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桂建芳,男,1956年6月,出生于湖北黄梅。2013年当选为中国科学院院士;2015年当选发展中国家科学院院士。长期从事鱼类遗传育种相关的发育遗传学基础和生物技术研究。系统解析多倍体银鲫生殖发育机制,原创育种技术路线,培育出经济效益显著的系列水产新品种4个,取得了重大的社会经济效益。已在国内外核心刊物发表论文570多篇,授权发明专利20多项,出版专著和教材10部。<\/p><\/div>" var yjfx="
发育及免疫遗传学与鱼类遗传育种<\/p><\/div>" var hjjry="
研究成果先后获国家自然科学奖二等奖(2011年)等10多项科技成果奖。个人于1996年获香港求是科技基金会杰出青年学者奖,2009年获全国“五一劳动奖章”,2015年获全国先进工作者,2015年获何梁何利基金科学与技术进步奖,2015年获湖北省科技突出贡献奖,2022年获李佩教学名师奖等荣誉称号<\/span>。<\/p><\/div>"
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var dblz=" 1. Lu M*, Zhang QC, Zhu ZY, Wang Y, Wang ZW, Li XY, Li Z, Zhang XJ, Zhou L*, Gui JF*. Manipulating unisexual-sexual reproduction transition to engineer genome-reconstructed polyploids. Advanced Science, 2025, 12(33): e06024. e06024. https:\/\/doi.org\/10.1002\/advs.202506024<\/p> 2. Lin QH, Du X, Ren F, Liu Y, Gong GR, Ge S, Li W, Li Z, Zhou L, Duan M, Li XY, Wang GZ, Xiao R*, Gui JF*, Mei J*. Anti-Müllerian hormone signalling sustains circadian homeostasis in zebrafish. Nature Communications, 2025, 16(1):4359. https:\/\/doi.org\/10.1038\/s41467-025-59528-1<\/p> 3. Miao C, Li Z, Yao TZ, Wang MT, Ding M, Zhang XJ, Wang Y, Wang ZW, Zhou L, Gui JF*, Li XY*, 2025. Anti-Müllerian hormone deficiency leads to two distinct ovarian phenotypes with different alterations of sex hormones in gynogenetic carp. Aquaculture, 595(2), 741621, https:\/\/doi.org\/10.1016\/j.aquaculture.2024.741621.<\/p> 4. Yang XL, Wang Y, Li Z, Lin QH, Yu P, Lu M, Li XY, Wang ZW, Zhang XJ, Gui JF*, Zhou L*. Expression pattern changes of three homeologs in chemokine activity enhance antiviral response to herpesvirus infection in a newly synthesized alloheptaploid. BMC Genomics. 2025, 26(1):662. https:\/\/doi.org\/10.1186\/s12864-025-11838-w.<\/p> 5. KongXZ, Wang ZY, Wang HJ*, Gui JF. Harmonizing biodiversity, environment, and economy: A coordinative framework for aquatic conservation. The Innovation, 2025, 6(12), 101071. https:\/\/doi.org\/10.1016\/j.xinn.2025.101071.<\/p> 6. Li LL, Xu QL, Yi WJ, Ma DD, Jin H, Fu DZ, Yang XL, Wang Y, Li Z, Wang ZW, Li XY, Lu M, Zhang XJ, Zhou L*, Gui JF*, Yu P*. Arachidonic Acid Metabolism Down-Regulation-Mediated Tumor Necrosis Factor Signaling Contributes to Cutaneous Fibrosis and Skull Hyperplasia in Goldfish Hoods. Research, 2025, 8: 0786. https:\/\/doi. org\/10.34133\/research.0786\/.<\/p> 7. Du WX, Li Z, Wang T, Ding M, Wang MT, Miao C, Zhang XJ, Wang Y, Wang ZW, Li Zhou, Gui JF*, Li XY*, 2026. Gonadal temperature-sensitive gene identification in gynogenetic gibel carp (Carassius gibelio) with temperature-dependent sex determination. Aquaculture, 2026, 611: 743035. https:\/\/doi.org\/10.1016\/j.aquaculture.2025.743035.<\/p> 8. Miao C, Lu M, Ding M, Wang MT, Li Z, Yao TZ, Zhu ZX, Du WX, Niu JS, Zhang XJ, Li S, Yu P, Wang Y, Wang ZW, Xiong J, Zhou L, Gui JF*, Li XY*, amh alleles on XY sex chromosomes regulate male differentiation in amphidiploid Carassius auratus. Science China-Life Sciences, 2026, https:\/\/doi.org\/10.1007\/s11427-025-2970-4.<\/p> 9. Miao LJ, Zhou L, Chen Y, Li Z, Han X, Peng F, Yang L, Li YD, Zhang XJ, Lu M, Wang ZW, Li XJ, Gui JF*, Wang Y*. 2025. Mei4 deficiency leads to sexual dimorphism of early meiosis and occurrence of unreduced eggs in zebrafish. Zoological Research. DOI: 10.24272\/j.issn.2095-8137.2025.186.