• <tr id="yyy80"></tr>
  • <sup id="yyy80"></sup>
  • <tfoot id="yyy80"><noscript id="yyy80"></noscript></tfoot>
  • 99热精品在线国产_美女午夜性视频免费_国产精品国产高清国产av_av欧美777_自拍偷自拍亚洲精品老妇_亚洲熟女精品中文字幕_www日本黄色视频网_国产精品野战在线观看 ?

    Genetic Interaction of Hd1 with Ghd7, DTH8 and Hd2 Largely Determines Eco-Geographical Adaption of Rice Varieties in Southern China

    2021-03-20 05:54:22ZhangZhenhuaZhuYujunWangShilinFanYeyangZhuangJieyun
    Rice Science 2021年2期

    Zhang Zhenhua, Zhu Yujun, Wang Shilin, Fan Yeyang, Zhuang Jieyun

    Letter

    Genetic Interaction ofwith,andLargely Determines Eco-Geographical Adaption of Rice Varieties in Southern China

    Zhang Zhenhua, Zhu Yujun, Wang Shilin, Fan Yeyang, Zhuang Jieyun

    ()

    Although cultivated rice originated from the tropical region, a long process of domestication and human selection has enabled cultivated rice to grow in a wide range of geographical regions. Diversification of photoperiodic flowering provides a foundation for this diverse adaptation. Intensive studies have focused on elucidating howvarieties lost photoperiodic sensitivity (PS) to expand their cultivation areas to high latitudes, where rice is grown in a short season when day-length is long (Fujino et al, 2013; Naranjo et al, 2014; Gomez-Ariza et al, 2015; Li et al, 2015, 2018; Goretti et al, 2017; Ye et al, 2018). By contrast, limited attention has been paid to the genetic architecture of heading date (HD) variation among varieties in middle and low latitudes. The southern China rice region, located in middle and low latitudes, occupies the most important rice cultivation region in China. This region is predominantly planted withvarieties, which presents a rich diversity of regional and seasonal adaptations. In the present study, improved varieties and landraces used in this region were analyzed for allelic variations of 12 cloned QTLs controlling HD, as well as for the genotypic effects of these genes on HD and PS. Our objective was to clarify predominant genetic factors influencing eco- geographical adaption of rice varieties in southern China by comparing improved varieties with landraces.

    A total of 224varieties were tested, including 132 improved varieties and 92 landraces (Tables S1 and S2). They were grown under natural short-day (NSD) conditions in Lingshui (LS), Hainan, and under natural long-day (NLD) conditions in Hangzhou (HZ), Zhejiang, China. The rice varieties were genotyped using gene-specific markers of 12 flowering genes (Table S3). Nine flowering genes showed allelic variations (Fig. 1-A). Five of them,,,,and, had two allelic types. The other four,,,and, had multiple allelic types. A single genotype was detected for the remaining three flowering genes, including,and.

    The nine genes having different allelic types were analyzed for their effects on HD in HZ, HD in LS, and PS between HZ and LS. Among the five genes having two allelic types, significant genotypic effects were detected at,and, but not atandby using one-way analysis of variance (ANOVA) (Table S4). For HD in HZ that was the primary target trait of this study,andshowed differences between the two collections (landrace and improved variety). At, the effect was only significant in landrace, explaining 11.0% of phenotypic variance. At, the effect was only significant in improved variety, explaining 11.1% of phenotypic variance.

    For the four genes having multiple allelic types,,,and, the Duncan’s multiple test was firstly performed, and the results were applied to re-classify the varieties into two groups. At, different non-functional types of the same collection showed no significant difference on all the three traits, but they differed significantly from the functional counterpart in LS (Table S5). Thus, different non-functional types were combined as a single non-functional group (Group 2) and the functional type remained as Group 1. Like, results of Duncan’s multiple tests forandmatched the classification of non-functional and functional types according to previous reports (Table S5). Therefore, the two genes were also classified into functional group (Group 1) and non-functional group (Group 2). For, results of Duncan’s multiple tests did not match the original classification of functional and non-functional types. In both collections, phenotypic differences were more distinguishable between the two non-functional types than between non- functional-2 and the functional type (Fig. S1). Thus, the functional type and non-functional-2 were combined as the functional group (Group 1), and non-functional-1 remained as Group 2.

