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中国科学院大学研究生导师简介-黄善金

中国科学院大学 免费考研网/2016-05-09

基本信息
黄善金 男 汉族 博导 植物研究所
电子邮件:sjhuang@ibcas.ac.cn
联系电话:**
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通信地址:北京市海淀区香山南辛村20号中科院植物所信号中心
邮政编码:100093


研究领域 花粉管在花柱中快速生长最后成功地把两个不能运动的精细胞送到胚囊中以完成高等植物的双受精过程。研究表明微丝细胞骨架对花粉管的生长行使非常重要的调节作用。各种药理学处理以及遗传学操作干扰微丝的排布方式和动态组装特性就会抑制花粉管的极性生长,但是微丝细胞骨架如何调节花粉管生长的机理还不是特别清楚。微丝细胞骨架的特定空间排列方式及高度动态的组装特性有赖于各种微丝细胞骨架相关蛋白的作用,我们实验室期望通过对各种微丝细胞骨架相关蛋白的功能解析以理解微丝细胞骨架调节花粉管极性生长的分子机理。
招生信息

招生专业071008-发育生物学


招生方向植物细胞骨架及细胞周期调控

教育背景

学历博士
学位1996年 浙江农业大学获学士学位
2001年 中国农业大学获博士学位



出国学习工作2001-2006年 美国普渡大学生物系做博士后
工作经历

工作简历2006年入选中国科学院“百人计划”
现任中科院植物所信号中心研究员


社会兼职
教授课程
专利与奖励

奖励信息

专利成果
出版信息

发表论文1、Weibing Yang, Sulin Ren, Xiaoming Zhang, Mingjun Gao, Shenghai Ye, Yongbin Qi, Yiyan Zheng, Juan Wang, Longjun Zeng, Qun Li, Shanjin Huang and Zuhua He BENT UPPERMOST INTERNODE1 Encodes the Class II Formin FH5 Crucial for Actin Organization and Rice Development. Plant Cell. 2011
2、Zhu Y, Wang Y, Li R, Song X, Wang Q, Huang S, Jin J, Liu C and Lin J. Analysis of interactions among the CLAVATA3 receptors reveals a direct interaction between CLAVATA2 and CORY in Arabidopsis. Plant J. 2010,61:223-233
3、Wang J, Wang H, Zhao P, Han L, Jiao G, Zheng Y, Huang S, Xia G. Overexpression of a profilin (GhPFN2) promotes the progression of developmental phases in cotton fibers. Plant Cell Physiol.. 2010,51(8):1276-1290
4、Khurana P, Henty JL, Huang S, Staiger AM, Blanchoin L and Staiger CJ. Arabidopsis VILLIN1 and VILLIN3 have overlapping and distinct activities in actin bundle formation and turnover. Plant Cell. 2010, 22:2727-2748
5、Zhang H, Qu X, Bao C, Khurana P, Wang Q, Xie Y, Zheng Y, Chen N, Blanchoin L, Staiger C.J and Huang S*. Arabidopsis VILLIN5, an actin filament bundling and severing protein, is required for normal pollen tube growth. Plant Cell. 2010, 22: 2749-2767
6、Wu Y, Yan J, Zhang R, Qu X, Ren S, Chen N and Huang S Arabidopsis FIMBRIN5, an actin bundling factor, is required for pollen germination and pollen tube growth. Plant Cell. 2010
7、Chen N, Qu X, Wu Y and Huang S. Regulation of actin dynamics in pollen tubes: control of actin polymer level. J Integr Plant Biol. 2009,51(8):740–750
8、Ye J, Zheng Y, Yan A, Chen N, Wang Z, Huang S* and Yang Z*. Arabidopsis formin3 directs the formation of actin cables and polarized growth in pollen tubes. Plant Cell. 2009,21:3868–3884 . (*co-corresponding authors)
9、Zhang C, Mallery EL, Schlueter J, Huang S, Fan Y, Brankle S, Staiger CJ, Szymanski DB. Arabidopsis SCARs function interchangeably to meet actin-related protein 2/3 activation thresholds during morphogenesis. Plant Cell. 2008,20(4):995-1011
10、Yang G, Gao P, Zhang H, Huang S, Zheng ZL. A mutation in MRH2 kinesin enhances the root hair tip growth defect caused by constitutively activated ROP2 small GTPase in Arabidopsis. PLoS ONE. 2007,2(10):e1074. doi:10.1371/journal.pone.**
11、Abu-Abied M, Golomb L, Belausov E, Huang S, Geiger B, Kam Z, Staiger CJ and Sadot E. Identification of plant cytoskeleton-interacting proteins by screening for actin stress fiber association in mammalian fibroblasts. Plant J. 2006,48(3):367-379
12、Thomas SG*, Huang S*, Li S, Staiger CJ, Franklin-Tong VE. Actin depolymerization is sufficient to induce programmed cell death in self-incompatible pollen. J Cell Biol. 2006,174(2):221-229 . (*joint first authors) 13、Huang S, Gao L, Blanchoin L and Staiger CJ. Heterodimeric capping protein from Arabidopsis is regulated by phosphatidic acid. Mol Biol Cell. 2006,17(4):1946-1958
14、Michelot A, Derivery E, Paterski-Boujemaa R, Guerin C, Huang S, Parcy F, Staiger CJ and Blanchoin L. A novel mechanism for the formation of actin-filament bundles by a nonprocessive formin. Curr Biol. 2006,16(19):1924-1930
15、Xu C*, Huang S* and Yuan M. Dimethyl sulfoxide is feasible for plant tubulin assembly in vitro: A comprehensive analysis. J Integr Plant Biol. 2005,47(4):457-466 . (*joint first authors)
16、Basu D, Le J, El-Essal Sel-D, Huang S, Zhang C, Mallery EL, Koliantz G, Staiger CJ and Szymanski DB. DISTORTED3/SCAR2 is aputative arabidopsis WAVE complex subunit that activates Arp2/3 complex and is required for epidermal morphogenesis. Plant Cell. 2005,17:502-524
17、Michelot A*, Guerin C*, Huang S*, Ingouff M, Richard S, Rodiuc N, Staiger CJ and Blanchoin L. The formin homology 1 domain modulates the nucleation and bundling activity of Arabidopsis FORMIN1. Plant Cell. 2005,17(8):2296-2313 . (*joint first authors)
18、Huang S, Robinson RC, Gao LY, Matsumoto T, Brunet A, Blanchoin Land Staiger CJ. Arabidopsis VILLIN1 generates actin filament cables that are resistant to depolymerization. Plant Cell. 2005,17(2):486-501
19、Huang S, Blanchoin L, Chaudhry L, Franklin-Tong VE and Staiger CJ. A gelsolin-like protein from Papaver rhoeas pollen stimulates calcium-regulated actin severing and depolymerization. J Biol Chem. 2004,279(22):23364-23375 . (cover story)
20、Huang S, Blanchoin L, Kovar DR and C.J. Staiger. Arabidopsis capping protein (AtCP) is a heterodimer that regulates assembly at the barbed ends of actin filaments. J Biol Chem. 2003,278(45):44832-44842
21、Huang S and M Yuan. Plant microtubule dynamics and its regulation. Progress in Plant Science. 2002,4:113-122
22、Huang S, Ren H and Yuan M. In vitro assembly of plant tubulin in the absence of microtubule-stabilizing reagents.. Chinese Sci Bull. 2000,45:2258–2263

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