<\/p> 10. Lian KQ, Shan JY, Ma J, Liu YL, Li X, Lu ML, Ding M, Wei J, Zhou L, Kuang YY*, Gui JF*, Peng RH*. Chromosome-level genome assembly of Qihe gibel carp. Scientific Data, 2025, 12(1):1290. https:\/\/doi.org\/10.1038\/s41597-025-05636-y.<\/p> 11. Wang T, Gong G, Li Z, Niu JS, Du WX, Wang ZW, Wang Y, Zhou L, Zhang XJ, Lian ZQ, Mei J*, Gui JF*, Li XY*. Genomic anatomy of homozygous XX females and YY males reveals early evolutionary trajectory of sex-determining gene and sex chromosomes in Silurus fishes. Molecular Biology and Evolution, 2024, 41(8), msae169.<\/p> 12. Gui JF. Chinese wisdom and modern innovation of aquaculture. Water Biology and Security, 2024, 3(3): 100271, doi.org\/10.1016\/j.watbs.2024.100271.<\/p> 13. Lu M, Zhou L, Gui JF. Evolutionary mechanisms and practical significance of reproductive success and clonal diversity in unisexual vertebrate polyploids. Science China-Life Sciences. 2024, 67(3): 449-459. doi: 10.1007\/s11427-023-2486-2.<\/p> 14. Niu JS, Wang T, Li Z, Wang ZW, Ding M, Wang MT, Lian ZQ, Mei J, Wang Y, Zhou L, Zhang XJ, Gui JF, Li XY. Efficient breeding and growth advantage of all-male population in Lanzhou catfish (Silurus lanzhouensis). Aquaculture, 2024, 578: 740023.<\/p> 15. Lu M, Zhang QC, Zhu ZY, Peng F, Li Z, Wang Y, Li XY, Wang ZW, Zhang XJ, Zhou L*, Gui JF*. An efficient approach to synthesize sterile allopolyploids through the combined reproduction mode of ameiotic oogenesis and sperm-egg fusion in the polyploid Carassius complex. Science Bulletin, 2023, 68(10): 1038-1050. doi.org\/10.1016\/j.scib.2023.04.029.<\/p> 16. Gan RH, Li Z, Wang ZW, Li XY, Wang Y, Zhang XJ, Tong JF, Wu Y, Xia LY, Gao ZX*, Zhou L*, Gui JF*. Creation of intermuscular bone-free mutants in amphitriploid gibel carp by editing two duplicated runx2b homeologs. Aquaculture, 2023, 567: 7393<\/p> 17. Gan RH, Zhou L, Gui JF. Efficiently editing multiple duplicated homeologs and alleles for recurrent polyploids. In: Van de Peer, Y. (eds) Polyploidy. Methods in Molecular Biology, 2023, 2545: 491-512. Humana, New York, NY. https:\/\/doi.org\/10.1007\/978-1-0716-2561-3_26.<\/p> 18. Zhou L, Gui JF. Epigenetics in Hybridization and Polyploidization of Aquatic Animals. In Epigenetics in Aquaculture, First Edition. Edited by Francesc Piferrer and Han-Ping Wang,pp.287-299. John Wiley & Sons Ltd. Published 2023 by John Wiley & Sons Ltd.<\/p> 19. Zhou YL, Wu JJ, Gong GR, Liu M, Li Z, Guo XF, Wei WY, Zhang XJ, Mei J, Zhou L, Wang ZW, Gui JF. Barbel regeneration and function divergence in red-tail catfish (Hemibagrus wyckioides) based on the chromosome-level genomes and comparative transcriptomes. International Journal of Biological Macromolecules, 2023, 232:123374. https:\/\/doi.org\/10.1016\/j.ijbiomac.2023.123374.<\/p> 20. Gong G, Xiong Y, Xiao S, Li XY, Huang P, Liao Q, Han Q, Lin Q, Dan C, Zhou L, Ren F, Zhou Q, Gui JF*, Mei J*. Origin and chromatin remodelling of young X\/Y sex chromosomes in catfish with sexual plasticity. National Science Review, 2023, 10(2): nwac239, https:\/\/doi.org\/10.1093\/nsr\/nwac239.<\/p> 21. Yu P, Wang Y, Li Z, Jin H, Li LL, Han X, Wang ZW, Yang XL, Li XY, Zhang XJ, Zhou L*, Gui JF*. Causal gene identification and desirable trait recreation in goldfish. Science China-Life Sciences, 2022, 65(12): 2341-2353. https:\/\/doi.org\/10.1007\/s11427-022-2194-7.