    Based on the two-group’s classification, effects of,,andwere determined with one-way ANOVA. All the four genes showed important effects, among which differences between the two collections were observed (Table S4). At, the early-heading group of improved variety was the functional type in both locations, but that of landrace changed from the non-functional type in HZ to the functional type in LS. Phenotypic variances explained (2) in improved variety and landrace were 8.2% and 13.3% in HZ and 69.5% and 27.9% in LS, respectively. At, major effects on HD were detected in improved variety with2of 42.3% and 55.6% in HZ and LS, respectively. However, the effects were non-significant in landrace, which may be partly caused by the unbalanced distribution of 85 functional and 7 non-functional cultivars. Atand, flowering in HZ was significantly promoted in the functional group compared with the non-functional group in each collection, with2ranging from 23.4% to 46.7%. In LS, the effects ofandwere only significant in landrace and improved variety, respectively.

    Fig. 1. Allelic variations of nine genes and genetic interactions amongand,andin improved variety (ImV) and landrace (Lr).

    A, Allelic variation of nine genes. LE, Low expression; HE, High expression; D, Defective; F, Functional;LH, Late heading; EH, Early heading; N, Non-functional; W, Weak; S1, Strong 1; S2, Strong 2; N1, Non-functional-1; N2, Non-functional-2; N3, Non-functional-3.

    B, Heading date (HD) in Hangzhou (HZ) of genotypic groups in rice classified based on combinations ofand each of,and. Data are presented in Mean ± SD. Different capital letters indicate significant differences (< 0.01) among mean values based on the Duncan’s multiple range test.

    C, Accumulation of the interaction of functional,andwith. PS index, Photoperiodic sensitivity index; NNN, FNN, FFN and FFF indicate the presence of functional genotypes at none, one, two and three of the,andloci, respectively. Data are presented in Mean ± SD. Values above the bars indicate number of varieties.

    It has been known that,andare three main regulators of(Nemoto et al, 2016; Du et al, 2017; Zhang et al, 2019). Following the two-group classification of functional and non-functional genotypes at the four loci, each rice collection used in the present study was classified into four genotypic groups for gene pairs-,-and-, respectively. Phenotypic differences on HD in HZ among the four genotypic groups of the same series were analyzed using the Duncan’s multiple test. The differences revealed a consistent pattern of digenic interaction across all the three gene pairs in the two collections (Fig. 1-B). The functionaldelayed flowering with functional,and, but promoted flowering with non-functional,and. It would be also important to determine the joint effects of the three digenic interactions on the function of.

    Rice cultivars in each collection were further classified into different groups according to the functional type ofand the total number of genes showing functional genotypes at the,andloci (Fig. 1-C). In improved variety, only seven groups were available because no cultivar had non- functional genotypes at all the four loci. In landrace, all the eight groups were available. In each collection, the effects ofon HD in HZ and PS index were analyzed with changes of the total number of functional,and. In improved variety, functionaldelayed flowering in HZ by 53 d when,andall had functional genotypes, but this effect almost completely disappeared when only one or two of the three background genes had functional genotypes. Consistent results were observed on PS index despite of the presence of a residual effect when two background genes had functional genotypes. In landrace, similar but less obvious tendency was detected for the two traits.

    Ecotypes of the improved varieties and landraces were defined by the primary cropping region and season, followed by classification of functional groups according to the functional type ofand the total number of functional,and(Table 1). In improved variety, the seven functional groups showed a clear differentiation on growing seasons. In the group having functionaland non-functional,and, all the 55 varieties were early-season varieties. In the groups having functionalwith two or three other functional genes, all the 15 varieties were late-season varieties. In the three other groups having one or two functional genes, the 45 varieties were all early- or middle-season varieties, except one late-season variety used in central China. The last group, which had non-functionaland functional,and, contained five, three and two early-, middle- and late-season varieties, respectively. In landrace variety, differentiation of the functional groups on growing seasons was also observed but less distinguishable than in improved variety. Landraces having functional genotypic at all the,andloci were found in 29 of 31 late-season cultivars, but only in 4 of 50 early/middle cultivars.

    Double cropping of early- and late-season rice varieties in the southern China rice region plays a critical role in ensuring the food security in China. It has been recognized that early-season varieties used in a large scale of the commercial rice production do not show sensibility to photoperiod or only have weak sensitivity, although they generally carry functionalhaving a strong sensitivity to photoperiod (Lin et al, 2000; Xu et al, 2010). Of the 86 early-season improved varieties for which genotypes of,,andwere all clear, 62 carried functional(Table 1). However, all the 62 varieties were not included either in the only group showing strong PS in the two collections,+FFF (functionalwith functional genotypic at all the,andloci), or in the group having residual PS in improved variety,+FFN (functionalwith two functional genotypes at the,andloci). Obviously, loss of the strong photoperiodic sensitivity of functionalin early-season rice varieties can be ascribed to the absence of sufficient complementation from,and. In the meantime, presence of the functionalin most early-season rice varieties was beneficial due to its favorable association with early heading in the presence of non-functional,and. It was also found 55 of the 62 early-season improved varieties were included in the+NNN group (functionalwith non-functional genotype at the,andloci) which showed no PS, whereas only two landraces belonged to this group (Table 1). These results suggest that the combination of functionalwith non-functional,andhas undergone intensive artificial selection in modern rice breeding.

