画| 成人免费毛片在线| 自拍偷拍亚洲欧美日韩| 18禁黄色女同网站网站| 大陆国产aⅴ国语精品对白| 国产97在线视频播放| 超碰97人人看人人干| xxx国产日本免费观看| 成人免费毛片视频APP| 97人妻人人做人人爱| 成人深夜国产精品日本| 成人午夜精品福利| а√最新版在线天堂| 阿拉伯少妇野外屁眼激情内射| 美女裸体无遮挡免费视频| 国产av成人精品| 成人观看精品视频| 成年美女网站色在线看免费| ?愛妃?国产青草视频免费观看| 91成人激情电影| 边走边添花蒂高潮不断| 98精品国产自产免费观看| 成人精品午夜二三区| 丁香六月婷婷好开心欧美| 丰满少妇尤物精品一区二区| 99热国产这里只有精品无卡顿 | 2022国产成人精品视频人 | 国产乱子伦视频大全| 丰满风韵少妇人妻熟女| 大量国内自拍AV手机观看| 调教丝袜斗罗大陆| 成人免费视频免费看www毛片| 宝贝帮我拉开拉链它想你了| 成人91短视频 | 大帝a∨无码视频在线播放 | 成年女人午夜毛片免费视频| 潮喷大喷水系列无码精品视频| 91在线精品亚洲第一区香蕉| 日日噜噜夜夜狠狠视A片| 草草福利欧美中文字幕免费| 久久99精品久久久久久hb亚瑟 | 国产69精品久久久久久久久久久久| 52爱拍国产永久无损音乐吧| 中文字幕在线中文字幕在线 | 大学生高潮一级A片视频| 5566精品资源在线播放| 丰满岳跪趴高撅肥臀 | 解忧午夜少妇翘臀福利视频| 91在线精品免费观看 | 18以上黄色内射国产影院| 成人观看一区二区| 最新国产精品专区| 白咲碧挑战黑色最大特点| 国产办公室老板AV秘书| 妇女高潮一区二区三区69 | 91麻豆精品视频在线观看| 799999色色色色色44444 毛片| 垂耳执事漫画免费阅读下拉式漫画六漫画 | zaixian中文av| 最新日韩精品中文字幕| 都市频道在线直播回放| H国产精品丝袜无码不卡视频| av婷婷一区二区中文字幕| av国内精品久久久久影院| av熟女观看一区| 国产片?V片永久免费观看| 给我播放片在线观看8集免费| 18禁无码永久免费无限制观看 | 成人免费乱码大片A毛片| av永久免费网站无毒不卡| 91国产丝袜在线播放| www.亚洲国产| 91在线一区二区三观看| AV无码一区二区大桥久未| 最近更新2019中文在线视频| 91午夜日韩在线观看免费| 69caocom| 丰满人妻帐篷内中文字幕| 拨开岳两片肥嫩的肉御心香帅| 成人亚洲综合色就色| 最近最新中文字幕mv在线1| 成人观看精品视频| 主页亚洲视频专区| Jizz国产色系免费 | 202391国产视频网站| 高清日本国产欧美| 精品无码国产一区二区深花| 福利一区三区国产在线视频| 俄罗斯一级a大片免费| 垂耳执事漫画免费阅读下拉式漫画六漫画 | 主页亚洲视频专区| 国产成人精品不卡av| 绯色av一区二区三区在线| 亚洲中文AⅤ中文字幕艳妇| 欧美mv日韩mv国产网站app| www.99热这里只有精品| 成人深夜国产精品日本| 91久久精品磁力| 成人黄色网站视频色 | 多毛的大隂户撒尿特写| heyzo无码综合国产精品| 成人黄色网站视频色 | 波多野中文字幕一区免费| 浮力影院最新发地布地扯| 99资源在线视频一区二区 | a级毛片高清免费播放| 成全电影免费观看完整版的方法 丰满的人妻hd高清完整版 | 大陆久久久久久久免费视频| 国产又爽又黄游戏视频| 99蜜桃臀久久久欧美精品制服丝袜亚洲中文综合 | 337p欧美日本超大胆艺术| 国产91精品综合在线观看| ?愛妃?国产青草视频免费观看| 6080亚洲理论片在线观看| 91成人精品福利在线播放| 国产VA国片免费| 国产aⅴ精品动漫一区二区| 成人免费视频一区二区三区四区 97精品伊人久久久大香线蕉 | 福利在线观看视频| 欧美日韩国产在线下载| Xvideos精品国产| 成人亚洲国产综合精品| 成人国产三级视频在线观看| 91成人国产片女人爽到高潮| 成人午夜在线偷拍妇科检查 | 白洁老师全文全集| 97精品免费视频| 国产av伦理久久| 成人国产99视频| 国产91色在线观看 | 91日韩高清国产在线pron| AV无码免费岛国动作片片段欣赏网| 97久久久精品综合88久久| EEUSS国产一区二区三区黑人| 99热国产这里只有精品无卡顿 | 成年女人喷潮毛片免| 高清三级精品国产| av国内精品久久久久影院| 最新国产精品自拍不卡| 欧美mv日韩mv国产网站app| aa级欧美大片在线观看 | 国产SUV精品201| av精选在线无码精品| 成人精品午夜二三区| 最新中文字幕免费视频了| 91青青在线精品| AV国産精品毛片一区二区三区| 91成人国产一区二区在线看| www.日本一区二区| 第4色影院午夜在线观看| 一级黄色a片| 成年人网站在线播放| 97久久超碰国产精品2021 | av国内精品久久久久影院| 97人妻东京热无码一区二区 | 最近中文字幕免费大全 | 51avi在线视频| 最新国产精品专区| H国产精品丝袜无码不卡视频| 最新亚洲无码不卡视频网站 | 91日韩高清国产在线pron| 5566中文字幕永久| 钢托盘等物流设备 | 999zyz玖玖资源站在线观看| 囯产av无码片毛片一级软件下载| 18禁裸体私密部位无遮挡| 国产69精品久久久久网站| 综合色区亚洲熟妇另类 | 9.1国产精品成人午夜在线 | 91成人精品福利在线播放| 超碰97成人在线| 丰满多毛的大隂户视频 | 91欧美日韩在线一区二区 | 国产99视频精品| 97在线视频观看成人| 国产v综合v亚洲欧美| 高清乱码一卡二卡视频| 成人国产三级视频在线观看| 丰满人妻人人玩人人爽| 