<\/p> 22. Lu M, Li Z, Zhu ZY, Peng F, Wang Y, Li XY, Wang ZW, Zhang XJ, Zhou L*, Gui JF*. Changes in ploidy drive reproduction transition and genomic diversity in a polyploid fish complex. Molecular Biology and Evolution, 2022, 39(9): msac 188. https:\/\/doi.org\/10.1093\/molbev\/msac188<\/p> 23. Wang Y, Li XY, Xu WJ, Wang K, Wu B, Xu M, Chen Y, Miao LJ, Wang ZW, Li Z, Zhang XJ, Yin Z, Zhou BT, Yang YL, Zhu CL, Hu ML, Zheng JM, Feng CG, Qiu Q, Tian LT, Lu M, Peng F, Lu WJ, Tong JF, Tong JG, Fu BD, Yu P, Ding M, Gan RH, Zhang QQ, Jian JB, Zhang C, He WM, Yang W, Zhao ZC, Zhang QQ, Gao Q, Xu JY, Bai MZ, Zhang YP, Yang HM, Fang XD*, Wang W*, Zhou L*, Gui JF*. Comparative genome anatomy reveals evolutionary insights into a unique amphitriploid fish. Nature Ecology & Evolution, 2022, 6: 1354-1366. https:\/\/doi.org\/10.1038\/s41559-022-01813-z.<\/p> 24. Wang MT, Li Z, Ding M, Yao TZ, Yang S, Zhang XJ, Miao C., Du W.X., Shi Q., Li S., Mei J., Wang Y., Wang Z.W., Zhou L., Li X.Y., Gui J.F., Two duplicated gsdf homeologs cooperatively regulate male differentiation by inhibiting cyp19a1a transcription in a hexaploid fish. PLoS Genetics, 2022, 18(6): e1010288. https:\/\/doi.org\/10.1371\/journal.pgen.1010288<\/p> 25. Li XY, Mei J, Ge CT, Liu XL, Gui JF. Sex determination mechanisms and sex control approaches in aquaculture animals. Science China-Life Sciences, 2022, 65 (6): 1091-1122. https:\/\/doi.org\/10.1007\/s11427-021-2075-x.<\/p> 26. Guo XF, Liu M, Zhou YL, Wei WY, Li Z, Zhou L, Wang ZW*, Gui JF. Genetic diversity evaluation and population structure analysis of red swamp crayfish (Procambarus clarkii) from lakes and rice fields by SSR markers. Fishes, 2022, 7: 142. https:\/\/doi.org\/10.3390\/fishes7040142.<\/p> 27. Gui JF, Zhou L, Li XY. Rethinking fish biology and biotechnologies in the challenge era for burgeoning genome resources and strengthening food security. Water Biology and Security, 2022, 1: 100002. https:\/\/doi.org\/10.1016\/j.watbs.2021.11.001.<\/p> 28. Ding M, Li XY*, Zhu ZX, Chen JH, Lu M, Shi Q, Wang Y, Li Z, Zhao X, Wang T, Du WX, Miao C, Yao TZ, Wang MT, Zhang XJ, Wang ZW, Zhou L, Gui JF. Genomic anatomy of male-specific microchromosomes in a gynogenetic fish. PLoS Genetics, 2021, 17(9): e1009760. https:\/\/doi.org\/10.1371\/journal.pgen.1009760.<\/p> 29. Yu P, Wang Y, Yang WT, Li Z, Zhang XJ, Zhou L*, Gui JF*. Upregulation of the PPAR signaling pathway and accumulation of lipids are related to the morphological and structural transformation of the dragon-eye goldfish eye. Science China-Life Sciences. 2021, 64(7): 1031-1049. https:\/\/doi.org\/10.1007\/s11427-020-1814-1.<\/p> 30. Gan RH, Wang Y, Li Z, Yu ZX, Li XY, Tong JF, Wang ZW, Zhang XJ, Zhou L*, Gui JF*. Functional Divergence of multiple duplicated foxl2 homeologs and alleles in a recurrent polyploid fish. Molecular Biology and Evolution, 2021, 38(5): 1995-2013. https:\/\/doi.org\/10.1093\/molbev\/msab002.<\/p> 31. Wang T, Li Z, Yu ZX, Wang ZW, Lian ZQ, Du WX, Zhao X, Wang MT, Miao C, Ding M, Wang Y, Zhou L, Zhang XJ, Li XY*, Gui JF*. Production of YY males through self-fertilization of an occasional hermaphrodite in Lanzhou catfish (Silurus lanzhouensis). Aquaculture, 2021,539: 736622.