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中国科学院遗传与发育生物学研究所导师教师师资介绍简介-杨维才
本站小编 Free考研考试/2020-05-26
杨维才
职称:研究员
职务:遗传与发育生物学研究所所长
联系电话:86-
传真:86-
附件:
E-mail:
实验室主页:http://weicailab.genetics.ac.cn/
研究方向:植物生殖发育的分子遗传学
杨维才 博士、研究员、博士生导师、中国科学院大学岗位教授
研究领域:
植物生殖发育的调控机制和进化机制:利用分子遗传学、细胞生物学、基因组学等多学科手段,解析开花植物精子传递、雌-雄配子互作、双受精和胚胎发生的分子机制,了解植物生殖发育机制的进化规律。
豆科植物共生固氮机制及其生物技术改良:利用分子遗传学和蛋白组学等手段,解析豆科植物共生固氮微环境构建和维持的分子机制,探索实现非豆科植物固氮的途径。
学习经历:
1984年
兰州大学
学士学位
1987年
兰州大学
硕士学位
1994年
荷兰瓦赫宁根大学
博士学位
工作经历:
1987-1990年
兰州大学
助教
1994-1995年
荷兰瓦赫宁根大学
博士后
1996年
美国纽约冷泉港实验室(CSHL)
博士后
1996-2000年
新加坡分子农业研究所(IMA)
博士后
2000-2003年
新加坡淡马锡生命科学研究所(TLL)
资深科学家/实验室主任
2003-至 今
中国科学院遗传与发育生物学研究所
研究员、所长助理、副所长、所长
获奖及荣誉:
2003年
获中国科学院“****”择优支持
2004年
获国家自然科学基金委“国家****基金”资助
2007年
获中国科学院“优秀研究生指导教师“奖;获准享受政府特殊津贴;人事部“新世纪百千****才工程国家级人才人选”
2008年
获中国科学院“宝洁优秀研究生导师”奖
2008年
获International Association of Sexual Plant Reproduction Research, Outstanding Service Award
2013年
国家自然科学奖(二等),”被子植物有性生殖的分子机理研究
2016年
获“全国优秀科技工作者”(中国科协);入选“科学中国人(2015)年度人物”;获中国科学院优秀教师奖
2018年
获中国科学院优秀教师奖
学术服务:
1
Multinational Arabidopsis Steering Committee中国区代表(2006-2016)
2
International Association of Sexual Plant Reproduction Research (IASPRR), Board member (2004-2006)
3
中国遗传学会常务理事 (2008-2018年)、副理事长/兼秘书长(2019-2024年)
4
中国细胞生物学会理事 (2007-2011年)
5
《植物学报》副主编 (2008-2014年)
6
Journal of Integrative Plant Biology副主编 (2008-2016年)
7
Journal of Genetics and Genomics 副主编 (2010年-)
8
Journal of Plant Biology编委 (2012-2016年)
9
Plant Signaling and Behavior编委 (2008-2016年)
10
Cell Research编委 (2006-2010年)
11
Molecular Plant编委 (2007年- )
12
Sexual Plant Reproduction编委 (2011-2012年)
13
Plant Reproduction编委 (2013年-)
14
Scientific Reports编委 (2011年-)
15
Science in China: Life Science编委 (2008年-)
16
aBiotech编委(2019年-)
发表论文::
1. Jun Tang, J., Jia, P., Xin, P., Chu, J., Shi, D.*, and Yang, W.* (2020). AtTRM61/AtTRM6 complex is a bona fide tRNA N1-methyladenosine methyltransferase in Arabidopsis. Journal of Experimental Botany eraa100. doi: 10.1093/jxb/eraa100.
2. Meng, J. G., Liang, L., Jia, P.F., Wang, Y.C., Li, H.J.*, and Yang, W.C.* (2020). Integration of ovular signals and exocytosis of a Ca2+ channel by MLOs in pollen tube guidance. Nature Plants6: 143–153.
3. Zhang, M.X., Zhu, S.S., Xu, Y.C., Guo, Y.L., Yang, W.C., and Li, H.J. (2020). Transcriptional repression specifies the central cell for double fertilization. PNAS doi/10.1073/pnas.
4. Zhao, P., Wang, F., Li, N., Shi, D.Q., and Yang, W.C. (2020). Pentatricopeptide repeat protein MID1 modulates nad2 intron 1 splicing and Arabidopsis development. Scientific Reports DOI: 10.1038/s41598-020-58495-5.