最新中文字幕乱码视频| 91天堂最新在线观看| 2025电影天堂| 国产成人AVXXXXX在线观看| 成人无码片黄网站a毛片免费| 99久久精品免费看国产四区| 国产AⅤ精品一区二区果冻| 成人A级情欲片在线观看免费HD| 一级婬片AAAAAAA密柚| 亚洲熟女乱综合一区二区三区| 产福利一区在线观看精品尤物| 不卡成人av在线| 大量国内自拍AV手机观看| 中文字幕在线视频永久| 国产99久久久久久免费看| 99精品国产一区二区香蕉| 国产97视频人人做人人爱| 国产成人精品久久久免费观看| 中文字幕在线观看视频你懂的 | 成人黄色在线网站| 成人福利在线视频| 最近中文字幕高清字幕在线视频 | av在线男人的天堂观看免费| 91短视频在线免费观看| 5566中文字幕永久| 国产Ⅴ综合Ⅴ亚洲欧美久久| va欧美va亚洲综合在线观看| 最近免费视频观看在线播放| 草莓视频日韩国产在线观看 | XXX18在线观看免费图片| 成版人one一个app| Av动漫H肉电影在线观看 | 97色偷偷色噜噜狠狠爱网站 | 最近2018中文字幕免费看手机| 成人三级免费视频| 999久久国产视频| 99九九在线免费视频2018| 第九理论午夜电影院| 91国产丝袜在线 | 日本亚洲免费播放| 自拍欧美亚洲国产| 91在线一区二区三观看| heyzo无码综合国产精品| 91欧美人成手机在线观看| 最近高清中文字幕免费mv在线| 国产Ⅴ综合Ⅴ亚洲欧美久久| av国产在线天堂| 337p欧美日本久久久| 俄罗斯老熟女又乱又伦 | 97无码人妻福利免费公开在线视频 | 999zyz玖玖资源站在线观看| 国产av日韩一区二区三区精品| 巨爆乳A片在线观看播放| 国产 欧美 首页 精品| 成人国产精品视频免费| 97夜夜澡人人双人人人喊| 17c国产精品88888| 高清完整版在线观看| 91一级特黄大片 | 综合色区亚洲熟妇另类 | 丁香六月婷婷好开心欧美| aa福利亚洲国内在线精品| av婷婷一区二区中文字幕| 99爱在线欧美日韩第二页| 97人妻东京热无码一区二区 | 最新国产精品专区| 丰满熟妇人妻中文字幕| 999zyz玖玖资源站在线观看| av一区二区黄片| 91色综合久久久久综合99| 99久久国产免费中文无字幕| 91成人激情电影| av黄在线观看j| 911嫩草亚洲精品永久| 91av欧美一区二区 | 2022国产成人精品视频人 | 亚洲AⅤ在线无码精品毛片| wap.hntmw.com | 白咲碧挑战黑色最大特点| 按摩师的粗大在我体内进出视频| 99热国产这里只有精品无卡顿 | 综合亚洲高清中文| 6080亚洲人久久精品 | 懂爱国产aⅴ丝袜一区二区三区 | 成人无码区免费A直播| 91日韩高清国产在线pron| 国产亚洲精品一级āv三级无码毛片 | 91免费国产视频| 日韩激情无码| 国产成人91高清精品免费| 国产av伦理久久| 草莓成人app下载| 91青青在线精品| 97精品人人抽插| 成 人 免费 在线电影| 99婷婷综合国产| H国产精品丝袜无码不卡视频| 96533电视影片免费 | pans福利模特私拍网| 国产又爽又黄游戏视频| www.亚洲国产| 91av在线播放| 成人抖音APP大全| 亚洲v?久久久噜噜噜久久刺激| 2024丁香五月天之婷婷综合缴情| 国产91专区视频在线观看| av网站免费网址| 91国产丝袜在线 | 7777色鬼XXXX欧美色妇 | XXX少妇厨房XXX乱| 国产91精品免费在线播放| 91尤物精品福利视频| 国产成人精品电影不卡| 丁香六月婷婷五月| 各种少妇正面着bbw撒尿视频| 高端会所少妇人妻在线电影| 91无码人妻精品国产色情竹菊影视 | 最近更新中文字幕7| 成人精品免费av不卡在线观看| 高清视频久久一区| 钢托盘等物流设备 | 丰满少妇尤物精品一区二区| 91在线区啪国自产网页| 成人久久国产精品毛片| 欧美日本一区二区三四区| 成人在线播放欧美日韩 | 最新国产一区最新在线| av 无码 高潮 免费| 高潮春药失禁按摩精油H| 国产xxx视频免费看| 91口爆吞精国产| 不卡的神马电影网| 被操高潮受不了视频| 成人亚洲综合天堂相关内容首页| sis无码视频j精品| 2025电影天堂| A片生活片免费看| 日韩激情无码| 高清国产精品久久久久| 宝贝帮我拉开拉链它想你了| 岛国毛片在线播放一区二区| 国产亚洲精品一级āv三级无码毛片 | 97在线观看高清免费| 成人福利午夜无码专区| www.日本国产成人久久 | 最新在线黄色网址| 911嫩草亚洲精品永久| 八戒八戒免费视频| 国产成人91高清精品免费| 阿拉伯少妇野外屁眼激情内射| 成视频年人黄网站免费视频 | 91色综合久久久久综合99| 97碰碰人妻无码视频免费| 91国产丝袜在线 | 国产xxx视频免费看| 成人免费视频免费看www毛片| wwwx日韩淫片无码| 最爽无遮挡行房视频| 91色综合久久久久综合99| 被强奷很舒服好爽好视频爽| 91青青在线精品| 最新国产精品专区| 国产在线精品免费91| www.