<\/p> 32. Gao FX, Lu WJ, Shi Y, Zhou L, Gui JF, Zhao Z*. Identification and functional characterization of three irf7 transcript variants in obscure puffer (Takifugu obscurus). Developmental & Comparative Immunology, 2021, 119: 104019. DOI: 10.1016\/j.dci.2021.104019.<\/p> 33. Yu P, Zhou L, Yang WT, Miao LJ, Li Z, Zhang XJ, Wang Y*, Gui JF*. Comparative mitogenome analyses uncover mitogenome features and phylogenetic implications of the subfamily Cobitinae. BMC Genomics, 2021, 22(1): 50. doi: 10.1186\/s12864-020-07360-w.<\/p> 34. Feng H, Zhang YB, Gui JF, Lemon SM*, Yamane D*, Interferon regulatory factor 1 (IRF1) and anti-pathogen innate immune responses. PLoS Pathogens, 2021, 17(1): e1009220.doi: 10.1371\/journal.ppat.1009220.<\/p> 35. Lu M, Li XY, Li Z, Du WX, Zhou L, Wang Y, Zhang XJ, Wang ZW*, Gui JF*. Regain of sex determination system and sexual reproduction ability in a synthetic octoploid male fish. Science China-Life Sciences, 2021, 64(1): 77-87. https:\/\/doi.org\/10.1007\/s11427-020-1694-7.<\/p> 36. Chen F, Li XY, Zhou L, Yu P, Wang ZW, Li Z, Zhang XJ, Wang Y*, Gui JF*. Stable Genome Incorporation of Sperm-derived DNA Fragments in Gynogenetic Clone of Gibel Carp. Marine Biotechnology, 2020, 22: 54-66. https:\/\/xs.scihub.ltd\/https:\/\/doi.org\/10.1007\/s10126-019-09930-w.<\/p> 37. Lu WJ, Gao FX, Wang Y, Zhang QY, Li Z, Zhang XJ, Zhou L*, Gui JF*. Differential expression of innate and adaptive immune genes in the survivors of three gibel carp gynogenetic clones after herpesvirus challenge. BMC Genomics, 2019, 20: 432. https:\/\/doi.org\/10.1186\/s12864-019-5777-z.<\/p> 38. Li XY, Gui JF*. Diverse and variable sex determination mechanisms in vertebrates. Science China-Life Sciences, 2018, 61(12): 1503-1514. doi: 10.1007\/s11427-018-9415-7.<\/p> 39. Dan C, Lin Q, Gong C, Yang T, Xiong S, Xoing Y, Huang P, Gui JF*, Mei J*. A novel PDZ domain-containing gene is essential for male sex differentiation and maintenance in yellow catfish (Pelteobagrus fulvidraco). Science Bulletin, 2018, 63: 1420-1430. https:\/\/doi.org\/10.1016\/j.scib.2018.08.012<\/p> 40. He WX, Wu M, Liu Z, Li Z, Wang Y, Zhou J, Yu P, Zhang XJ, Zhou L*, Gui JF*. Oocyte-specific maternal Slbp2 is required for replication-dependent histone storage and early nuclear cleavage in zebrafish oogenesis and embryogenesis. RNA, 2018, 24: 1738-1748. doi: 10.1261\/rna.067090.118<\/p> 41. Zhu YJ, Li XY, Zhang J, Li Z, Ding M, Zhang XJ, Zhou L, Gui JF*. Distinct sperm nucleus behaviors between genotypic and temperature-dependent sex determination males are associated with replication and expression-related pathways in a gynogenetic fish. BMC Genomics, 2018. 19: 437-1-15. DOI: 10.1186\/s12864-018-4823-6<\/p> 42. Li XY, Liu XL, Zhu YJ, Zhang J, Ding M, Wang MT, Wang ZW, Li Z, Zhang XJ, Zhou L, Gui JF*. Origin and transition of sex determination mechanisms in a gynogenetic hexaploid fish. Heredity (Edinb), 2018, 121: 64-74. doi: 10.1038\/s41437-017-0049-7<\/p> 43. Shao GM, Li XY, Wang Y, Wang ZW, Li Z, Zhang XJ, Zhou L*, Gui JF*. Whole genome incorporation and epigenetic stability in a newly synthetic allopolyploid of gynogenetic gibel carp. Genome Biology and Evolution, 2018, 10(9): 2394-2407. doi: 10.1093\/gbe\/evy 165.