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彭连伟


职务/职称: 研究员
联系电话:
电子邮件: penglianwei@ibcas.ac.cn
个人网页: http://klpb.rol.escience.cn/dct/page/65614
课 题 组: 光合电子传递调控研究组

彭连伟,男,,研究员,博士生导师。

    1979年5月出生于山东省临沂市,2001年在烟台大学获学士学位,2006年在兰州大学获博士学位。2007年获得日本学术振兴会(JSPS)资助前往日本Kyushu University和Kyoto University进行博士后研究。2011年5月回国,入选中国科学院 “百人计划”。迄今发表论文16篇,其中第一作者和通讯作者论文8篇,正指导博士生1名。

主要研究工作:

1. 光合交替电子传递的分子基础

利用分子遗传学和生物化学等多学科手段,通过对突变体的遗传分析并进一步对相关复合物进行纯化,研究光合交替电子传递复合物的结构及生物发生机理。

2. 光合交替电子传递调控光合作用的分子机制

利用T-DNA插入或诱导激活突变体系统,通过对交替电子传递突变体的基因克隆和遗传分析,挖掘参与交替电子传递的重要因子并详细研究它们调控光合作用及叶绿体发育的分子机制。

研究论文(注*为通讯作者):

[1]   Peng L, Fukao Y, Myouga F, Motohashi R, Shinozaki K, Shikanai T. 2011. A chaperonin subunit with unique structures is essential for folding of a specific substrate. PLoS Biology, 9: e1001040

[2]    Peng L, Shikanai T. 2011. Supercomplex formation with photosystem I is required for the stabilization of the chloroplast NADH dehydrogenase-like complex in Arabidopsis. Plant Physiology, 155: 1629-1639

[3]   Yamamoto H, Peng L, Fukao Y, Shikanai T. 2011. An Src homology 3 domain-like fold protein forms a ferredoxin-binding site for the chloroplast NADH dehydrogenase-like complex in Arabidopsis. Plant Cell, 23: 1480-1493

[4]   Peng L*, Yamamoto H, Shikanai T. 2010. Structure and biogenesis of the chloroplast NAD(P)H dehydrogenase complex. Biochim. Biophys. Acta, 1807: 945-953

[5]    Cai W, Okuda K, Peng L, Shikanai T. 2011. PROTON GRADIENT REGULATION 3 recognizes multiple targets with limited similarity and mediates translation and RNA stabilization in plastids. The Plant Journal, 67: 318-327

[6]   Peng L, Cai W, Shikanai T. 2010. Chloroplast stromal proteins, CRR6 and CRR7, are required for assembly of the NAD(P)H dehydrogenase subcomplex A in Arabidopsis. The Plant Journal, 63: 203-211

[7]   Okuda K, Hammani K, Tanz SK, Peng L, Fukao Y, Myouga F, Motohashi R, Shinozaki K, Small I, ShikanaiT. 2010. The pentatricopeptide repeat protein OTP82 is required for RNA editing of plastid ndhB and ndhG transcripts. The Plant Journal, 61: 339-349

[8]   Peng L, Fukao Y, Fujiwara M, Takami T, Shikanai T. 2009. Efficient operation of NAD(P)H dehydrogenase requires the supercomplex formation with photosystem I via minor LHCI in Arabidopsis. Plant Cell, 21: 3623-3640

[9]   Cai W, Ji D, Peng L, Guo J, Ma J, Zou M, Lu C, Zhang L. 2009. LPA66 is required for editing psbF chloroplast transcripts in Arabidopsis. Plant Physiology, 150: 1260-1271

[10]  Peng L, Shimizu H, Shikanai T. 2008. The chloroplast NAD(P)H dehydrogenase complex interacts with photosystem I in Arabidopsis. Journal of Biological Chemistry, 283: 34873-34879

[11]  Shimizu H, Peng L, Myouga F, Motohashi R, Shinozaki K, Shikanai T. 2008. CRR23/NdhL is a subunit of the chloroplast NAD(P)H dehydrogenase complex in Arabidopsis. Plant and Cell Physiology, 49: 835-842

[12]  Ma J, Peng L, Guo J, Lu Q, Lu C, Zhang L. 2007. LPA2 is required for efficient assembly of photosystem II in Arabidopsis thaliana. Plant Cell, 19: 1980-1993. (:equal contribution)

[13]  Sun X, Peng L, Guo J, Chi W, Ma J, Lu C, Zhang L. 2007. Formation of DEG5 and DEG8 complexes and their involvement in the degradation of photodamaged photosystem II reaction center D1 protein in Arabidopsis. Plant Cell, 19: 1347-1361

[14]  Peng L, Ma J, Chi W, Guo J, Zhu S, Lu Q, Lu C, Zhang L. 2006. LOW PSII ACCUMULATION1 is involved in efficient assembly of photosystem II in Arabidopsis thaliana. Plant Cell, 18: 955-969

[15]  Peng L, Guo J, Ma J, Chi W, Zhang L. 2006. Photosynthetic properties of photosystem II in Arabidopsis thaliana lpa1 mutant. Journal of Integrative Plant Biology, 48: 1424-1430

[16]  Ma J, Guo J, Peng L, Chen C, Zhang L. 2006. Decrease of photosystem II photochemistry in Arabidopsis ppt1 mutant is dependent on leaf age. Journal of Integrative Plant Biology, 48: 1409-1414


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