亚洲国产| 成人国产精品视频免费| 高清日本国产欧美| 亚洲精品免费视频| 国产精品1区2区3区| 799999色色色色色44444 毛片| 91热久久免费视频精品99| 成人爽片免费看 | 草莓视频未满十八勿网站| 大陆极品少妇内射AAAAAA| 欧美一级日韩视频在线观看| 515欧美老妇人| 成人免费毛片视频APP| 潮喷大喷水系列无码精品视频| 最近更新2019中文在线视频| 337q日本大胆欧美人术艺术| 国产99视频精品| 成人性爱网站大全| 15yc午夜在福利在线观看| 18禁无遮挡无码国产免费网站樱| 成人片免费观看一区二区天堂 | 苍井空电影种子下载| 成人性生交大片免费看试看| 草莓视频日韩国产在线观看 | 日日噜噜夜夜狠狠视A片| 白咲碧挑战黑色最大特点| 高清三级精品国产| 大量国内自拍AV手机观看| 大量国内自拍AV手机观看| 最新国产精品自产在线观看 | 吃奶揉捏奶头高潮视频在线观看 | 成人福利在线免费观看| 巨爆乳A片在线观看播放| 97在线视频观看成人| 91视频720 | 成人精品午夜二三区| av婷婷一区二区中文字幕| 白嫩极品小受挨CGV小蓝| 91在线一区二区三观看| 成人精品午夜久久| 15yc午夜在福利在线观看| 91大神大战酒店翘臀美女 | 国产69精品久久久久网站| 最新亚洲无码不卡视频网站 | 国产3p在线一区二区三区| 高清中文字幕 av 四区| 99热国产这里只有精品无卡顿 | 99爱在线欧美日韩第二页| 国产91色在线观看 | 自拍视频在线观看视频精品| BBBBBXXXXX欧洲熟妇 | 精品无码又大又粗又黄的免费视频| 日韩专区亚洲精品视频在线观看| av成人午夜无码一区二区| H国产精品丝袜无码不卡视频| 国产美女裸体黄污网站免费观看| 白洁老师全文全集| 欧一美一性一交一免一费一H一D | 日日碰夜夜添天天爽无码一区| 99视频在线观看国产| 成人av网址一区二区| 最新国产精品自产在线观看 | 精品少妇人妻av免费久久胖妇| 亚洲?v日韩?v高潮无码专区| av毛片在线观看网址| 69精品久久久久人妻| 91在线看片国产免费观看| 成人三级免费视频| 99无码精品热在线观看| 高清成年美女xx网站黄| 中文字幕制服丝袜人妻动态图| 自拍影视无码少妇| 爱爱网网站免费观看| 大学生高潮一级A片视频| 91大神精品伊人| 成人深夜免费在线视频| 大学生无套带白浆嗯啊| 91无码人妻精品国产色情竹菊影视| 顶级绝伦推理片密桃传媒 | 动漫熟女制服一区二区 | 不卡高清AV手机在线观看 | 最新在线黄色网址| 国产av巨作情欲放纵无码下载| 白嫩无码人妻丰满熟妇啪啪区百度 | 国99精品无码一区二区三区| china熟女熟妇乱老女人 | 超碰中文字幕久久精品| 99久久精品毛片免费播| 草莓视频在线下载官网| 高清欧美日韩中文字幕 | 岛国av一区二区精品| 91天堂第一在线播放| 91麻豆产精品久久久久久粉嫩| 成全电影免费观看完整版的方法 丰满的人妻hd高清完整版 | 91视频在线精品| av免费黄色在线| 丰满熟女人妻中文字幕免费| 成人性爱网站大全| 国产1024看片在线| 亚洲精品免费视频| 国产91精品人妻一区二| 91系列高清露脸对白| 综合久久中文免费| 成全视频在线观看免费看视频| av综合中文字幕| 成人亚洲天堂av在线| 大陆国产aⅴ国语精品对白| 97夜夜澡人人爽人人喊免费阅读 | 91香蕉高清国产线观看免费| 18害羞勿进网站国产| 公车上双乳被老汉揉搓玩弄漫画| 91看电影91在线| 产91在线精品不卡| 大学生高潮一级A片视频| 成人观看一区二区| JK制服自慰白丝长腿喷水裸体| 91av在线播放| 成人三级欧美电影 | 97人妻起碰免费公开| 国产 成人 无码| www色空阁俺去也com| 吸奶头吸到高潮视频免费视频| 丁香五月缴情在线| 92国产精品综合在线| 1024免费在线观看| 2021国产最新盗摄在线播放| 成年人在线免费观看av| 福利在线观看视频| www.日本一区二区| 放荡人妻 一区二区| 国产成人91一区二区三区APP| 99视频在线观看国产| 国产A级精品黄色激情毛片| 给我免费看播放片| 最大免费中文字幕一区| 2022国产成人精品视频人 | avast免费版| 明明在线观看一区二区三区| 1024免费在线观看| A一区二区三区乱码在线 | 久久久久久久岛国综合免费观看| av精选在线无码精品| 91免费在线播放| 精品成人无码一区二区久| 丰满人妻人人玩人人爽| 大帝a∨无码视频在线播放 | 俄罗斯老熟女又乱又伦 | 成人片黄网站?毛片免费 | 岛国无码av在线播放| a亚洲Va欧美va国产综合 | 成全视频在线观看免费看视频| 成人在线免费观看黄色| 成人深夜免费在线视频| 1024手机在线看片日本欧美 | 91精品人人爽人人澡| 阿拉伯少妇野外屁眼激情内射| www.日本国产成人久久 | 国产69精品久久久久999三级| 日韩专区亚洲精品视频在线观看| 18害羞勿进网站国产| 百度国产精品网友自拍| 99成人综合久久精品亚洲| 69视频成人免费看 | 大陆极品少妇内射AAAAAA| 99久久精品一区二区三区欧美| 最近2018中文字幕免费看手机| 成人黄色在线网站| 成人亚洲天堂av在线| 欧美mv日韩mv国产网站app| 2025年3月里番| 超碰97人人看人人干| 成年人在线观看视频 | 91视频720 | Av动漫H肉电影在线观看 | 丰满人妻帐篷内中文字幕| 精品成人无码一区二区久| 成人免费毛片在线| 国产Ⅴ综合Ⅴ亚洲欧美久久| www.国产精品一区二区三区| 91一区二区三区在线看| 东京热一区二区av| 成年午夜无码AV片在线观看| 草莓视频在线免费观看| 俄罗斯老熟女又乱又伦 | 草草福利欧美中文字幕免费| av 无码 高潮 免费| 波多野结衣视频三区 | 污视频欧美一区二区| 丰满岳跪趴高撅肥臀 | 91香蕉短视频0| 91美女性爱视频| 岛国在线无码高清视频| 18禁免费视频无遮挡网站| 成年人免费网站观看视频| A级毛片内射免费视频| 成人自拍网站在线观看| 不卡在线免费播放| 国产精品1区2区3区| 99久久精品一区二区三区欧美| 91天堂最新在线观看| 浮妇高潮喷白浆视频 | 91看电影91在线| www.