<\/p> 44. Gui JF, Tang QS, Li ZJ, Liu JS, De Silver SS. Aquaculture in China: Success Stories and Modern Trends. Oxford: 2018 John Wiley & Sons Ltd. pp1-677. doi: 10.1002\/9781119120759.<\/p> 45. Liu XL, Li XY, Jiang FF, Wang ZW, Li Z, Zhang XJ, Zhou L, Gui JF*. Numerous mitochondrial DNA haplotypes reveal multiple independent polyploidy origins of hexaploids in Carassius species complex. Ecol Evol, 2017, 7(24): 10604-10615. https:\/\/doi.org\/10.1002\/ece3.3462<\/p> 46. Lin QH, Mei J*, Li Z, Zhang XM, Zhou L, Gui JF*. Distinct and cooperative roles of amh and dmrt1 in self-renewal and differentiation of male germ cells in zebrafish. Genetics, 2017, 207(3):1007-1022. https:\/\/doi:10.1534\/genetics.117.300274<\/p> 47. Gao FX, Wang Y, Zhang QY, Mou CY, Li Z, Deng YS, Zhou L*, Gui JF*. Distinct herpesvirus resistances and immune responses of three gynogenetic clones of gibel carp revealed by comprehensive transcriptomes. BMC Genomics, 2017, 18: 561. https:\/\/doi.org\/10.1186\/s12864-017-3945-6.<\/p> 48. Liu XL, Jiang FF, Wang ZW, Li XY, Li Z, Zhang XJ, Chen F, Mao JF, Zhou L, Gui JF*. Wider geographic distribution and higher diversity of hexaploids than tetraploids in Carassius species complex reveal recurrent polyploidy effects on adaptive evolution. Scientific Reports, 2017, 7: 5395. DOI:10.1038\/s41598-017-05731-0<\/p> 49. Zhou L, Gui JF*. Natural and artificial polyploids in aquaculture. Aquaculture and Fisheries, 2017, 2(3): 103-111. https:\/\/doi.org\/10.1016\/j.aaf.2017.04.003<\/p> 50. Li XY, Liu XL, Ding M, Li Z, Zhou L, Zhang XJ, Gui JF*. A novel male-specific SET domain-containing gene setdm identified from extra microchromosomes of gibel carp males. Science Bulletin, 2017, 62(8): 528-536. https:\/\/doi.org\/10.1016\/j.scib.2017.04.002<\/p> 51. Yang YJ, Wang Y, Li Z, Zhou L*, Gui JF*. Sequential, divergent, and cooperative requirements of foxl2a and foxl2b in ovary development and maintenance of zebrafish. Genetics, 2017, 205(4):1551-1572. doi: 10.1534\/genetics.116.199133.<\/p> 52. Xiong ST, Wu J, Jing J, Huang P, Li Z, Mei J*, Gui JF*. Loss of stat3 function leads to spine malformation and immune disorder in zebrafish. Science Bulletin, 2017, 62(3): 185-196.<\/p> 53. Feng H, Zhang QM, Zhang YB*, Li Z, Zhang J, Xiong YW, Wu M, Gui JF. Zebrafish IRF1, IRF3, and IRF7 differentially regulate IFNΦ1 and IFNΦ3 expression through assembly of homo- or heteroprotein complexes. J Immunol. 2016, 197(5):1893-904. doi: 10.4049\/jimmunol.1600159.<\/p> 54. Li XY, Zhang QY, Zhang J, Zhou L, Li Z, Zhang XJ, Wang D, Gui JF*. Extra microchromosomes play male determination role in polyploid gibel carp. Genetics, 2016, 203: 1415-1424. DOI: 10.1534\/genetics.115.185843<\/p> 55. Liu W, Li SZ, Li Z, Wang Y, Li XY, Zhong JX, Zhang XJ, Zhang J, Zhou L, Gui JF*. Complete depletion of primordial germ cells in an all-female fish leads to sex-biased gene expression alteration and sterile all-male occurrence. BMC Genomics 2015, 16: 971. doi: 10.1186\/s12864-015-2130-z.<\/p> 56. Pan ZJ, Li XY, Zhou FJ, Qiang XG, Gui JF*. Identification of sex-specific markers reveals male heterogametic sex determination in Pseudobagrus ussuriensis. Mar Biotechnol (NY). 2015, 17(4): 441-451.