研究队伍
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花发育功能基因与环境适应
孟征     研究员
1982年,杭州大学获理学学士学位;
1985年,中国科学院遗传与发育生物学研究所获理学硕士学位;
1996年,中国科学院遗传与发育生物学研究所获理学博士学位;
1985-1993年,在浙江农业大学工作;
1997-2000年,德国马普协会植物育种研究所植物分子遗传学系博士后;
2001年至今,任中国科学院植物研究所花发育功能基因与环境适应研究组组长;
近年来在国际学术期刊上发表文章20余篇,申请专利6项,其中已授权3项。
联系方式:010-62836556 E-mail:zhmeng@ibcas.ac.cn
  • 研究方向
  • 课题组成员
  • 孟征

    研究员
    zhmeng@ibcas.ac.cn
    010-62836556
  • 吴凤

    副研究员
    wufeng@ibcas.ac.cn
    010-62836676
  • 林学磊

    助理研究员
    xueleilin@ibcas.ac.cn
    010-62836260
  • 刘源

    助理研究员
    liuyuan@ibcas.ac.cn
    010-62836942
  • 吴正景

    博士后
    wzj@ibcas.ac.cn
    010-62836260
  • 李海修

    博士生
    lihaixiu@126.com
    010-62836260
  • 冯婷婷

    博士生
    fengtingtingyt@163.com
    010-62836260
  • 王莉莉

    博士生
    15600624976@163.com
    010-62836260
  • 李来运

    博士生

    010-62836620
  • 许家彪

    硕士生
    xujiabiao@foxmail.com
    010-62836260
  • 陈豆豆

    硕士生

    010-62836260
  • 秦慧慧

    硕士生

    010-62836620
  • 李巍

    客座硕士生
    weili8921@163.com
    010-62836260
研究论文
  • Wu F, Shi XW, Lin XL, Liu Y, Chong K, Theiben G, Meng Z. 2017. The ABCs of flower development: mutational analysis of AP1/FUL-like genes in rice provides evidence for ahomeotic (A)-function in grasses. Plant Journal, 89: 310-324[下载]
  • Yan S, Wang ZN, Liu Y, Li W, Wu F, Lin XL, Meng Z. 2015. Functional architecture of two exclusively late stage pollen -specific promoters in rice (Oryza sativa L.) . Plant Molecular Biology, 88: 415- 428[下载]
  • Yan S, Du XQ, Wu F, Li L, Li CY and Meng Z. 2014. Proteomics insights into the basis of interspecific facilitation for maize (Zea mays) in faba bean (Vicia faba)/maize intercropping. Journal of Proteomics, 109: 111-124[下载]
  • Lin XL, Wu F, Du XQ, Shi XW, Liu Y, Liu SJ, Hu YX, Theiben Gand Meng Z*. 2014. The pleiotropic SEPALLATA-like gene OsMADS34 reveals that the ‘empty glumes’ of rice (Oryza sativa) spikelets are in fact rudimentary lemmas. New Phytologist, 202: 689-702[下载]
  • Liu SJ, Du XQ, Wu F, Lin XL, Xu QJ and Meng Z. 2013. Evolutionary divergence of the PISTILLATA-like proteins in Hedyosmum orientale (Chloranthaceae) after gene duplication. Journal of Systematics and Evolution, 51: 681-692[下载]
  • Liu SJ, Sun YH, Du XQ, Xu QJ, Wu F and Meng Z. 2013. Analysis of the APETALA3- and PISTILLATA-like genes in Hedyosmum orientale (Chloranthaceae) provides insight into the evolution of the floral homeotic B-function in angiosperms. Annals of Botany, 112: 1239-1251[下载]
  • Liu Y, Cui SJ, Wu F, Yan S, Lin XL, Du XQ, Chong K, Schilling S, Theiben G and Meng Z. 2013.  Functional conservation of MIKC*-type MADS box genes in Arabidopsis and rice pollen maturation. Plant Cell, 25: 1288-1303[下载]
  • Yang XL, Wu F, Lin XL, Du XQ, Chong K, Gramzow L, Schilling S, Becker A, Theissen G and Meng Z. 2012. Live and let die - The B-sister MADS-box gene OsMADS29 controls the degeneration of cells in maternal tissues during seed development of rice (Oryza sativa). PLoS ONE, 7: e51435[下载]
  • Ren B, Guo Y, Gao F, Zhou P, Wu F, Meng Z, Wei CH and Li Y. 2011. Multiple functions of rice dwarf phytoreovirus Pns10 in suppressing systemic RNA silencing. Journal of Virology, 84: 12914–12923[下载]
  • Liu C, Zhang J, Zhang N, Shan H, Su K, Zhang J, Meng Z, Kong H, Chen Z. 2010. Iteractions among proteina of floral MADS-box genes in basal eudicots: Implictions for evolution of the regulatory network for flower development. Molecular Biology and Evolution, 27: 1598-1611[下载]
  • Lv S, Fan Y, Liu L, Liu S, Zhang W and Meng Z. 2010. Ectopic expression of TrPI, a Taihangia rupestris (Rosaceae) PI ortholog, causes modifications of vegetative plant architecture in Arabidopsis. Journal of Plant Physiology, 167: 1613-1621[下载]
  • Cui R, Han J, Zhao S, Su K, Wu F, Du X, Xu Q, Chong K, Theissen G and Meng Z. 2010. Functional conservation and diversification of class E floral homeotic genes in rice (Oryza sativa). Plant Journal, 61: 767–781[下载]
  • Xiao H, Tang J, Li Y, Wang W, Li X, Jin L, Xie R, Luo H, Zhao X, Meng Z, He G and Zhu L. 2009. STAMENLESS 1, encoding a single C2H2 zinc finger protein, regulates floral organ identity in rice. The Plant Journal, 59: 789–801[下载]
  • Shu K, Zhao S, Shan H, Kong H, Theissen G, Chen Z and Meng Z. 2008. The MIK region rather than the C-terminal domain of AP3-like class B floral homeotic proteins determines functional specificity in the development and evolution of petals. New Phytologist, 178: 544-558[下载]
  • Du X, Xiao Q, Zhao R, Chong K and Meng Z. 2008. TrMADS3, a new MADS-box gene, from a perennial species Taihangia rupestris (Rosaceae) is up-regulated by cold and experiences seasonal fluctuation in expression level. Development Genes and Evolution, 218: 281–292[下载]
  • Wang Y, Tian H, Lv S, Lu W and Meng Z. 2007. Isolation and Characterization of a candidate class E gene from Taihangia rupestris. Journal of Integrative Plant Biology, 49: 343-350[下载]
  • Lu S, Du X, Lu W, Chong K and Meng Z. 2007. Two AGAMOUS-like MADS-box genes from Taihangia rupestris (Rosaceae) reveal independent trajectories in the evolution of class C and class D floral homeotic functions. Evolution and Development, 9: 92–104[下载]
  • Shan H, Su K, Lu W, Kong H, Chen Z and Meng Z. 2006. Conservation and divergence of candidate class B genes in Akebia trifoliate (Lardizabalaceae). Development Genes and Evolution, 216: 785-795[下载]
  • Li G, Meng Z, Kong H, Chen Z, Theissen G and Lu A. 2005. Characterization of candidate class A, B and E floral homeotic genes from the perianthless basal angiosperm Chloranthus spicatus (Chloranthaceae). Development Genes and Evolution, 215: 437-449[下载]
  • Gui S and Meng Z, Kong HZ, Chen ZD and Lu AM. 2003. ABC model and floral evolution. Chinese Science Bulletin, 48: 2651-2657[下载]
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