日本一区二区| 91精品一区二区精品视频| 2019中文字幕久久精品| 国产h视频免费观看| 91香蕉福利一区二区三区| 176精品二区免费视频| www.国产女上位.com| 18禁免费视频无遮挡网站| a国产在线v的不卡视频视频免费 | 最新国产午夜福利在线播放2| va欧美va亚洲综合在线观看| av中文字幕亚洲精品| 国产AV仑乱内谢| 成人国产精品视频免费| ae老司机精品福利视频| 18以上黄色内射国产影院| 宝贝这么湿想要吗| 巨爆乳A片在线观看播放| 成年人在线免费观看av| 4438毛片视频网站| 在线观看av永久免费| 91久久精品无码一区二区天美 | 国99精品无码一区二区三区| 囯产av无码片毛片一级软件下载| 公车上双乳被老汉揉搓玩弄漫画| china熟女熟妇乱老女人 | 最新电影在线观看| 北条麻妃在线无观看| 99人中文字幕亞洲區 | 在线无码AV| 北条麻妃在线无观看| 91成人国产片女人爽到高潮| 成人精品视频一区二区 | 国产av街头搭讪女巨作| www一区二区三区中文字幕| 各种少妇正面着bbw撒尿视频 | 91久久国内精品| 国产av无码专区亚洲av蜜芽 | 丁香五月缴情在线| 高清偷自拍亚洲精品三区 | 大帝a∨无码视频在线播放 | 乐播AV永久无码精品一区二区| 国产Ⅴ综合Ⅴ亚洲欧美久久| 18禁止看爆乳奶头流水动态图| 国产成年在线网站一区二区 | 91国内免费在线视频 | ava国产片在线大全 | 911嫩草亚洲精品永久| 国产AV仑乱内谢| 成人伦理片在线观看| 毛茸茸BBwBBw中国妓女| 9.1国产精品成人午夜在线 | 第九理论午夜电影院| 中文字幕一区免费观看| 91麻豆产精品久久久久久粉嫩| 51久草在线视频| 大陆国产aⅴ国语精品对白| 97视频精品全国在线观看| 粗大禁伦亲女H顾林晓晓| 东北乱子伦精彩对白| av永久免费一区二区三区| 91大神精品伊人| 2021国产麻豆剧传媒香蕉| www.日本一区二区| 99久久免费视频6 | 成人精品免费av不卡在线观看| 不卡av一区二区在线观看| 99爱国产精品免费高清在线 | 欧美mv日韩mv国产网站app| 国产成人精品九色| 解忧午夜少妇翘臀福利视频| ae老司机精品福利视频| 国产A级精品黄色激情毛片| 攵女乱h边做边走色网视频| av网址免费在线观看| 福利午夜春色影视| 69激情露脸视频| 中文字幕在线中文字幕在线 | www.国产女上位.com| 国99精品无码一区二区三区| 欧美mv日韩mv国产网站app| 成人美女视频黄片一区二区三区| 高清成年美女xx网站黄| 2025电影天堂| 69精品丰满人妻无码视频A片| 拨开岳两片肥嫩的肉御心香帅| 99精品免费在线视频| 97人妻起碰免费公开| 2020最新内地偷拍视频| 抱起来内射丰满少妇视频| 久久99精品久久久久久hb亚瑟 | av手机在线观看网站不卡| 国产成人精品电影不卡| www.国产女上位.com| 15yc午夜在福利在线观看| 96533电视影片免费 | 5566精品资源在线播放| 91青青在线精品| 91精品国产调教在线观看| 被操高潮受不了视频| 日韩一区二区三区四区| 国产97av在线播放| av综合网男人的天堂| 国产成年av免费精品网站| 公车上双乳被老汉揉搓玩弄漫画| 国产片?V片永久免费观看| 囯产av无码片毛片一级软件下载| 69影院连续在线播放视频| 宝贝这么湿想要吗| 成人三级理论电影| 91粗大猛烈进出白浆视频| 俄罗斯老熟女又乱又伦 | 俄罗斯老熟女又乱又伦 | 69精品久久久久人妻| ae老司机精品福利视频| 成人A级情欲片在线观看免费HD| 91天堂最新在线观看| 97碰碰免费公开在线视频| 成年人在线免费观看av| 不卡成人av在线| 国产caoni视频在线观看| 91天堂最新在线观看| 伴郎粗大的内捧猛烈进出视频观看| 99精品免费在线视频| 综合另类国产精品 | 2025男人天堂手机在线| 99久久精品一区二区三区欧美| www.国产精品一区二区三区| 国产69精品久久久久999三级| 1024手机在线看片日本欧美 | 综合另类国产精品 | 成人在线免费观看黄色| 大陆国产精品九九视频网 | 不卡成人av在线| jijzzizz老师出水喷水多毛| 91精品在线播放视频| 91人澡人妻人人做人人爽 | 91在线看片国产免费观看| 俄罗斯老熟女又乱又伦 | 不卡在线免费播放| 不卡成人av在线| 成人免费毛片在线| 久久久久久久岛国综合免费观看| 17岁中国高清免费完整版| 东京热啪啪AV男人的天堂| 乐播AV永久无码精品一区二区| 高清偷自拍亚洲精品三区 | 最新电影在线观看| 成人黄色免费在线播放| 高清亚洲日本中文| 毛茸茸BBwBBw中国妓女| 91无码人妻精品国产色情竹菊影视| 91香蕉福利一区二区三区| 91无码人妻精品国产色情竹菊影视| 最新免费大片a∨手机看片不卡 | 5566精品资源在线播放| 96热在这里只有免费精品| 18禁裸乳无遮挡自慰免费动漫| 国产99久久九九精品无码性色| 国产91精品综合在线观看| 91久久国内精品| 成人影院免费高清毛片视频| 超碰在线播放97 | 91精品国产尤物在线| 成人精品免费av不卡在线观看| 52爱拍国产永久无损音乐吧| 波多野结衣99精品| 伊人精品在线免费视频| 国产av无码专区亚洲av蜜芽 | 国产69精品久久久久999三级| 超碰在线播放97 | 99久久免费视频6 | wap.258yw.com| 丁香花免费高清视频完整版| 国产999在线免费观看| 91国内免费在线视频 | 91一区二区三区在线看| 欧美日韩一区二区视频免费看| 边走边添花蒂高潮不断| 成人午夜动漫一区二区在线| 大陆国产精品九九视频网 | www.99热这里只有精品| 国产成人精品电影不卡| 欧美肉体视频一进一出在线| 1024手机在线看片日本欧美 | 91久久精品无码一区二区天美 | 最近日本韩国免费高清视频| 超碰在线播放97 | 草莓视频在线观看免费精品| 成 人片 黄 色 大 片| 亚洲中文AⅤ中文字幕艳妇 | 成人在线免费观看黄色| 老熟色妇XXXX欧亚老妇毛多多| www.