<\/p> 57. Zhang J, Sun M, Zhou L, Li Z, Liu Z, Li XY, Liu XL, Liu W, Gui JF*. Meiosis completion and various sperm responses lead to unisexual and sexual reproduction modes in one clone of polyploid Carassius gibelio. Sci Rep, 2015, 5:10898. doi: 10.1038\/srep10898.<\/p> 58. Mei J, Gui JF*. Genetic basis and biotechnological manipulation of sexual dimorphism and sex determination in fish. Science China-Life Sciences, 2015, 58(2): 124-136, doi: 10.1007\/s11427-014-4797-9. 中文版:梅洁, 桂建芳*. 鱼类性别异形和性别决定的遗传基础及其生物技术操控. 中国科学 生命科学, 2014, 44(12): 1198-1212.<\/p> 59. Li XY, Zhang XJ, Li Z, Hong W, Liu W, Zhang J, Gui JF*. Evolutionary history of two divergent Dmrt1 genes reveals two rounds of polyploidy origins in gibel carp. Molecular Phylogenetics and Evolution. 78(2014): 96-104. doi: 10.1016\/j.ympev.2014.05.005<\/p> 60. Dan C, Mei J*, Wang D, Gui JF*. Genetic differentiation and efficient sex-specific marker development of a pair of Y- and X-linked markers in yellow catfish. Int J Biol Sci, 2013, 9(10):1043-1049. doi:10.7150\/ijbs.7203.<\/p> 61. Yue HM, Li Z, Wu N, Liu Z, Wang Y, Gui JF*. Oocyte-specific H2A variant H2af1o is required for cell synchrony before mid-blastula transition in early zebrafish embryos. Biology of Reproduction, 2013, 89(4): 82, 1-13. doi: http:\/\/www.biolreprod.org\/cgi\/content\/abstract\/biolreprod.113.108043<\/p> 62. Jiang FF, Wang ZW, Zhou L, Jiang L, Zhang XJ, Apalikova OV, Brykov VA, Gui JF*. High male incidence and evolutionary implications of triploid form in northeast Asia Carassius auratus complex. Molecular Phylogenetics and Evolution, 2013, 66(1): 350-359.<\/p> 63. Zhang YB, Gui JF*. Molecular regulation of interferon antiviral response in fish (review). Developmental and Comparative Immunology, 2012, 38: 193-202.<\/p> 64. Gui JF*, Zhu ZY. Molecular basis and genetic improvement of economically important traits in aquaculture animals (review). Chin. Sci. Bull., 57(2012): 1751-1760.中文版:桂建芳*, 朱作言。水产动物重要经济性状的分子基础及其遗传改良。科学通报,57(2012):1719-1729.<\/p> 65. Gao EB, Gui JF, Zhang QY*. A novel cyanophage with cyanobacterial non-bleaching protein A gene in the genome. Journal of Virology, 2012, 86 (1): 236-245. <\/p> 66. Wang X, Zhang Y, Yang XO, Nurieva RI, Chang SH, Ojeda SS, Kang HS, Schluns KS, Gui JF, Jetten AM, Dong C*. Transcription of Il17 and Il17f is controlled by conserved noncoding sequence 2. Immunity, 36(2012): 23-31.<\/p> 67. Sun F, Zhang YB*, Liu TK, Shi J, Wang B, Gui JF*. Fish MITA activation serves as a mediator for distinct fish IFN gene activation dependent on IRF3 or IRF7. Journal of Immunology, 2011, 187(5): 2531-2539.<\/p> 68. 60. Liu TK, Zhang YB*, Liu Y, Sun F, Gui JF*. Cooperative roles of fish protein kinase containing z-DNA binding domains and double-stranded RNA-dependent protein kinase in interferon-mediated antiviral response. Journal of Virology, 2011, 85(23): 12769-12780.<\/p> 69. Wang ZW, Zhu HP, Wang D, Jiang FF, Guo W, Zhou L, Gui JF*. A novel nucleo-cytoplasmic hybrid clone formed via androgenesis in polyploid gibel carp. BMC Res Notes, 2011, 4: 82: 1-13.<\/p> 70. Gui JF, Zhou L. Genetic basis and breeding application of clonal diversity and dual reproduction modes in polyploid Carassius auratus gibelio (review). Science China-Life Sciences, 2010,53(4): 409-415. 中文版:桂建芳*, 周莉,多倍体银鲫克隆多样性和双重生殖方式的遗传基础和育种应用。中国科学生命科学,2010,42(2):97-103。