    Table 1.Ecotypic distribution of different combinations of Hd1, Ghd7, DTH8 and Hd2 functional types.

    , Functional;, Non-functional. NNN, FNN, FFN and FFF indicate the presence of functional genotypes at none, one, two and three of the,andloci, respectively.

    Taking advantage of the climate conditions in winter and spring in Hainan Province of China, shuttle breeding from other regions of China is implemented in Hainan during the cold season (Zhou et al, 2014). The rice materials are grown and tested in Hainan under NSD conditions, but most of the varieties developed are to be used under NLD conditions. Such a difference may lead to inappropriate selection on the agronomical traits especially flowering time (Wang et al, 2001; Qin et al, 2016; Zhao et al, 2017). Based on the comparison between HD of the 132 improved varieties in HZ and LS, it appears that day-length difference between the two regions may be no longer a great problem. As shown in Fig. S2-A, discrepancy on HD between the two regions was only observed in five varieties in the+FFF group and several varieties in the+FFN group, and all of them are late-season varieties grown under NLD conditions in their original cultivating areas. On the other hand, discrepancy was observed for many more landraces (Fig. S2-B). These results indicated that intensive artificial selection in modern rice breeding not only shaped rice varieties to adapt to the eco-geographical conditions in southern China, but also brought about the adaptation to shuttle breeding between Hainan and other regions of China.

    In conclusion, the effects ofconditioned by its interactions with,andlargely determined the eco-geographical adaptation of rice varieties in southern China. Intensive artificial selection in modern rice breeding has resulted in the accumulation of the genotypic combination of functionalwith non-functional,andin early-season varieties in southern China.

    ACKNOWLEDGEMENTS

    This study was supported by the National Natural Science Foundation of China (Grant No. 31571637) and the Agricultural Science and Technology Innovation Program of the Chinese Academy of Agricultural Science (CAAS-ASTIP-2013-CNRRI). We thank the National Medium Rice Genebank at the China National Rice Research Institute for providing rice varieties.

    SUPPLEMENTAL DATA

    The following materials are available in the online version of this article at http://www.sciencedirect.com/science/journal/ rice-science; http://www.ricescience.org.

    File S1. Methods.

    Fig. S1. Heading date and photoperiodic sensitivity index of three allelic types ofin rice.

    Fig. S2. Comparison of heading date between Hangzhou and Lingshui.

    Table S1. Improved varieties ofrice used in this study.

    Table S2. Landraces ofrice used in this study.

    Table S3. DNA markers used in this study.

    Table S4. Heading date and photoperiodic sensitivity of multiple allelic types ofrice at,and.

    Du A P, Tian W, Wei M H, Yan W, He H, Zhou D, Huang X, Li S G, Ouyang X H. 2017. The DTH8-Hd1 module mediates day-length- dependent regulation of rice flowering., 10(7): 948–961.

    Fujino K, Yamanouchi U, Yano M. 2013. Roles of thegene controlling heading date for adaptation to the northern limits of rice cultivation., 126(3): 611–618.

    Gomez-Ariza J, Galbiati F, Goretti D, Brambilla V, Shrestha R, Pappolla A, Courtois B, Fornara F. 2015. Loss of floral repressor function adapts rice to higher latitudes in Europe., 66(7): 2027–2039.

    Goretti D, Martignago D, Landini M, Brambilla V, Gómez-Ariza J, Gnesutta N, Galbiati F, Collani S, Takagi H, Terauchi R, Mantovani R, Fornara F. 2017. Transcriptional and post-transcriptional mechanisms limit heading date 1 (Hd1) function to adapt rice to high latitudes., 13(7): e1006530.

    Li X F, Liu H Z, Wang M Q, Liu H L, Tian X J, Zhou W J, Lu T X, Wang Z Y, Chu C C, Fang J, Bu Q Y. 2015. Combinations ofandgenes determine rice adaptability to Heilongjiang Province, northern limit of China., 57(8): 698–707.

    Li X F, Sun Y Q, Tian X J, Ren Y K, Tang J Q, Wang Z Y, Cheng Y Q, Bu Q Y. 2018. Comprehensive identification of major flowering time genes and their combinations, which determined rice distribution in Northeast China., 84(3): 593–602.

    Lin H X, Yamamoto T, Sasaki T, Yano M. 2000. Characterization and detection of epistatic interactions of 3 QTLs,,, and, controlling heading date in rice using nearly isogenic lines., 101(7): 1021–1028.