国产女上位.com| 4444亚洲人成无码网在线观看| 国产无遮挡又黄又大又在线观看| 办公室里玩弄丝袜高跟秘书| 成人伦理片在线观看| 日日噜噜夜夜狠狠视A片| 日韩一区二区三区四区| 国产91精品综合在线观看| av成人在线观看日韩| www.日本国产成人久久 | 成全电影免费高清观看| 成人观看精品视频| 囯产av无码片毛片一级软件下载| 公车上双乳被老汉揉搓玩弄漫画| 最新日韩精品中文字幕| 产91在线精品不卡| 最新国产精品专区| 97久久久精品综合88久久| 草神ちゃんが腿法娴熟| 国产成年在线网站一区二区 | 91久久国内精品| 69精品免费视频| 国产Ⅴ综合Ⅴ亚洲欧美久久| 大帝a∨无码视频在线播放 | 啄木鸟法国一区二区三区| 97在线视频观看成人| 97碰碰免费公开在线视频| 苍井空电影种子下载| 91蜜汁在线一区二区三区| heyzo色综合中文字幕无码| 91精品国产色综合久久成人 | 成人精品久久国产av| 伊人精品在线免费视频| 成年人在线免费观看av| 99国内精品视频| 草莓视频在线观看免费精品| 国产又爽又黄游戏视频| 一级黄色a片| 成人精品视频一区二区 | 91香蕉福利一区二区三区| 18禁免费视频无遮挡网站| 高清视频久久一区| 成人性爱网站大全| 国产精品1区2区3区| 成年人在线午夜免费观看| 97精品伊人久久久大香线蕉| 成人自拍网站在线观看| 91天堂最新在线观看| 草莓视频在线下载官网| 2022国产成人精品视频人 | 18禁真人抽搐一进一出动态图 | 91美女性爱视频| ae老司机精品福利视频| 99热精品国产三级在线| 返回码: 404 网站打不开 重查| 国产精品美女视频| av手机看片免费中文字幕| 产91在线精品不卡| 91看电影91在线| 2025电影天堂| 国产成人精品电影不卡| 国产1024看片在线| 成人三级免费视频| 97久久久精品综合88久久| 337P西西人体大胆瓣开下部 | 欧洲野花视频天堂视频 | 超碰97噜噜噜色| 污视频欧美一区二区| 大学生扒开粉嫩喷白浆| 99国产精品视频免费 | av在线国产一区二区三区| 91大神精品伊人| www.99热这里只有精品| 国产 成人 无码| 国产成年在线网站一区二区 | 2025年3月里番| 91丝袜国产日韩欧美一区| 国产片?V片永久免费观看| 国产VA国片免费| china熟女熟妇乱老女人 | 91精品视频在线| yyyy11111少妇无码影院| 97碰碰免费公开在线视频| 成人性爱网站大全| 97国产线视频在线观看 | 51久草在线视频| 欧美mv日韩mv国产网站app| 成人性爱网站大全| 成人精品免费av不卡在线观看| 国产69精品久久久久999三级| 巨爆乳A片在线观看播放| 阿拉伯少妇野外屁眼激情内射| 放荡人妻 一区二区| 最新在线黄色网址| xxx制服诱惑中文字幕| 成人福利在线免费观看| 99精品在线免费视频| 91国产丝袜在线播放| 毛茸茸BBwBBw中国妓女| 98精品国产自产免费观看| av网址免费在线观看| 91精品国产调教在线观看| 最新中文字幕免费视频了| 自拍日本在线观看欧美| 丁香花免费高清视频完整版| 中文字幕在线高清免费不卡| 自拍影视无码少妇| 综合另类国产精品 | 2025男人天堂手机在线| 大学生无套带白浆嗯啊| 成人Av一本不卡二卡| 边做奶水跟着狂喷av| 丁香六月婷婷五月| 99人中文字幕亞洲區 | 最新国产精品专区| 成人福利在线免费观看| 91香蕉短视频0| 91麻豆精品视频在线观看| 4色视频中文字幕| 99国内精品视频| av网站久久桃色| av在线男人的天堂观看免费| www.日本一区二区| 51久草在线视频| 囯产av无码片毛片一级软件下载| 最近免费视频观看在线播放| 亚洲精品免费视频| 最新高清无码专区 | www.日本国产成人久久 | 亚洲AV秘无码小泽玛丽亚| www一区二区三区中文字幕| 福利视频导航在线| 最新日韩欧美中文字幕 | 020久久国产综合精品swag| 91天堂最新在线观看| 拨开岳两片肥嫩的肉御心香帅| 又黄又无遮挡又湿的视频网站| 1024免费在线观看| 最近最新中文字幕在线视频| 成年A毛片免费观看| 97久久久精品综合88久久| 草莓视频在线观看免费精品| 国产99久久九九精品无码性色| 国产av无码专区亚洲av蜜芽 | 草莓视频释放自己| 最近2018中文字幕免费看手机| 精品成人无码一区二区久| 91精品国产尤物在线| 国产片?V片永久免费观看| 2025电影天堂| 公交车纯肉超H赵雪晴| 成人黄色在线网站| 成人黄色免费在线播放| 超级青草碰碰免费视频| 91国产丝袜在线 | 97人妻起碰免费公开| 91丝袜国产日韩欧美一区| 国产超薄丝袜在线观看| 2025电影天堂| 5566中文字幕永久| 成人A级情欲片在线观看免费HD| 国产91伦理视频在线观看| 国产乱子伦无码视频免费| 成人观看精品视频| china熟女熟妇乱老女人 | 91视频91视频| 2021国产麻豆剧传媒香蕉| 91手机在线看片| aa级欧美大片在线观看 | 202391国产视频网站| 99久久精品国产毛片| 自拍 欧美成人动漫 一区二区三| 暴力强奷在线播放无码| 2022国产成人精品视频人 | 国产A级精品黄色激情毛片| 动漫精品一区二区在线观看| 成人自拍网站在线观看| 91精品视频在线| 公交车纯肉超H赵雪晴| 国产69精品久久久久999三级| 日韩一区二区三区四区| 一级黄色a片| www.99热这里只有精品| 给我免费观看片在线观看中国| 中文人妻熟妇乱又伦精品| 宝贝~好爽~好硬~好紧~视频| 成人片黄网站?