5. Wu, H.M., Xie, D.J., Tang, Z.S., Shi, D.Q., and Yang, W.C. (2020). PINOID regulates floral organ development by modulating auxin transport and interacts with MADS16 in rice. Plant Biotechnology Journal DOI: 10.1111/pbi.13340.
6. Shi, C., Luo, P., Du, Y.T., Chen, H., Huang, X., Cheng, T.H., Luo, A., Li, H.J., Yang, W.C., Zhao, P., and Sun, M.X. (2019). Maternal control of suspensor programmed cell death via gibberellin signaling. Nature Communications 10: 3484.
7. Long, Y., Xie, D., Zhao, Y., Shi, D.*, and Yang, W.C.* (2019). BICELLULAR POLLEN 1 is a modulator of DNA replication and pollen development in Arabidopsis. New Phytologist. 222: 588–603
8. Meng, J.G., Zhang, M.X., Yang, W.C.*, and Li, H.J.* (2019). TICKET attracts pollen tubes and mediates reproductive isolation between relative species in Brassicaceae. SCIENCE CHINA Life Sciences 62:1413-1419
9. Li, Y., Li., H.J., Morgan, C., Bomblies, K., Yang, W., and Qi, B. (2019). Both male and female gametogenesis require a fully functional protein S-acyl transferase 21 in Arabidopsis thaliana. Plant Journal 100:754-767.
10. Jia, P.F., Xue, Y., Li, H.J., and Yang, W.C. (2019). LOT regulates TGN biogenesis and Golgi structure in plants. Plant Signaling & Behavior 14(3): e**.
11. Jia, P.F., Xue, Y., Li, H.J., and Yang, W.C. (2018). Golgi-localized LOT regulates trans-Golgi network biogenesis and pollen tube growth. PNAS 115: 12307-12312
12. Li, H.J.* and Yang, W.C.* (2018). Ligands switch model for pollen-tube integrity and burst. Trend Plant Sci 23: 369-372.
13. van Velzena, R., Holmer, R., Bua, F., Rutten, L., van Zeijl, A., Liu, W., Santuari, L., Cao, Q., Sharma, T., Shen, D., Roswanjaya, Y., Wardhani, T.A.K., Kalhor, M.S., Jansen, J., van den Hoogen, J., Güngor, B., Hartog, M., Hontelez, J., Verver, J., Yang, W.C., Schijlen, E., Repin, R., Schilthuizen, M., Schranz, M.E., Heidstra, R., Miyata, K., Fedorova, E., Kohlen, W., Bisseling, T., Smit, S., and Geurts, R. (2018). Comparative genomics of the nonlegume Parasponia reveals insights into evolution of nitrogen-fixing rhizobium symbioses. PNAS 115: E4700-E4709.
14. Li, H.J.*, Meng, J.G., and Yang, W.C.* (2018). Multilayered signaling pathways for pollen tube growth and guidance. Plant Reproduction 31, 31-41.
15. Sun, M.X., Yang, W.C., and Higashiyama, T. (2018). Special issue on plant reproduction research in Asia. Plant Reproduction 31:1-2.
16. Higashiyama, T.*, and Yang, W.C.* (2017). Gametophytic pollen tube guidance: Attractant peptides, gametic controls, and receptors. Plant Physiology 173(1):112-121.
17. Jia, P.F., Li, H.J., and Yang, W.C. (2017). Analysis of peroxisome biogenesis in pollen by confocal microscopy and transmission electron microscopy. In Plant Germline Development: Methods and Protocols (Ed. Anja Schmidt), PP. 173-180. Methods in Plant Molecular Biology 1669. Springer protocols.
18. Jia, P.F., Li, H.J., and Yang, W.C. (2017). Transmission electron microscopy (TEM) to study histology of pollen and pollen tubes. In Plant Germline Development: Methods and Protocols (Ed. Anja Schmidt), PP. 181-189. Methods in Plant Molecular Biology 1669. Springer Protocols.
19. Yu, T.Y., Shi, D.Q., Jia, P.F., Tang, J., Li, H.J., Liu, J., and Yang WC. (2016). The Arabidopsis receptor kinase ZAR1 is required for zygote asymmetric division and its daughter cell fate. PLoS Genetics 12(3): e**.
20. Wang,T., Liang, L., Xue, Y., Jia, P.F., Chen, W., Zhang, M.X., Wang, Y.C., Li, H.J.* and Yang, W.C.*(2016). A receptor heteromer mediates the male perception of female attractants in plants. Nature 531: 241-244.