    Naranjo L, Talon M, Domingo C. 2014. Diversity of floral regulatory genes ofrice cultivated at northern latitudes., 15: 101.

    Nemoto Y, Nonoue Y, Yano M, Izawa T. 2016., aortholog in rice, functions as anrepressor through interaction with monocot-specific CCT-domain protein Ghd7., 86(3): 221–233.

    Qin G, Ma Z F, Qing Y Y, Liu C, Zhang Y X, Huang D H. 2016. Effect of changes of ecological condition of plant breeding base of Hainan on yield related traits ofrice., 29(1): 1–5. (in Chinese with English abstract)

    Wang J L, Li J Q, Zhang H, Xu W, Meng Q. 2001. The performance northernrice in Hainan and field managements., 32(2): 83–88. (in Chinese with English abstract)

    Xu J F, Wei X J, Jiang L, Lu G W, Wang H J, Zhou Z L, Wan J M. 2010. Genetic analysis of heading date of some early seasonrice cultivars and hybrid rice parent in China., 24(3): 215–222. (in Chinese with English abstract)

    Ye J, Niu X J, Yang Y L, Wang S, Xu Q, Yuan X P, Yu H Y, Wang Y P, Wang S, Feng Y, Wei X H. 2018. Divergent,, andalleles control heading date and yield potential ofrice in northeast China., 9: 35.

    Zhang Z Y, Zhang B, Qi F X, Wu H, Li Z X, Xing Y Z. 2019.function conversion in regulating heading is dependent on gene combinations of,, andunder long-day conditions in rice., 39: 92.

    Zhao F Y, Liu C Z, Ma B, Hu J F, Tan K F, Yu K C, Wang C. 2017. Main traits change of cold regionplanted in Hainan Province., 5: 31–33. (in Chinese with English abstract)

    Zhou J, Luo J M, Xu X R, Zhang Y L, Ma S, Lu H Y. 2014. Strategic significance and development tend of Nanfan base construction., 38(3): 45–48. (in Chinese with English abstract)

    17 March 2020;

    5 August 2020

    Copyright ? 2021, China National Rice Research Institute. Hosting by Elsevier B V

    This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)

    Peer review under responsibility of China National Rice Research Institute

    http://dx.doi.org/10.1016/j.rsci.2021.01.001

    Zhuang Jieyun (zhuangjieyun@caas.cn)