<\/p> 71. Zhou L, Gui JF*. Molecular mechanisms underlying sex change in hermaphroditic groupers (review). Fish Physiology and Biochemistry, 2010, 36: 181-193.<\/p> 72. Sun F, Zhang YB*, Liu TK, Gan L, Yu FF, Liu Y, Gui JF*. Characterization of fish IRF3 as an IFN-inducible protein reveals evolving regulation of IFN response in vertebrates. Journal of Immunology, 2010, 185: 7573-7582.<\/p> 73. Jin JY, Zhou L, Wang Y, Li Z, Zhao JG, Zhang QY, Gui JF*. Antibacterial and antiviral roles of a fish β-defensin expressed both in pituitary and testis. PLoS ONE, 2010, 5(12): e12883: 1-14.<\/p> 74. Yu FF, Zhang YB*, Liu TK, Liu Y, Sun F, Jiang J, Gui JF*. Fish virus-induced interferon exerts antiviral function through Stat1 pathway. Molecular Immunology, 2010, 47(14): 2330-2341.<\/p> 75. Wang D, Mao HL, Chen HX, Liu HQ, Gui JF*. Isolation of Y- and X-linked SCAR markers in yellow catfish and application in the production of all-male populations. Animal Genetics, 2009, 40(6): 978-981.<\/p> 76. Peng JX, Xie JL, Zhou L, Hong YH, Gui JF*. Evolutionary conservation of Dazl genomic organization and its continuous and dynamic distribution throughout germline development in gynogenetic gibel carp. J. Exp. Zool. Part B, 2009, 312B(8): 855-871.<\/p> 77. Wu N, Yue HM, Chen B, Gui JF*. Histone H2A has a novel variant in fish oocytes. Biology of Reproduction, 2009, 81: 275-283. <\/p> 78. Huang W, Zhou L, Li Z, Gui JF*. Expression pattern, cellular localization and promoter activity analysis of ovarian aromatase (Cyp19a1a) in protogynous hermaphrodite red-spotted grouper. Molecular and Cellular Endocrinology, 2009, 307: 224-236.<\/p> 79. Zhao JG, Zhou L, Jin JY, Zhao Z, Lan J, Zhang YB, Zhang QY, Gui JF*. Antimicrobial activity-specific to Gram-negative bacteria and immune modulation-mediated-NF-κB and Sp1 of a medaka β-defensin. Developmental and Comparative Immunology, 2009, 33: 624-637.<\/p> 80. Zhu R, Zhang YB, Zhang QY, Gui JF*. Functional domains and the antiviral effect of the dsRNA-dependent protein kinase PKR from Paralichthys olivaceu. Journal of Virology, 82(2008): 6889-6901.<\/p> 81. Mei J, Zhang QY, Li Z, Lin S, Gui JF*. C1q-like inhibits p53-mediated apoptosis and controls normal hematopoiesis during zebrafish embryogenesis. Developmental Biology, 2008, 319: 273-284.<\/p> 82. Zhang YB, Jiang J, Chen YD, Zhu R, Shi Y, Zhang QY, Gui JF*. The Innate Immune Response to Grass Carp Haemorrhagic Virus (GCHV) in Cultured Carassius auratus Blastulae (CAB) Cells. Developmental and Comparative Immunology, 31(2007): 232-243.<\/p> 83. Xia W, Zhou L, Yao B, Li CJ, Gui JF. Differential and spermatogenic cell-specific expression of DMRT1 during sex reversal in protogynous hermaphroditic groupers. Molecular and Cellular Endocrinology, 2007, 263: 156-172.<\/p> 84. Zhu HP, Ma DM, Gui JF. Triploid origin of the gibel carp as revealed by 5S rDNA localization and chromosome painting. Chromosome Research, 2006, 14: 767-776.<\/p> 85. Li CJ, Zhou L, Wang Y, Hong YH, Gui JF*. Molecular and expression characterization of three gonadotropin subunits commonα, FSHβ and LHβ in groupers. Molecule and Cellular Endocrinology, 2005, 233: 33-46.