21. Li, H.*, and Yang W.C.* (2016). RLKs orchestrate the signaling in plant male-female interaction. Sci China Life Sci 59: 867-77.
22. Zhou, J.M.*, and Yang, W.C.* (2016) Receptor-like kinases take center stage in plant biology. Sci China Life Sci 59: 863-6.
23. Li,H.J., Zhu, S.S., Zhang, M.X., Wang, T., Liang, L., Xue, Y., Shi, D.Q., and Liu, J., Yang, W.C.* (2015). Arabidopsis CBP1 is a novel regulator of transcription initiation in central cell-mediated pollen tube guidance. PlantCell 27: 2880-2893.
24. Wang, J.Z., Li, H.J., Han, Z.F., Zhang, H.Q., Wang, T., Lin, G.Z., Chang, J.B., Yang, W.C.* and Chai, J.J*.(2015). Allosteric receptor activation by the plant peptide hormone phytosulfokine. Nature525: 265-268.
25. Yan, L.H., Wei, S.W., Wu, Y.R., Hu, R.L., Li, H.J., Yang, W.C., and Xie, Q.(2015). High-efficiency genome editing in Arabidopsis using YAO promoter-driven CRISPR/Cas9 system. Molecular Plant8: 1820-1823.
26. Chen, L.Y., Shi, D.Q., Zhang, W.J., Tang, Z.S., Liu, J., and Yang, W.C. (2015). The Arabidopsis alkaline ceramidase TOD1 is a key turgor pressure regulator in plant cells. Nature Communications 6: 6030.
27. Li, X.R., Li, H.J., Yuan, L., Liu, M., Shi, D.Q., Liu, J., and Yang W.C. (2014). Arabidopsis DAYU/ABERRANT PEROXISOME MORPHOLOGY9 is a key regulator of peroxisome biogenesis and plays critical roles during pollen maturation and germination in planta. Plant Cell 26: 619-635.
28. Liu, P., Qi, M., Wang, Y., Chang, M., Liu, C., Sun, M., Yang, W., and Ren, H. (2014). Arabidopsis RAN1 mediates seed development through its parental ratio by affecting the onset of endosperm cellularization. Molecular Plant 7: 1316–1328.
29. Zhu, Y.N., Shi, D.Q., Ruan, M.B., Zhang, L.L., Meng, Z.H., Liu, J., and Yang, WC. (2013). Transcriptome analysis reveals crosstalk of responsive genes to multiple abiotic stresses in cotton (Gossypium hirsutum L.). PLoS ONE 8: e80218.
30. Cheung, A.Y., Palanivelu, R., Tang, W.H., Xue, H.W., and Yang, W.C. (2013). Pollen and plant reproduction biology: Blooming from east to west. Molecular Plant 6: 995–997.
31. Wang, S.Q., Shi, D.Q., Long, Y.P., Liu, J., and Yang, W.C. (2012) GAMETOPHYTE DEFECTIVE 1, a putative subunit of RNases P/MRP, is essential for female gametogenesis and male competence in Arabidopsis. PLoS One 7: e33595.
32. Li, H.J. and Yang, W.C. (2012). Emerging role of ER quality control in plant cell signal perception. Protein & Cell 3: 10-16.
33. Zhao, Y.T., Wang, M., Fu, S.X., Yang, W.C., Qi, C.K., and Wang, X.J. (2012). Small RNA profiling in two Brassica napus cultivars identifies microRNAs with oil production and developmental correlated expressions and new small RNA classes. Plant Physiology 158: 813-823.
34. Liu, W., Kohlen, W., Lillo, A., Op den Camp, R., Ivanov, S., Hartog, M., Limpens, E., Jamil, M., Smaczniak, C., Kaufmann, K., Yang, W.C., Hooiveld, G.J.E.J., Charnikhova, T., Bouwmeester, H.J., Bisseling, T., and Geurts, R. (2011). Strigolactone biosynthesis in Medicago truncatula and rice requires the symbiotic GRAS-type transcription factors NSP1 and NSP2. Plant Cell 23: 3853-3865.
35. Li H.J., Xue Y., Jia D.J., Wang T., Shi D.Q., Liu J., Cui F., Xie Q., Ye D., and Yang W.C. (2011). POD1 regulates pollen tube guidance in response to micropylar female signalling and acts in early embryo patterning in Arabidopsis. Plant Cell 23: 3288–3302.