    91精品国产九色| 狂野欧美激情性xxxx在线观看| 国产三级在线视频| 一个人看的www免费观看视频| 欧美潮喷喷水| 成年免费大片在线观看| 久久综合国产亚洲精品| avwww免费| 国内精品美女久久久久久| 在线国产一区二区在线| 成年免费大片在线观看| 亚洲精品影视一区二区三区av| 99热只有精品国产| 天天躁夜夜躁狠狠久久av| 国产精品99久久久久久久久| 亚洲不卡免费看| 99riav亚洲国产免费| 亚洲内射少妇av| 99热这里只有是精品50| 久久精品综合一区二区三区| 国产精品人妻久久久久久| 亚洲美女搞黄在线观看| 一本久久精品| 99久久无色码亚洲精品果冻| 亚洲欧洲日产国产| 中文字幕熟女人妻在线| 日韩中字成人| 免费av不卡在线播放| 午夜久久久久精精品| 18禁在线无遮挡免费观看视频| 中国国产av一级| 国产精品一区二区三区四区久久| 一区福利在线观看| 成人毛片a级毛片在线播放| 精品少妇黑人巨大在线播放 | 最近视频中文字幕2019在线8| 亚洲最大成人中文| 国产高清三级在线| 国产单亲对白刺激| 日本撒尿小便嘘嘘汇集6| 国产麻豆成人av免费视频| 亚洲成人精品中文字幕电影| 久久久欧美国产精品| 日韩欧美国产在线观看| av女优亚洲男人天堂| 一边摸一边抽搐一进一小说| 亚洲aⅴ乱码一区二区在线播放| 最近视频中文字幕2019在线8| 天堂√8在线中文| 日韩精品有码人妻一区| 久久热精品热| 永久网站在线| 久久久久久久久久久免费av| 日韩,欧美,国产一区二区三区 | 日日干狠狠操夜夜爽| 久久久久久久久久黄片| 3wmmmm亚洲av在线观看| 国产真实伦视频高清在线观看| 亚洲成人精品中文字幕电影| 日韩成人伦理影院| 91精品国产九色| 国产人妻一区二区三区在| 91久久精品国产一区二区成人| 国国产精品蜜臀av免费| 日韩欧美三级三区| 久久精品久久久久久噜噜老黄 | 国产精品麻豆人妻色哟哟久久 | 亚洲一区二区三区色噜噜| 国产伦在线观看视频一区| 亚洲av成人精品一区久久| 成年免费大片在线观看| 国产老妇伦熟女老妇高清| 国产黄色小视频在线观看| 舔av片在线| 国产av不卡久久| 国产av不卡久久| 久久亚洲精品不卡| 国内精品美女久久久久久| 婷婷亚洲欧美| 欧美最新免费一区二区三区| 成年版毛片免费区| 欧美不卡视频在线免费观看| 日韩一区二区视频免费看| 黄色欧美视频在线观看| 成人欧美大片| 久久亚洲国产成人精品v| 亚洲欧美成人精品一区二区| 亚洲国产精品国产精品| 国产亚洲精品久久久com| 校园人妻丝袜中文字幕| 国产高清有码在线观看视频| 岛国在线免费视频观看| 亚洲国产精品成人综合色| 我要看日韩黄色一级片| 一本—道久久a久久精品蜜桃钙片 精品乱码久久久久久99久播 | 好男人在线观看高清免费视频| 精品欧美国产一区二区三| 最近2019中文字幕mv第一页| 乱系列少妇在线播放| 亚洲四区av| 12—13女人毛片做爰片一| 欧美人与善性xxx| 国产亚洲精品av在线| 亚洲成av人片在线播放无| 免费av观看视频| 91狼人影院| 欧美日韩国产亚洲二区| 午夜免费男女啪啪视频观看| 免费人成在线观看视频色| 国产精品野战在线观看| 国产精品电影一区二区三区| 波多野结衣巨乳人妻| 搞女人的毛片| 久久久久久久亚洲中文字幕| 国产乱人偷精品视频| 亚洲久久久久久中文字幕| 男人狂女人下面高潮的视频| 麻豆精品久久久久久蜜桃| 中文字幕精品亚洲无线码一区| 51国产日韩欧美| 夜夜夜夜夜久久久久| 韩国av在线不卡| 中文字幕免费在线视频6| 成人二区视频| 亚洲人与动物交配视频| 1024手机看黄色片| 一区二区三区免费毛片| 成人午夜高清在线视频| 日本av手机在线免费观看| 亚洲国产欧美人成| 免费人成视频x8x8入口观看| 久久久久九九精品影院| 三级毛片av免费| 在线观看午夜福利视频| 亚洲精品久久国产高清桃花| 日日干狠狠操夜夜爽| 午夜老司机福利剧场| 能在线免费观看的黄片| 九九爱精品视频在线观看| 中文在线观看免费www的网站| 亚洲第一电影网av| 亚洲在线观看片| av在线亚洲专区| 精品不卡国产一区二区三区| 国产女主播在线喷水免费视频网站 | 又黄又爽又刺激的免费视频.