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个人简介

马世嵩,教授,博士生导师。2001年毕业于北京大学生命科学学院,获理学学士学位。2007年获美国伊利诺伊大学香槟分校生物学博士学位。后在耶鲁大学(2007 – 2010年)和加州大学戴维斯分校(2010 – 2016年)从事研究工作,任博士后研究员、助理项目科学家等职。2016年加入中国科学技术大学生命科学学院。多年来一直从事植物系统生物学的研究,致力于分析、整合生物大数据以构建基因表达网络,并从中发掘出作用于植物代谢、发育、逆境应答等各种生命过程的基因模块,为这些过程的后续研究提供了崭新思路;同时也开发了植物蛋白芯片技术,以用于高通量的蛋白功能研究。研究成果发表于 PLoS Genetics, Genome Research, Genome Biology, Plant Journal 等期刊上,被 Faculty of 1000 推荐,SCI总引用超过1300次。

研究领域

生物大数据的挖掘与应用、基因网络的构建与应用、作物抗逆及养分高效利用基因模块的发掘与功能研究

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

[01] Ma S*, Ding Z, Li P*. 2017. Maize network analysis revealed gene modules involved in development, nutrients utilization, metabolism, and stress response. BMC Plant Biology 17:131. (*共同通讯作者) [02] Feng B, Ma S, Chen S, Zhu N, Zhang S, Yu B, Yu Y, Le B, Chen X, Dinesh-Kumar SP, Shan L, He P. 2016. PARylation of the forkhead-associated domain protein DAWDLE regulates plant immunity. EMBO Reports 17:1799-1813. [03] Ma S*, Bohnert HJ, Dinesh-Kumar SP*. 2015. AtGGM2014, an Arabidopsis gene co-expression network for functional studies. Science China Life sciences 58: 276-286. (*共同通讯作者) [04] Ma S*, Shah S, Bohnert HJ, Snyder M, Dinesh-Kumar SP*. 2013. Incorporating Motif Analysis into Gene Co-expression Networks Reveals Novel Modular Expression Pattern and New Signaling Pathways. PLOS Genetics 9: e1003840. (*共同通讯作者) [05] Padmanabhan MS, Ma S, Burch-Smith TM, Czymmek K, Huijser P, Dinesh-Kumar SP. 2013. Novel Positive Regulatory Role for the SPL6 Transcription Factor in the N TIR-NB-LRR Receptor-Mediated Plant Innate Immunity. PLOS Pathogens 9: e1003235. [06] Ma S*, Bachan S, Porto M, Bohnert HJ, Snyder M, Dinesh-Kumar SP*. 2012. Discovery of stress responsive DNA regulatory motifs in Arabidopsis. PLOS One 7: e43198. (*共同通讯作者) [07] Lee HY, Bowen CH, Popescu GV, Kang H-G, Kato N, Ma S, Dinesh-Kumar S, Snyder M, Popescu SC. 2011. Arabidopsis RTNLB1 and RTNLB2 Reticulon-Like Proteins Regulate Intracellular Trafficking and Activity of the FLS2 Immune Receptor. Plant Cell 23: 3374-3391. [08] Ma S, Bohnert HJ. 2007. Integration of Arabidopsis thaliana stress-related transcript profiles, promoter structures, and cell-specific expression. Genome Biology 8: R49. [09] Ma S, Gong Q, Bohnert HJ. 2007. An Arabidopsis gene network based on the graphical Gaussian model. Genome Research 17: 1614-1625. [10] Bohnert H, Gong Q, Li P, Ma S. 2006. Unraveling abiotic stress tolerance mechanisms - getting genomics going. Current Opinion in Plant Biology 9: 180-188. [11] Ma S, Gong Q, Bohnert H. 2006. Dissecting salt stress pathways. Journal of Experimental Botany 57: 1097-1107. [12] Gong Q, Li P, Ma S, Rupassara S, Bohnert H. 2005. Salinity stress adaptation competence in the extremophile Thellungiella halophila in comparison with its relative Arabidopsis thaliana. Plant Journal 44: 826-839.

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