36. Shi, D.Q.* and Yang, W.C.* (2011). Ovule development in Arabidopsis: progress and challenge. Curr Opin Plant Biol 14: 74-80.
37. Zhao, P., Shi, D.Q., Yang, W.C. (2011). Patterning the embryo in higher plants: Emerging pathways and challenges. Frontiers in Biology 6: 3-11.
38. Li, H.J., Liu, N.Y., Shi, D.Q., Liu, J., and Yang, W.C. (2010). YAO is a nucleolar WD40-repeat protein critical for embryogenesis and gametogenesis in Arabidopsis. BMC Plant Biology 10:169.
39. Liu, M., Shi, D.Q., Yuan, L., Liu J., and Yang, W.C. (2010). SLOW WALKER3, encoding a putative DEAD-box RNA helicase, is essential for female gametogenesis in Arabidopsis. J Integrat Plant Biol 52: 817-828.
40. Yang, W.C.*, Shi, D.Q., and Chen, Y.H. (2010). Female gametophyte development in flowering plants. Annu Rev Plant Biol 61: 89–108.
41. Deng, Y., Dong, H., Mu, J., Ren, B., Zheng, B., Ji, Z., Yang, W.C., Liang, Y., and Zuo, J. (2010). Arabidopsis histidine kinase CKI1 acts upstream of HISTIDINE PHOSPHOTRANSFER PROTEINS to regulate female gametophyte development and vegetative growth. Plant Cell 22: 1232–1248.
42. Shi, D.Q. and Yang, W.C. (2009). Pollen germination and tube growth. In Plant Developmental Biology – Biotechnological Perspectives (eds. E.C. Pua and M.R. Davey), Springer-Verlag, Heidelberg. Vol. I, pp245-282.
43. Li, N., Yuan, L., Liu, N., Shi, D., Li, X., Tang, Z., Liu, J., Sundaresan, V., and Yang, W.C. (2009). SLOW WALKER2, a NOC1/MAK21 homologue, is essential for coordinated cell cycle progression during female gametophyte development in Arabidopsis. Plant Physiology 151: 1486-1497.
44. Ruan, M.B., Zhao, Y.T., Meng, Z.H., Wang, X.J., and Yang W.C. (2009). Conserved miRNA analysis in Gossypium hirsutum through small RNA sequencing. Genomics 94: 263-268.
45. Liu, M., Yuan, L., Liu, N.Y., Shi, D.Q., Liu, J., and Yang, W.C. (2009). GAMETOPHYTIC FACTOR1, involved in pre-mRNA splicing, is essential for megagametogenesis and embryogenesis in Arabidopsis. J Integrat Plant Biol 51: 261-271.
46. Liu, N.Y., Zhang, Z.F., and Yang, W.C. (2008). Isolation of embryo-specific mutants in Arabidopsis: Plant transformation. In Methods in Molecular Biology: Plant Embryogenesis (ed. M.F. Suarez and P.V. Bozhkov), pp91-100. Humana Press, Totowa, USA.
47. Liu, N.Y., Zhang, Z.F., and Yang, W.C. (2008). Isolation of embryo-specific mutants in Arabidopsis: Genetic and phenotypic analysis. In Methods in Molecular Biology: Plant Embryogenesis (ed. M.F. Suarez and P.V. Bozhkov), pp101-109. Humana Press, Totowa, USA.
48. Pu, L., Li, Q., Fan, X.P., Yang, W.C., and Xue, Y.B. (2008). A R2R3 MYB transcription factor GhMYB109 is required for cotton fiber development. Genetics 180: 811-820.
49. Wang, F., Shi, D.Q., Liu, J., and Yang, W.C. (2008). Novel nuclear protein ALC-INTERACTING PROTEIN1 is expressed in vascular and mesocarp cells in Arabidopsis. J Integrat Plant Biol 50: 918-927.
50. Liu, J., Zhang, Y., Qin, G., Tsuge, T., Sakaguchi, N., Luo, G., Sun, K., Shi, D., Aki, S., Zheng, N., Aoyama, T., Oka, A., Yang, W.C., Umeda, M., Xie, Q., Gu, H., and Qu L.J. (2008). Targeted degradation of the cyclin-dependent kinase inhibitor ICK4/KRP6 by RING-type E3 ligases is essential for mitotic cell cycle progression during Arabidopsis gametogenesis. Plant Cell 20: 1538-1554.