<\/p> 86. Xu HY, Gui JF, Hong YH*. Differential expression of vasa RNA and protein during spermatogenesis and oogenesis in the gibel carp (Carassius auratus gibelio), a bisexually and gynogenetically reproducing vertebrate. Developmental Dynamics, 2005, 233: 872-882.<\/p> 87. Wang Y, Zhou L, Yao B, Li CJ, Gui JF*. Differential expression of thyroid-stimulating hormone β subunit in gonads during sex reversal of orange-spotted and red-spotted groupers. Molecule and Cellular Endocrinology, 2004, 220: 77-88.<\/p> 88. Dong CH, Yang ST, Yang ZA, Zhang L, Gui JF. A C-type lectin associated and translocated with cortical granules during oocyte maturation and egg fertilization in fish. Developmental Biology, 2004, 265(2): 341-354.<\/p> 89. Yang L, Gui JF*. Positive selection on multiple antique allelic lineages of transferrin in the polyploid Carassius auratus. Molecular Biology and Evolution, 2004, 21(7): 1264-1277.<\/p> 90. Zhang QY*, Xiao F, Xie J, Li ZQ, Gui JF. Complete genome sequence of lymphocystis disease virus (LCDV-C) isolated from China. Journal of Virology, 2004, 78(13): 6982-6994.<\/p> 91. Hu CY, Zhang YB, Huang GP, Zhang QY, Gui JF*. Molecular cloning and characterisation of a fish PKR-like gene from the cultured CAB cells induced by UV-inactivated virus. Fish and Shellfish Immunology, 2004, 17(4): 353-366.<\/p> 92. Hong YH*, Chen SL, Gui JF, Schartl M. Retention of the developmental pluripotency in medaka embryonic stem cells after gene transfer and long-term drug selection for gene targeting in fish. Transgenic Research, 2004, 13: 41-50.<\/p> 93. Hong YH*, Liu TM, Zhao HB, Xu HY, Wang WJ, Liu R, Chen SL, Deng JR, Gui JF. Establishment of a normal medaka fish spermatogonial cell line capable of sperm production in vitro. Proc. Natl. Acad. Sci. USA, 2004, 101(21): 8011-8016.<\/p> 94. Yi MS, Li YQ, Liu JD, Zhou L, Yu QX, Gui JF*. Molecular cytogenetic detection of paternal chromosome fragments in allogynogenetic gibel carp, Carassius auratus gibelio Bloch. Chromosome Research, 2003, (7):665-671.<\/p> 95. Zhou L, Gui JF*. Karyotypic diversity in polyploid gibel carp, Carassius auratus gibelio Bloch. Genetica, 2002, 115(2): 223-232.<\/p> 96. Zhou L, Wang Y, Gui JF*. Genetic evidence for gonochoristic reproduction in gynogenetic silver crucian carp (Carassius auratus gibelio Bloch) as revealed by RAPD assays. J. Mol. Evol. 51(2000): 498-506.<\/p> 97. Gui JF, Tronchere H, Chandler SD, Fu XD*. Purification and characterization of a kinase specific for the serine-and arginine-rich pre-mRNA splicing factors. Proc. Natl. Acad. Sci. USA, 1994, 91: 10824-10828.<\/p> 98. Gui JF, Lane WS, Fu XD*. A serine kinase regulates intracellular localization of splicing factors in the cell cycle. Nature, 1994, 369: 678-682.<\/p> 99. Gui JF, Liang SC, Zhu LF, Jiang YG*. Discovery of multiple tetraploids in artificially propagated populations of allogynogenetic silver crucian carp and their breeding potentialities. Chinese Science Bulletin, 38(4)(1993): 327-331. 中文版:桂建芳、梁绍昌、朱蓝菲、蒋一王圭,异育银鲫人工繁育群体中复合四倍体的发现及其育种潜力. 科学通报, 1992, 37(7):646-648.<\/p> 100. Gui JF, Jia J, Liang SC, Jiang YG*. Meiotic chromosome behaviour in male triploid transparent coloured crucian carp, Carassius auratus L. J.Fish Biol., 1992, 41: 317-326.<\/p> 以下内容与「星空体育彩票app下载」同属公开资讯,可按栏目接着查阅相关条目。 本站按公开材料组织页面。需要原文时请核对应栏目发布页。 若从搜索引擎进入,可先确认当前栏目名称,再按需打开相关阅读。
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