| 啦啦啦观看免费观看视频高清| 亚洲无线观看免费| 1000部很黄的大片| 五月伊人婷婷丁香| 精品久久国产蜜桃| 欧美性猛交黑人性爽| 精品久久久久久久久av| 少妇的逼好多水| 乱人视频在线观看| 国产黄色小视频在线观看| 精品久久久久久久末码| 国产成人aa在线观看| 久久精品国产99精品国产亚洲性色| 精品日产1卡2卡| 一级av片app| 久久久a久久爽久久v久久| 天堂网av新在线| 久久久欧美国产精品| 亚洲不卡免费看| 啦啦啦韩国在线观看视频| 婷婷亚洲欧美| 日韩一本色道免费dvd| 亚洲激情五月婷婷啪啪| 不卡一级毛片| 亚洲成人精品中文字幕电影| 草草在线视频免费看| 欧美一区二区国产精品久久精品| 国产黄a三级三级三级人| 国产黄a三级三级三级人| 国产一区二区亚洲精品在线观看| 中国国产av一级| 国产黄片视频在线免费观看| 日韩av在线大香蕉| 日韩高清综合在线| 18禁在线无遮挡免费观看视频| 一边摸一边抽搐一进一小说| 久久精品国产亚洲网站| 婷婷色av中文字幕| 晚上一个人看的免费电影| 亚洲精品456在线播放app| 校园春色视频在线观看| 亚洲国产精品国产精品| 十八禁国产超污无遮挡网站| 亚洲在线观看片| 国产伦精品一区二区三区四那| 波多野结衣巨乳人妻| 久久久久免费精品人妻一区二区| 免费看光身美女| 白带黄色成豆腐渣| 国产亚洲精品久久久久久毛片| 亚洲一区二区三区色噜噜| 久久热精品热| 91aial.com中文字幕在线观看| 国产伦精品一区二区三区视频9| 一边亲一边摸免费视频| 女人十人毛片免费观看3o分钟| 亚洲最大成人av| 97在线视频观看| 国产黄片视频在线免费观看| 国产亚洲av嫩草精品影院| 色播亚洲综合网| 一级毛片久久久久久久久女| 床上黄色一级片| 五月伊人婷婷丁香| 国产三级在线视频| 在线a可以看的网站| 少妇的逼水好多| 国产精品麻豆人妻色哟哟久久 | 又爽又黄无遮挡网站| 欧美zozozo另类| 又粗又硬又长又爽又黄的视频 | 亚洲激情五月婷婷啪啪| 欧美日韩综合久久久久久| 国内精品一区二区在线观看| 免费av观看视频| 大又大粗又爽又黄少妇毛片口| 国产一级毛片在线| 国产精品久久视频播放| 中国国产av一级| a级毛片免费高清观看在线播放| 色播亚洲综合网| 99热6这里只有精品| 天堂网av新在线| 三级男女做爰猛烈吃奶摸视频| 亚洲精品成人久久久久久| 国产精品日韩av在线免费观看| 校园人妻丝袜中文字幕| 麻豆成人午夜福利视频| 欧美极品一区二区三区四区| 国产亚洲av片在线观看秒播厂 | 12—13女人毛片做爰片一| 亚洲欧美成人综合另类久久久 | 久久精品国产自在天天线| 黄片wwwwww| 亚州av有码| 免费大片18禁| 成人av在线播放网站| 一卡2卡三卡四卡精品乱码亚洲| 国产高清三级在线| 亚洲欧美成人精品一区二区| h日本视频在线播放| 国产女主播在线喷水免费视频网站 | 国产精品福利在线免费观看| 美女黄网站色视频| videossex国产| 午夜精品国产一区二区电影 | 中文字幕熟女人妻在线| 少妇裸体淫交视频免费看高清| 99国产精品一区二区蜜桃av| 一本久久精品| 秋霞在线观看毛片| 欧美3d第一页| 亚洲国产精品国产精品| 老女人水多毛片| 天堂av国产一区二区熟女人妻| 欧美日韩国产亚洲二区| 九草在线视频观看| 成人永久免费在线观看视频| 国产熟女欧美一区二区| 亚洲欧美日韩无卡精品| 黑人高潮一二区| 在线免费观看的www视频| 欧美性猛交黑人性爽| 一级毛片久久久久久久久女| 美女内射精品一级片tv| 精品一区二区三区视频在线| 亚洲国产精品国产精品| 午夜视频国产福利| 麻豆成人av视频| 成年女人看的毛片在线观看| 一区福利在线观看| 九九热线精品视视频播放| 麻豆国产av国片精品| 久久精品国产99精品国产亚洲性色| av女优亚洲男人天堂| 51国产日韩欧美| 尤物成人国产欧美一区二区三区| 国产伦精品一区二区三区四那| 老熟妇乱子伦视频在线观看| 人人妻人人澡欧美一区二区| 国产精品一区二区三区四区久久| 99久久无色码亚洲精品果冻| 日韩亚洲欧美综合| 啦啦啦啦在线视频资源| 国产高清三级在线| 欧美高清成人免费视频www| 欧美最新免费一区二区三区| 91aial.com中文字幕在线观看| 国产国拍精品亚洲av在线观看| 精品久久久久久久末码| 亚洲成a人片在线一区二区| 又粗又爽又猛毛片免费看| 精品一区二区免费观看| 欧美日韩乱码在线| 亚洲精品456在线播放app| 在线播放无遮挡| 男的添女的下面高潮视频| 精品久久久久久久久av| 