毛片免费 | 最新欧美18∨ideosex性欧美| 97SE亚洲精品一区二区 | 91香蕉福利一区二区三区| 国产caoni视频在线观看| 第一福利视频500 | 高清视频久久一区| 97精品国产一区| 成人观看精品视频| 公车上双乳被老汉揉搓玩弄漫画| 国产l精品国产亚洲区在线观看| 东北乱子伦精彩对白| 91成人国产九色在线观看| 成年女人免费视频试看465| 91香蕉福利一区二区三区| 北条麻妃在线免费观看| 成人片毛片AAA片免费| 国产+日韩+欧美| a级午夜毛片免费一区二区| EEUSS国产一区二区三区黑人| www.国产一区二区av| 垂耳执事漫画免费阅读下拉式漫画六漫画 | av精选在线无码精品| 最?好看最新中文字幕2019最新資訊| 国99精品无码一区二区三区| 020久久国产综合精品swag| 成人午夜网址免费毛片| 国产69精品久久久久久久久久久久| 宝贝打开点我要尿里面h | 宝贝~好爽~好硬~好紧~视频| 第一福利视频500 | 成人黄色免费在线播放| 返回码: 404 网站打不开 重查| 成年美女少妇看黄片 | 浮妇高潮喷白浆视频 | 成人性爱网站大全| 91大神精品伊人| 东京热一区二区av| 中文字幕制服丝袜人妻动态图| A级毛片免费无码免费视频| 大帝a∨无码视频在线播放 | 东京热加勒比hezyo一道高清| 波多野结衣一区二区三区AV高清| 伴郎粗大的内捧猛烈进出视频观看| 产91在线精品不卡| 大学生扒开粉嫩喷白浆| 5566精品资源在线播放| 最大免费中文字幕一区| 成人黄色在线网站| 大陆国产aⅴ国语精品对白| heyzo色综合中文字幕无码| 最新高清无码专区 | 成年人在线免费观看av| 91人澡人妻人人做人人爽 | av天堂亚洲中文字幕电影 | 成人性爱网站大全| 91天堂第一在线播放| 福利午夜春色影视| 国产AV天堂无码一区二区三区 | 97人妻免费视频中文| k频道网络视频国产自产| 丰满熟女人妻中文字幕免费| 草莓视频在线免费观看| 大香草久久久久久久国产av| 公车上双乳被老汉揉搓玩弄漫画| 国产成年在线网站一区二区 | 91精品久久久久久久久青青| 成人午夜性a一级毛片免费看| 99人中文字幕亞洲區 | A片人澡C片人人妻| 亚洲AⅤ在线无码精品毛片 | 最新高清无码专区 | 99久久亚洲欧美天堂| 成人片黄网站久久久免费| 高清久久中精品中文字幕| 中文字幕在线中文字幕在线 | 91在线看片国产免费观看| 国产91伦理视频在线观看| 草莓视频在线免费观看| 亚洲国产精品久久久久爰色欲 | 国产av街头搭讪女巨作| 草草福利欧美中文字幕免费| 成人午夜网址免费毛片| 超碰97人人看人人干| 丁香花免费高清视频完整版| 综合久久一区二区三区| 成年女人毛片免费观看一级| 成人观看精品视频| 草莓视频释放自己| 自拍影视无码少妇| 放荡人妻 一区二区| 97久久香蕉国产线看观看| a a毛片免费在线播放| 成人在线免费观看黄色| 91精品在线播放视频| 202391国产视频网站| 波多野结衣一区二区三区| 99久久人妻精品免费二区 | 国产亚洲精品一级āv三级无码毛片 | 91香蕉短视频0| 成年人在线观看视频 | 东京热一区二区av| 不卡一区二区三区免费精品视频| 成人三级免费视频| 够浪的熟妇让你爽视频| 91超碰人妻偷情在线播放| a a毛片免费在线播放| 草莓视频日韩国产在线观看 | 自偷精品精品国产日韩| 17c国产精品88888| 成 人色 网 站 欧美大片| www.日本国产成人久久 | 草草福利欧美中文字幕免费| 97夜夜澡人人爽人人喊免费阅读 | 91视频720 | 丰满人妻人人玩人人爽| 国产成年av免费精品网站| 97SE亚洲精品一区二区 | 99精品免费在线视频| 成人精品动漫小舞| 综合另类国产精品 | 91久久国内精品| 斑马视频电影免费观看| 91香蕉高清国产线观看免费| 69激情露脸视频| 扒开双腿粉嫩流白浆视频| 一级黄色a片| 2025男人天堂手机在线| 成人午夜大片免费看热热色| 岛国无码av在线播放| 最?好看最新中文字幕2019最新資訊| 成年人电影免费 | 成年人在线免费观看av| 国产91精品综合在线观看| 国产av街头搭讪女巨作| 中文字幕在线观看视频你懂的 | 丰满岳跪趴高撅肥臀 | 国产日精品久久久久久| XXX一区二日本视频| 大学生扒开粉嫩喷白浆| 97视频精品全国在线观看| 最近国语高清免费观看视频| 亚洲另类无码国产专区在线| 99人中文字幕亞洲區 | 2019中文字幕久久精品| 18禁免费视频无遮挡网站| 亚洲熟女乱综合一区二区三区| 911嫩草亚洲精品永久| av天堂亚洲中文字幕电影 | 囯产av无码片毛片一级软件下载| 成人无码区免费A直播| 俄罗斯老熟女又乱又伦 | 91精品一区二区在线观看| 高清中文字幕 av 四区| 91在线视频观看无毒不卡| 老熟色妇XXXX欧亚老妇毛多多| 国产精品美女视频| 99久久精品一区二区三区欧美| 亚洲另类无码国产专区在线| 5566中文字幕永久| 成人三级免费视频| 最新国产精品专区| 国产69精品久久久久999三级| 丁香五月缴情在线| 宝贝~好爽~好硬~好紧~视频| 国产精品偷乱一区二区三区| 202391国产视频网站| ae老司机精品福利视频| 91香蕉在线观看免费| 成人影院免费高清毛片视频| 亚洲中文AⅤ中文字幕艳妇 | 911嫩草亚洲精品永久| 国产97视频人人做人人爱| 国产91精品高潮白浆喷水| 91手机在线看片| 国产超薄丝袜在线观看| 2020日韩中文字幕在线不卡| 最新中文字幕免费视频了| 攵女乱h边做边走色网视频| JK制服自慰白丝长腿喷水裸体| 国产69精品久久久久久久久久久久| 最新在线黄色网址| 综合久久中文免费| av无码在线播放| 边走边添花蒂高潮不断| 够浪的熟妇让你爽视频| 69精品免费视频| 成人三级理论电影| 国产aV无码片毛片| 国产成人精品九色| 动漫精品一区二区在线观看| 国产99久久九九精品无码性色| www.