施苏华

时间:2023-12-06 03:25:59编辑:小蔡

施苏华的个人简介

施苏华,女,博士,中山大学生命科学学院教授、博士生导师。

研究方向

主要研究方向为进化基因组学和生态基因组学,具体包括:

适应性进化
物种形成
植物基因组进化
趋同进化
系统发育地理

人物经历

教育经历

1978.3-1982.1江西大学生物系,生物学专业,获理学学士学位
1983.9-1986.7中山大学生物系,获植物学硕士学位,导师张宏达
1987.9-1990.12中山大学生物系,获植物学(植物分子系统学方向)博士学位,导师张宏达

工作经历

1982.2-1983.9江西农业大学牧医系,助教
1986.7-1987.9中国科学院华南植物所,实习研究员
1990.12-1992.11中山大学生物系,讲师
1992.11-1995.12中山大学生物系,副教授
1995.12-,中山大学生命科学学院,教授,博士生导师(1998)
1996.3-1997.3美国科罗拉多州立大学生物系,访问教授
2000.4-2000.7韩国岭南大学生物系,访问教授
2000.9-2001.1美国哈佛大学标本馆,访问教授
2003.12-2004.4 美国芝加哥大学生态与演化系,访问教授

讲授课程

本科生课程:
进化生物学
基因与基因组进化(逸仙学院)

研究生课程:
分子系统学

学术成就

长期从事红树植物适应性进化研究,致力于红树植物生态基因组学与物种形成模式研究。近年来集中在基因组水平探索潮间带极端环境下红树植物进化和物种形成的基因组机制。发表SCI论文130余篇,部分论文发表在Nature,Molecular Biology and Evolution,PLoS Genetics,National Science Review,Global Change Biology,Molecular Ecology等期刊上。 2011年获得国家自然科学二等奖,2002年和2008年两次获得教育部自然科学一等奖,1998年获国家杰出青年基金资助,2001年获求是杰出青年学者奖,2010年获得丁颖科技奖,2017年获美国植物学会终身荣誉会员“Corresponding Member”。

论文专著

Huang Y.,S. Shi*. 2002. Phylogenetics of Lythraceae sensu lato: a preliminary analysis based on chloroplast rbc L gene, psa A-ycf 3 spacer, and nuclear rDNA internal transcribed spacer (ITS) sequences. International Journal of Plant Sciences 163(2): 215-225.

Wu C-I.,S. Shi, Y. Zhang. 2004.A case for conservation. Nature 428: 213-214.

Shi S.*, Y. Huang, K. Zeng, F. Ten, H. He, J. Huang, Y. Fu*. 2005. Molecular phylogenetic analysis of mangroves: independent evolutionary origins of vivipary and salt secretion. Molecular Phylogenetics and Evolution 34(1): 159-166.

Lu J., T. Tang, H. Tang, J. Huang,S. Shi*, C-I. Wu*.2006.The accumulation of deleterious mutations in the rice genomes: A hypothesis on the cost of domestication. Trends in Genetics 22: 126-131.

Tang T., J. Lu, J. Huang, J. He, S. R. McCouch, Y. Shen, Z. Kai, M. D. Purugganan,S. Shi*, C-I. Wu*. 2006. Genomic variation in rice: Genesis of highly polymorphic linkage blocks during domestication. PLOS Genetics 2(11): e199.

Zhou R., K.Zeng, W. Wu, X. Chen, Z.Yang,S.Shi*, C-I.Wu. 2007. Population Genetics of Speciation in Nonmodel Organisms: I. Ancestral polymorphism in Mangroves.Molecular Biology and Evolution 24: 2746-2754.

Zhou R., S. Ling, W. Zhao, N.Osada, S. Chen, M. Zhang, Z. He, H. Bao, C. Zhong, B. Zhang, X. Lu, D.Turissini, N.C. Duke, J. Lu,S. Shi*, C-I. Wu*. 2011. Population genetics in non-model organisms: II. Natural selection in marginal habitats revealed by deep sequencing on dual platforms. Molecular Biology and Evolution 28: 2833-2842.

He Z., W. Zhai, H. Wen, T. Tang, Y. Wang, X. Lu, AJ. Greenberg, RR. Hudson, C-I. Wu*,S. Shi*. 2011. Two evolutionary histories in the genome of rice: the roles of domestication genes. PLOS Genetics 7: e1002100.

Guo Z., Y. Huang, Y. Chen, N. C. Duke, C. Zhong.,S. Shi*. 2016.Genetic discontinuities in a dominant mangroveRhizophora apiculata(Rhizophoraceae) in the Indo-Malesian region. Journal of Biogeography 43: 1856u20131868.

XuS., Z. He, Z. Guo, Z. Zhang, J. G. Wyckoff, A. Greenberg, C-I. Wu,S. Shi*. 2017. Genome-wide convergence during evolution of mangroves from woody plants. Molecular Biology and Evolution 34: 1008-1015.

YangM., Z. He,S. Shi*, C-I. Wu *. 2017. Can genomic data alone tell us whether speciation happened with gene flow? Molecular Ecology 26(11): 2845-2849.

YangM., Z. He, Y. Huang, L. Lu, Y. Yan, L. Hong, H. Shen, Y. Liu, Q. Guo, L. Jiang, Y. Zhang, A. J. Greenberg, R. Zhou, X. Ge, C-I. Wu,S. Shi*. 2017.The emergence of the hyper-invasive vine,Mikania micrantha(Asteraceae), via admixture and founder events inferred from population transcriptomics. Molecular Ecology 26(13): 3405-3423.

Xu S., Z. He, Z. Zhang, Z. Guo, W. Guo, H. Lyu, J. Li, M. Yang, Z. Du, Y. Huang, R. Zhou, C. Zhong, D. E. Boufford, M. Lerdau, C-I. Wu, N. C. Duke, The International Mangrove Consortium,S. Shi*. 2017. The origin, diversification and adaptation of a major mangrove clade (Rhizophoreae) revealed by whole genome sequencing.National Science Review4(5): 721-734.

GuoZ., X. Li, Z. He, Y. Yang, W. Wang, C. Zhong, A. Greenberg, C-I. Wu, N. C. Duke,S. Shi*. 2018. Extremely low genetic diversity across mangrove taxa reflects past sea level changes and hints at poor future responses.Global Change Biology,24:1741u20131748.

LyuH., Z. He, C-I. Wu,S. Shi*. 2018. Convergent adaptive evolution in marginal environments: unloading transposable elements as a common strategy among mangrove genomes, New Phytologists,217: 428u2013438.

He Z., X. Li, M. Yang, X. Wang, C. Zhong, N.C. Duke, C-I. Wu*,S. Shi*. 2019. Speciation with gene flow via cycles of isolation and migration: Insights from multiple mangrove taxa. National Science Review 10.1093/nsr/nwy078.

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