99热6这里只有精品| 久久久久久久久中文| 亚洲激情五月婷婷啪啪| 激情 狠狠 欧美| 日本撒尿小便嘘嘘汇集6| 日韩视频在线欧美| 国产精品久久久久久久电影| 麻豆久久精品国产亚洲av| 国产蜜桃级精品一区二区三区| 国国产精品蜜臀av免费| 日本一二三区视频观看| 日韩欧美国产在线观看| h日本视频在线播放| 国产成人91sexporn| 岛国在线免费视频观看| 国产v大片淫在线免费观看| 国产精品人妻久久久久久| ponron亚洲| 97超视频在线观看视频| 亚洲高清免费不卡视频| 免费看日本二区| 欧美日韩国产亚洲二区| 91午夜精品亚洲一区二区三区| 亚洲av.av天堂| 国模一区二区三区四区视频| 日韩欧美国产在线观看| 插逼视频在线观看| 久久99热这里只有精品18| 青春草亚洲视频在线观看| 国产精品一区www在线观看| 欧美高清性xxxxhd video| 欧美人与善性xxx| 亚洲精品自拍成人| 变态另类丝袜制服| 男插女下体视频免费在线播放| 99热这里只有精品一区| 搞女人的毛片| 久久99精品国语久久久| 亚州av有码| 国产成人影院久久av| 亚洲不卡免费看| 日韩,欧美,国产一区二区三区 | 伦理电影大哥的女人| 亚洲欧美日韩无卡精品| a级毛片a级免费在线| 亚洲国产精品成人久久小说 | 久久精品国产亚洲av香蕉五月| 黄色视频,在线免费观看| 日本撒尿小便嘘嘘汇集6| 国产精品乱码一区二三区的特点| 黄片wwwwww| 欧美成人一区二区免费高清观看| 国产综合懂色| 国产高清不卡午夜福利| 久久精品夜夜夜夜夜久久蜜豆| 国产黄色小视频在线观看| 国产成人a∨麻豆精品| 简卡轻食公司| 国产精品永久免费网站| 在线国产一区二区在线| 精品不卡国产一区二区三区| 在线天堂最新版资源| av在线蜜桃| 深夜a级毛片| 久久人人爽人人爽人人片va| 我要搜黄色片| 国产淫片久久久久久久久| 国产日本99.免费观看| 人妻久久中文字幕网| 亚洲久久久久久中文字幕| 级片在线观看| 久久人妻av系列| 哪个播放器可以免费观看大片| 国产高清激情床上av| 成年女人永久免费观看视频| 日韩av在线大香蕉| 性色avwww在线观看| 性欧美人与动物交配| 少妇高潮的动态图| 热99在线观看视频| 一本久久中文字幕| 少妇的逼水好多| 精华霜和精华液先用哪个| 一级毛片我不卡| 欧美变态另类bdsm刘玥| 国产av在哪里看| 午夜亚洲福利在线播放| 国产精品久久电影中文字幕| 美女脱内裤让男人舔精品视频 | 最近中文字幕高清免费大全6| 国产v大片淫在线免费观看| 免费无遮挡裸体视频| 亚洲一级一片aⅴ在线观看| 午夜爱爱视频在线播放| 国产午夜精品论理片| 色吧在线观看| 国产亚洲av嫩草精品影院| 国产精品野战在线观看| 国产极品天堂在线| 91久久精品国产一区二区三区| 久久精品久久久久久久性| 成年版毛片免费区| 亚洲国产欧洲综合997久久,| 国产69精品久久久久777片| 国产成人freesex在线| 3wmmmm亚洲av在线观看| 99riav亚洲国产免费| 日韩大尺度精品在线看网址| 亚洲精品久久久久久婷婷小说 | 亚洲精品日韩在线中文字幕 | 国产激情偷乱视频一区二区| 亚洲精品久久久久久婷婷小说 | 久久99蜜桃精品久久| 一级毛片aaaaaa免费看小| 午夜福利在线观看免费完整高清在 | 亚洲av一区综合| 晚上一个人看的免费电影| 免费无遮挡裸体视频| 国产精品国产三级国产av玫瑰| 精品欧美国产一区二区三| 一级毛片aaaaaa免费看小| 成人亚洲欧美一区二区av| 国产极品天堂在线| 一级二级三级毛片免费看| 韩国av在线不卡| 久久亚洲国产成人精品v| www日本黄色视频网| 狂野欧美激情性xxxx在线观看| 好男人视频免费观看在线| 麻豆乱淫一区二区| 亚洲av成人精品一区久久| 不卡视频在线观看欧美| 日本免费一区二区三区高清不卡| 国产高清激情床上av| 日韩强制内射视频| 美女cb高潮喷水在线观看| 免费看日本二区| 99热精品在线国产| h日本视频在线播放| 日本五十路高清| 在线免费观看的www视频| 亚洲av一区综合| 国产片特级美女逼逼视频| 毛片女人毛片| 99久久无色码亚洲精品果冻| 亚洲丝袜综合中文字幕| 亚洲欧美精品自产自拍| 91麻豆精品激情在线观看国产| 日本欧美国产在线视频| 国产精品99久久久久久久久| 国产高清视频在线观看网站| 