日本一区二区| 福利午夜春色影视| 国产91精品露脸国语对白| 91精品国产调教在线观看| mm131亚洲美女视频| 草莓视频在线免费观看| 高清亚洲日本中文| 国产成人精品九色| 解忧午夜少妇翘臀福利视频| 返回码: 404 网站打不开 重查| 公车上双乳被老汉揉搓玩弄漫画| 成人性爱网站大全| 日韩一区二区三区四区| 成人黄色在线网站| 超碰在线播放97 | 懂爱国产aⅴ丝袜一区二区三区| A片生活片免费看| 337P西西人体大胆瓣开下部 | 成 人色 网 站 欧美大片| 97人妻起碰免费公开| 成人美女视频黄片一区二区三区| 成人性爱网站大全| 国产1024看片在线| 成人午夜有码一区二区 | 最新日韩欧美中文字幕 | 顶级绝伦推理片密桃传媒 | 丰满人妻帐篷内中文字幕| 被操高潮受不了视频| av综合网男人的天堂| JK制服自慰白丝长腿喷水裸体| 垂耳执事漫画免费阅读下拉式漫画六漫画 | 成年美女黄网站18禁动态图片| 91在线精品免费观看 | 91天堂最新在线观看| 一级婬片AAAAAAA密柚| 48熟女嗷嗷叫国产毛片| 岛国在线无码高清视频| 成人国产精品秘欧美高清| 最近国语高清免费观看视频| av综合网男人的天堂| a级午夜毛片免费一区二区| 国产精品美女视频| 自拍偷拍av一区二区| 91成人国产九色在线观看| a亚洲Va欧美va国产综合 | k频道网络视频国产自产| 草莓视频在线免费观看| EEUSS国产一区二区三区黑人| 成年A毛片免费观看| 最新国产精品自拍不卡| 大学生扒开粉嫩喷白浆| 国产Ⅴ综合Ⅴ亚洲欧美久久| 北条麻妃在线免费观看| 69视频成人免费看 | 亚洲熟女乱综合一区二区三区| 国产91精品露脸国语对白| 国产精品1区2区3区| 丁香啪啪综合成人亚洲| 大陆极品少妇内射AAAAAA| 大学生无套带白浆嗯啊| 东北乱子伦精彩对白| 国产99视频精品免费视频6| 高清视频在线一区二区三区| 成人亚洲日本一区二区三区 | a特级做A爰片毛片免费69 | 国产v a手机免费观看| 明明在线观看一区二区三区| 久久精品激情综合网| 成人午夜福利电影天堂| 国产aV无码片毛片| 99国产精品免费观看视频re| 最新高清无码专区 | 91精品国产免费久| heyzo色综合中文字幕无码| 大陆国产精品九九视频网 | 762国产手机视频大全| 成人自拍网站在线观看| www一区二区三区中文字幕| 国产超薄丝袜在线观看| 波多野结衣一本加勒比69| 返回码: 404 网站打不开 重查| 一级婬片AAAAAAA密柚| 2025电影天堂| 91免费在线播放| 97碰碰免费公开在线视频| 精品成人无码一区二区久| 成人片毛片AAA片免费| 成全电影免费观看完整版的方法 丰满的人妻hd高清完整版 | av中文亚洲字幕 | 国产97成人亚洲综合在线| 八戒八戒神马影院在线观看1| 15yc午夜在福利在线观看| 成年午夜无码AV片在线观看| 国产av毛片一区二区 | 最新日韩欧美一区二区三区| 又黄又无遮挡又湿的视频网站| 成人在线免费观看黄色| 2022国产成人精品视频人 | 无码精品人妻一区二区三区湄公河 | 久久精品激情综合网| 国产+日韩+欧美| 啄木鸟法国一区二区三区| 俺去也影音先锋播放| 自偷精品精品国产日韩| 成年美女少妇看黄片 | 最新日韩精品中文字幕| 最大免费中文字幕一区| Av动漫H肉电影在线观看 | k频道网络视频国产自产| 成人自拍网站在线观看| 成人观看精品视频| 成人在线免费观看黄色| 5566中文字幕永久| 99精品免费在线视频| A片生活片免费看| 99久久久无码国产精品性| 国产精品美女视频| 伊人精品在线免费视频| 5566中文字幕永久| 国产精品1区2区3区| 欧美肉体视频一进一出在线| 伴郎粗大的内捧猛烈进出视频观看| avast免费版| 国产VA国片免费| av手机看片免费中文字幕| 99久久久无码国产精品性| 超碰中文字幕久久精品| 99久久久无码国产精品性| 成人精品动漫小舞| 91系列高清露脸对白| 成年A毛片免费观看| av手机在线观看网站不卡| 综合久久一区二区三区| 91天堂最新在线观看| 欧洲野花视频天堂视频 | 91精品一区二区在线观看| 成人无码区免费A直播| k频道网络视频国产自产| 亚洲AV秘无码小泽玛丽亚| 91一区二区三区在线看| avast免费版| 大陆极品少妇内射AAAAAA| 成人国产精品秘欧美高清| 96热在这里只有免费精品| 丁香五月缴情在线| 2018国产成人在线 | 成人黄色免费在线播放| 最?