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卢从明


职务/职称: 研究员
联系电话: (86)-010-62836554
电子邮件: lucm@ibcas.ac.cn
个人网页: http://www.klpbcas.com/index.php/Team/show/id/10.html
课 题 组: 光合作用环境适应分子机理研究组

卢从明,男,博士,研究员,博士生导师。

19644月出生于江苏东台市,19861989年分别获江苏农学院(现扬州大学)学士和硕士学位,1993年获中国科学院植物研究所博士学位。曾在以色列本古里安大学、香港浸会大学、英国伦敦大学国王学院从事博士后研究。2007年度国家杰出青年基金获得者。

主要研究工作:

主要研究方向是光合作用功能调控的分子机理,主要包括光合作用环境适应的分子机理、稻麦等重要农作物光能高效利用的机理及提高作物光能利用效率的可能途径。

主持和参加的科研项目:

1. “光合作用碳代谢的遗传控制规律”, 973项目-课题(2009.1-2013.12)主持人。 

2. “水稻光合作用光保护的分子机理”国家自然科学基金项目(2008.1-2011.12),主持人。

研究论文(注*为通讯作者):

2016

Ding Shunhua, Jiang Rui, Lu Qingtao, Wen Xiaogang, Lu Congming*. 2016. Glutathione reductase 2 maintains the function of photosystem II in Arabidopsis under excess light. Biochimica et Biophysica Acta - Bioenergetics, 1857:665-677.

Ding Shunhua, Wang Liang, Yang Zhipan, Lu Qingtao, Wen Xiaogang, Lu Congming*. 2016. Decreased glutathione reductase2 leads to early leaf senescence in Arabidopsis. Journal of Integrative Plant Biology, 58: 29-47.

2015

Yang Huixia, Liu Jun, Wen Xiaogang, Lu Congming*. 2015. Molecular mechanism of photosystem I assembly in oxygenic organisms. Biochimica et Biophysica Acta - Bioenergetics, 1847 (9): 838-848.

Yang Zhipan, Shang Zengzhen, Wang Lei, Lu Qingtao, Wen Xiaogang, Chi Wei, Zhang Lixin, Lu Congming*.  2015. Purine biosynthetic enzyme ATase2 is involved in the regulation of early chloroplast development and chloroplast gene expression in Arabidopsis. Photosynthesis Research, 126:285-300.

Wang Liang, Lu Qingtao, Wen Xiaogang, Lu Congming*. 2015. Enhanced sucrose loading improves rice yield by increasing grain size. Plant Physiology, 169 (4): 2848-2862.

2013

Zhong Linlin, Zhou Wen, Wang Haijun, Ding Shunhua, Lu Qingtao, Wen Xiaogang, Peng Lianwei, Zhang Lixin, Lu Congming*. 2013. Chloroplast small heat shock protein HSP21 interacts with plastid nucleoid protein pTAC5 and is essential for chloroplast development in Arabidopsis under heat stress. The Plant Cell, 25: 2925-2943.

Chen Boya, Zhang Aihong, Lu Qingtao, Kuang Tingyun, Lu Congming, Wen Xiaogang*. 2013. Characterization of photosystem I in rice (Oryza sativa L.) seedlings upon exposure to random positioning machine. Photosynthesis Research, 116: 93-105.

2012

Liu J,Yang HX,Lu QT,Wen XG,Chen F,Peng LW, Zhang LX, Lu CM*. 2012. PSBP-DOMAIN PROTEIN1, a Nuclear-Encoded ThylakoidLumenal Protein, Is Essential for Photosystem I Assembly in Arabidopsis. The Plant Cell,  24: 4992–5006.

Ding DH, Lei M, Lu QT, Zhang AH, Yin Y, Wen XG, Zhang LX, Lu CM*. 2012. Enhanced sensitivity and characterization of photosystem II in transgenic tobacco plants with decreased chloroplast glutathione reductase under chilling stress. Biochimica et Biophysica Acta (Bioenergetics),1817(11):1979–1991.

Zhang VY, Yin Y, Zhang AH, Lu QT, Wen XG, Zhu Z, Zhang LX, Lu CM*. 2012. Comparative proteomic study reveals dynamic proteome changes between superhybrid rice LYP9 and its parents at different developmental stages.Journal of Plant Physiology. 169(4):387-398.

2011

Zhang Y, Ding SH, Lu QT, Yang ZP, Wen XG, Zhang LX, Lu CM*. 2011. Characterization of photosystem II in transgenic tobacco plants with decreased iron superoxide dismutase. Biochimica et Biophysica Acta (Bioenergetics),1807: 391-403.

2010年及以前

Ding SH, Lu QT, Zhang Y, Yang ZP, Wen XG, Zhang LX, Lu CM*. 2009. Enhanced sensitivity to oxidative stress in transgenic tobacco plants with decreased glutathione reductase activity leads to a decrease in ascorbate pool and ascorbate redox state. Plant Molecular Biology 69: 577-592.

Yang XH, Liang Z, Wen XG, Lu CM*. 2008. Genetic engineering of the biosynthesis of glycinebetaine leads to increased tolerance of photosynthesis to salt stress in transgenic tobacco plants. Plant Molecular Biology 66: 73-86.

Gong HM, Tang YL, Wang J, Wen XG, Zhang XL, Lu CM*. 2008. Characterization of photosystem II in salt-stressed cyanobacterial Spirulina platensis cells. Biochimica et Biophysica Acta (Bioenergetics) 1777: 488-495.

Tang YL, Wen XG, Lu QT, Yang ZP, Cheng ZK, Lu CM*. 2007. Heat stress induces an aggregation of the light-harvesting complex of photosystem II in spinach plants. Plant Physiology 143: 629-638.

Yang XH, Liang Z, Lu CM*. 2005. Genetic engineering of the biosynthesis of glycinebeta ine enhances photosynthesis against high temperature stress in transgenic tobacco plants. Plant Physiology 138: 2299-2309.


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