51. Chen, Y.H., and Li, H.J., Shi, D.Q., Yuan, L., Liu, J., Sreenivasan, R., Baskar, R., Grossniklaus, U., and Yang, W.C. (2007). The central cell plays a critical role for pollen tube guidance in Arabidopsis. Plant Cell 19: 3563-3577.
52. Escobar-Restrepo, J.M., Huck, N., Kessler, S., Gagliardini, V., Gheyselinck, J., Yang, W.C., and Grossniklaus, U. (2007). The FERONIA receptor-like kinase mediates male-female interactions during pollen tube reception. Science 317: 656-660.
53. Meng, Z.H., Liang, A.H., and Yang, W.C. (2007). Effects of hygromycin on cotton cultures and its application in Agrobacterium-mediated cotton transformation. In Vitro Cell Dev Biol-Plant 43: 111-118.
54. Song, X.F., Yang, C.Y., Liu, J., and Yang, W.C. (2006). RPA, a Class II ARFGAP protein, activates ARF1 and U5 and plays a role in root hair development in Arabidopsis. Plant Physiology 141: 966-976.
55. Ding, Y.H., Liu, N.Y., Tang, Z.S., Liu, J., and Yang, W.C. (2006). Arabidopsis GLUTAMINE-RICH PROTEIN23 is essential for early embryogenesis and encodes a novel nuclear PPR motif protein that interacts with RNA polymerase II subunit III. Plant Cell 18: 815-830.
56. Chen, Y.H., Wu, X.M., Ling, H.Q., and Yang, W.C. (2006). Transgenic expression of DwMYB2 impairs iron transport from root to shoot in Arabidopsis thaliana. Cell Research 16: 830-840.
57. Yang, W.C. (2005). Female gametophyte development, In Handbook of Seed Science and Technology (ed. Basra, A.S.), pp.27-62. The Haworth Press, Inc. New York.
58. Yang, S.L., Jiang, L., Puah, C.S., Xie, L.F., Zhang, X.Q., Chen, L.Q., Yang, W.C., and Ye, D. (2005). Overexpression of TAPETUM ETERMINANT1 alters the cell fates in the Arabidopsis carpel and tapetum via genetic interaction with EXCESS MICROSPOROCYTES1/EXTRA SPOROGENOUS CELLS. Plant Physiology 139: 186-191.
59. Shi, D.Q., Liu, J., Xiang, Y.H., Ye, D., Sundaresan, V., and Yang, W.C. (2005). SLOW WALKER1, essential for gametogenesis in Arabidopsis, encodes a WD40 protein involved in 18S ribosomal RNA biogenesis. Plant Cell 17: 2340-2354.
60. Li, X.B., Fan, X.P., Wang, X.L., Cai, L., and Yang, W.C. (2005). The cotton ACTIN1 gene is functionally expressed in fibers and participates in fiber elongation. Plant Cell 17: 859-875.
61. Jiang, J., Yang, S.L., Xie, L.F., Puah, C.S., Zhang, X.Q., Yang, W.C., Sundaresan, V., and Ye, D. (2005). VANGUARD1 encodes a pectin methylesterase that enhances pollen tube growth in the Arabidopsis style and transmitting tract. Plant Cell 17: 584-596.
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79. Matvieko, M., Van de Sande, Yang, W.C., K., Van Kammen, A., Bisseling, T., and Franssen, H. (1994). Comparison of soybean and pea ENOD40 cDNA clones representing genes expressed during both early and late stages of nodule development. Plant Mol Biol 26: 487-493.
80. Yang, W.C., De Blank, C., Meskiene, I., Hirt, H., Bakker, J., Van Kammen, A., Franssen, H., and Bisseling, T. (1994). Rhizobium nod factors reactivate the cell cycle during infection and nodule primordium formation, but the cycle is only completed in primordium formation. Plant Cell 6: 1415-1426.
81. De Maagd, R.A., Yang, W.C., Goosen-de Roo, L., Mulders, I.H.M., Roest, H.P., Spaink, H.P., Bisseling, T., and Lugtenberg, B.J.J. (1994). Down-regulation of expression of the Rhizobium leguminosarum outer membrane protein gene ropA occurs abruptly in interzone II-III of pea nodules and can be uncoupled from nif gene activation. Mol Plant-Microbe Interact 7: 276-281.
82. Kardailsky, I., Yang, W.C., Zalensky, A., Van Kammen, A., and Bisseling, T. (1993). The pea late nodulin gene PsNOD6 is homologous to the early nodulin genes PsENOD3/14 and is expressed after the leghaemoglobin genes. Plant Mol Biol 23: 1029-1037.
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