蜜桃亚洲精品一区二区三区| 精品一区二区三区人妻视频| 亚洲av一区综合| 欧美一级a爱片免费观看看| 国产真实伦视频高清在线观看| 男插女下体视频免费在线播放| 日韩成人伦理影院| 我的女老师完整版在线观看| 亚洲欧美中文字幕日韩二区| 伦理电影大哥的女人| 亚洲内射少妇av| 欧洲精品卡2卡3卡4卡5卡区| 日韩精品青青久久久久久| 最后的刺客免费高清国语| 尾随美女入室| 国产成人精品婷婷| 啦啦啦啦在线视频资源| 日本黄大片高清| 日日干狠狠操夜夜爽| 免费观看精品视频网站| 色噜噜av男人的天堂激情| 简卡轻食公司| 三级经典国产精品| 九九热线精品视视频播放| 精品人妻一区二区三区麻豆| 亚洲精品久久久久久婷婷小说 | 亚洲自拍偷在线| 99久久精品国产国产毛片| 中国美白少妇内射xxxbb| 久久精品国产清高在天天线| 99热这里只有是精品在线观看| av.在线天堂| 91久久精品国产一区二区成人| 国产成人一区二区在线| 国产成人精品婷婷| 国产久久久一区二区三区| 国产三级中文精品| 色播亚洲综合网| 国产伦精品一区二区三区四那| 菩萨蛮人人尽说江南好唐韦庄 | 深夜精品福利| 欧美成人免费av一区二区三区| 欧美一区二区精品小视频在线| 亚洲五月天丁香| 尾随美女入室| АⅤ资源中文在线天堂| 啦啦啦啦在线视频资源| 国产免费一级a男人的天堂| 一本久久精品| 免费av不卡在线播放| 一夜夜www| av专区在线播放| www.色视频.com| 国产亚洲欧美98| av在线蜜桃| 亚洲五月天丁香| 日韩成人伦理影院| 国产高清视频在线观看网站| 成熟少妇高潮喷水视频| 在线观看av片永久免费下载| 亚洲国产精品成人综合色| 久久久欧美国产精品| 久久久久久久久久黄片| 老司机福利观看| 国产精品久久久久久亚洲av鲁大| 97热精品久久久久久| 久久久久免费精品人妻一区二区| 国产成年人精品一区二区| 亚洲欧美精品综合久久99| 欧美精品一区二区大全| 久久午夜福利片| 尾随美女入室| 九色成人免费人妻av| 久久精品国产鲁丝片午夜精品| 中文欧美无线码| 简卡轻食公司| 国产亚洲精品久久久久久毛片| 69人妻影院| 久久久欧美国产精品| 国产成年人精品一区二区| 亚洲人成网站在线播| 自拍偷自拍亚洲精品老妇| 简卡轻食公司| 国产精品久久久久久久电影| 成人午夜高清在线视频| 亚洲成av人片在线播放无| 国产成人精品婷婷| 国产乱人偷精品视频| 免费观看a级毛片全部| 麻豆av噜噜一区二区三区| 99久久久亚洲精品蜜臀av| 久久韩国三级中文字幕| 黄色一级大片看看| 日韩强制内射视频| 成人一区二区视频在线观看| 色吧在线观看| 日本三级黄在线观看| 婷婷色综合大香蕉| 一级av片app| 国产三级在线视频| 麻豆精品久久久久久蜜桃| 此物有八面人人有两片| 日本黄色片子视频| 五月伊人婷婷丁香| 久久精品久久久久久久性| 哪个播放器可以免费观看大片| 欧美3d第一页| 国产精品无大码| 啦啦啦啦在线视频资源| 神马国产精品三级电影在线观看| 在线免费十八禁| 91久久精品电影网| 日本欧美国产在线视频| 不卡一级毛片| 亚洲欧美日韩高清专用| av在线蜜桃| 麻豆成人午夜福利视频| 日韩欧美 国产精品| 国产老妇伦熟女老妇高清| 日韩欧美 国产精品| 午夜爱爱视频在线播放| av在线蜜桃| 久久国内精品自在自线图片| 美女脱内裤让男人舔精品视频 | 一进一出抽搐动态| 国产极品天堂在线| 91精品国产九色| avwww免费| 国内久久婷婷六月综合欲色啪| www.色视频.com| 国产色爽女视频免费观看| 五月玫瑰六月丁香| 久久久a久久爽久久v久久| 国产私拍福利视频在线观看| 午夜久久久久精精品| 久久这里只有精品中国| 别揉我奶头 嗯啊视频| 国产精品久久久久久精品电影| 国产在视频线在精品| 亚洲一级一片aⅴ在线观看| 成人综合一区亚洲| 国国产精品蜜臀av免费| 欧美高清成人免费视频www| 亚洲最大成人av| 精品少妇黑人巨大在线播放 | 一夜夜www| 国产精品.久久久| 午夜免费激情av| 亚洲激情五月婷婷啪啪| 99热全是精品| 精品人妻视频免费看| 99久国产av精品| 久久99热这里只有精品18| 亚洲人成网站高清观看| 国产精品日韩av在线免费观看| 国产成人午夜福利电影在线观看| 激情 狠狠 欧美| 精品少妇黑人巨大在线播放 | 超碰av人人做人人爽久久| 国内精品一区二区在线观看|