好看最新中文字幕2019最新資訊| 91精品国产自产在线观看福利| 亚洲AⅤ在线无码精品毛片 | 日韩一区二区三区四区| 高清偷自拍亚洲精品三区 | 762国产手机视频大全| 亚洲中文AⅤ中文字幕艳妇 | 999zyz玖玖资源站在线观看 | 拨开岳两片肥嫩的肉御心香帅| 最新国产精品自拍不卡| 91美女性爱视频| 5566中文字幕永久| 成人A级情欲片在线观看免费HD| gogogo免费高清看中国国语| 第九理论午夜电影院| 丰满人妻帐篷内中文字幕| 762国产手机视频大全| Av动漫H肉电影在线观看 | 15yc午夜在福利在线观看| 草莓视频释放自己| 91精品久久久久久久久青青| 乐播AV永久无码精品一区二区| 91大神精品伊人| av国产一区二区在线| 91久久精品无码一区二区天美 | 18禁黄色女同网站网站| 成年人在线免费观看av| 第九理论午夜电影院| 成 人片 黄 色 大 片| 成人A级免费毛片| 91精品人人爽人人澡| 中文字幕在线高清免费不卡| 在线无码AV| 欧美日本亚洲人妻中文字幕| 动漫熟女制服一区二区 | 国产成人精品九色| 91日韩欧美综合 | 94久久国产乱子伦精品免费 | k频道网络视频国产自产| jijzzizz老师出水喷水多毛| 成人性爱网站大全| 96533电视影片免费 | 丁香国产综合激情| 8050成人黄色视频| 国产精品美女视频| 综合久久中文免费| 最新欧美18∨ideosex性欧美| a特级做A爰片毛片免费69 | 高潮春药失禁按摩精油H| 波多野结衣一区二区三区AV高清| 久久精品激情综合网| av网址免费在线观看| av国产一区二区在线| 成年美女少妇看黄片 | 91天堂最新在线观看| 久久久久久久岛国综合免费观看| 91粗大猛烈进出白浆视频| 中文字幕制服丝袜人妻动态图| XXX一区二日本视频| 不卡成人av在线| 成人观看一区二区| 日日噜噜夜夜狠狠视A片| av中文字幕一区二区| 欧美日韩一区二区视频免费看| 成特av一级综合毛片| 成人片免费观看一区二区天堂 | 自拍偷拍午夜福利| 91精品人人爽人人澡| 91国产丝袜在线 | 成人午夜性a一级毛片免费看| 国产又爽又黄游戏视频| 成人精品免费av不卡在线观看| 岛国毛片在线播放一区二区| 5566中文字幕永久| jijzzizz老师出水喷水多毛| 成人抖音在线app| 宝贝打开点我要尿里面h | A级毛片免费无码免费视频| yellow视频中文字幕| 成 人片 黄 色 大 片| 办公室里玩弄丝袜高跟秘书| av网站久久桃色| 丁香国产综合激情| 百度国产精品网友自拍| 成全电影免费观看完整版的方法 丰满的人妻hd高清完整版 | 波多野结衣一区二区三区| 波多野结衣一区二区三区AV高清| 99无码精品热在线观看| 最?好看最新中文字幕2019最新資訊| avast免费版| 高清成年美女xx网站黄| 成人片免费观看一区二区天堂 | chinesechina中国熟妇 | 成人黄色免费在线播放| 91国产丝袜在线播放| 丰满多毛的大隂户视频 | 丰满多毛的大隂户视频 | 中文字幕在线中文字幕在线 | 浮妇高潮喷白浆视频 | 91无码人妻精品国产色情竹菊影视| 69激情露脸视频| 97高清国语自产拍久久| 国产99视频精品免费视频6| 成人无码区免费A直播| 大陆国产aⅴ国语精品对白| 成年午夜无码AV片在线观看| 够浪的熟妇让你爽视频| 东北乱子伦精彩对白| 国产+日韩+欧美| 成人三级理论电影| 精品成人无码一区二区久| 成在线人AV免费无码高潮喷水 | 999zyz玖玖资源站在线观看 | 18禁黄色女同网站网站| 99视频在线观看国产| 二区视频亚洲免费| 给我免费看播放片| a国产在线v的不卡视频视频免费 | 东京热啪啪AV男人的天堂| 成人三级免费视频| 福利午夜春色影视| EEUSS国产一区二区三区黑人| 69视频成人免费看 | 丰满多毛的大隂户视频 | 高清亚洲日本中文| 不卡在线免费播放| 宝贝~好爽~好硬~好紧~视频| A一区二区三区乱码在线 | gogogo免费高清看中国国语| www.国产女上位.com| 超碰中文字幕久久精品| 亚洲AV秘无码小泽玛丽亚| yellow视频中文字幕| 成 人色 网 站 欧美大片| 亚洲熟女乱综合一区二区三区| 丁香国产综合激情| 国产91精品人妻一区二| 2021国产麻豆剧传媒香蕉| 成特av一级综合毛片| 日日噜噜夜夜狠狠视A片| 污视频欧美一区二区| 宝贝~好爽~好硬~好紧~视频| 百度国产精品网友自拍| www色空阁俺去也com| 国产1024看片在线| a亚洲Va欧美va国产综合 | 最近免费视频观看在线播放| av三级国产a级水| 高清成年美女xx网站黄| 岛国av一区二区精品| 超碰在线播放97 | 伴郎粗大的内捧猛烈进出视频观看| 国产成人91一区二区三区APP| 波多野结衣99精品| 第一福利视频500 | JK制服自慰白丝长腿喷水裸体| 国99精品无码一区二区三区| 丁香六月婷婷色综合| 1024手机在线看片日本欧美 | 欧洲野花视频天堂视频 | av手机在线观看网站不卡| 成人三级免费视频| 91欧美人成手机在线观看| 亚洲国产精品久久久久爰色欲 | 成 人色 网 站 欧美大片| 大学生扒开粉嫩喷白浆| 大陆国产精品九九视频网 | 9.1国产精品成人午夜在线 | 国产1024看片在线| 99re久热只有精品6| 国产A级精品黄色激情毛片| 国产AV仑乱内谢| 毛茸茸BBwBBw中国妓女| 国产999在线免费观看| 国产91精品人妻一区二| 18禁止看爆乳奶头流水动态图| 91蜜桃国产凹凸在线观看| 国产片?V片永久免费观看| 伊人精品在线免费视频| 48熟女嗷嗷叫国产毛片| 最近更新2019中文在线视频 | 草莓视频在线免费观看| mm131亚洲美女视频| 91精品视频在线| 成人深夜免费在线视频| 中文字幕制服丝袜人妻动态图| 成 人 黄 色 片 在线播放| 大陆极品少妇内射AAAAAA|