杰出青年基金
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孔凡江
2018-02-12 | 来源: |【

孔凡江,农学博士,中国科学院东北地理与农业生态研究所研究员,博士生导师,国家自然科学杰出青年基金获得者,黑龙江省杰出青年基金获得者。研究方向是大豆分子遗传学和分子育种。主要从事控制大豆重要农艺性状的基因发掘和调控网络和大豆分子设计育种研究。1. 系统研究了大豆开花基因FT的功能,阐明了FT家族基因的等位变异对大豆适应性及大豆产量的贡献。2. 克隆了控制大豆适应性和产量性状的重要基因J,阐明了光周期调控大豆开花的分子机制,证明了J基因的等位变异是大豆适应低纬度地区和提高大豆产量的重要机制。在Nature Genetics,Plant Physiology,Journal of Experimental Botany,Plant cell Physiology,Plant Molecular Biology等国际著名期刊发表论文四十多篇。主持国家自然科学杰出青年基金、国家重点研发计划重点专项、中国科学院战略性先导专项、国家自然科学基金面上项目、黑龙江省杰出青年基金等。

工作经历 

  2010.02-至今 研究员 中国科学院东北地理与农业生态研究所,哈尔滨 

  2009-2010 特别研究员 北海道大学农学研究院,札幌,日本 

  2008-2009 特别研究员 独立行政法人日本农业食品综合研究机构,筑波,日本 

  2006-2008 博士后 独立行政法人日本学术振兴会(JSPS),札幌,日本 

  2000-2003 农艺师 东北农业大学大豆研究所,哈尔滨 

  1997-2000 助理农艺师 哈尔滨工业大学糖业研究院,哈尔滨 

学习经历 

  2003-2006 博士学位 日本北海道大学农学部,札幌,日本 

  1999-2002 硕士学位 东北农业大学农学院,哈尔滨 

  1999 访问学者 丹麦皇家农业科学院,斯莱克斯,丹麦 

  1993-1997 学士学位 东北农业大学农学院,哈尔滨 

主要研究方向: 

  控制大豆重要农艺性状的基因发掘与分子克隆,大豆遗传转化,大豆蛋白质组学,植物茉莉酸代谢与调控。 

主要研究项目: 

  大豆开花期基因的发掘与功能分析 

主持科研课题及完成情况 

  1)主持国家重点研发计划“增加大豆籽粒数的分子调控机制”,课题编号:2016YFD0100401;资助额度:175万元,2016-2020 

  2)主持中国科学院战略先导专项“大豆早熟优质分子模块新品种设计与培育”资助;项目编号:XDA08030108;资助额度:300万元;2013-2017 

  3)主持国家自然基金面上项目“控制大豆生育期数量性状位点FL1FL2基因克隆与功能分析”;项目编号:31371643; 资助额度:86万元;2014-2017年。 

  4)主持国家自然基金面上项目“大豆长童期性状控制基因克隆与功能分析”,项目编号:31571686; 资助额度:72万元;2016-2019年。 

  5)主持黑龙江省杰出青年基金“大豆早熟分子机理解析与育种应用”, 项目编号:JC201313,资助额度:30万元,2013-2014年。  

  6)主持中国科学院人才项目:大豆生育期分子机理研究;资助额度:360万元,2010-2012年。  

  7)主持国家自然科学基金面上项目:大豆生育期数量性状位点Long Juvenile精细定位与克隆,项目编号:31071445; 资助额度:37万元,2011-2013年。  

    (8)主持黑龙江省自然科学重点基金:大豆生育期数量性状位点克隆与鉴定,资助额度:20万元,2011-2012年。
代表性论文(*通讯作者) 

  1.Sijia Lu, Xiaohui Zhao, Yilong Hu, Shulin Liu, Haiyang Nan, Xiaoming Li, Chao Fang, Dong Cao, Xinyi Shi, Lingping Kong, Tong Su, Fengge Zhang, Shicen Li, Zheng Wang, Xiaohui Yuan, Elroy R Cober, James L Weller, Baohui Liu*, Xingliang Hou*, Zhixi Tian*, Fanjiang Kong*, Natural variation at the soybean J locus improves adaptation to the tropics and enhances yield, Nature Genetics, 2017, 49, 773–779.

  2.Xiaoming Li,Chao Fang, Meilan Xu, Fengge Zhang, Sijia Lu, Haiyang Nan, Tong Su, Shichen Li, Xiaohui Zhao, Lingping Kong, Xiaohui Yuan, Baohui Liu*, Jun Abe*, Elroy Cober*, Fanjiang Kong*,  Quantitative trait locus mapping of soybean maturity gene E6, Crop Science, 2017, 57(5):2547-2554.

  3.Dong Cao, Ryoma Takeshima, Chen Zhao, Baohui Liu, Jun Abe*, Fanjiang Kong*,  Molecular mechanisms of flowering under long days and stem growth habit in soybean, Journal of Experimental Botany, 2017, 68 (8): 1873-1884.

  4.Ryoma Takeshima, Takafumi Hayashi, Jianghui Zhu, Chen Zhao, Meilan Xu, Naoya Yamaguchi, Takashi Sayama, Masao Ishimoto, Lingping Kong, Xinyi Shi, Baohui Liu, Zhixi Tian, Tetsuya Yamada, Fanjiang Kong*, Jun Abe*, A soybean quantitative trait locus that promotes flowering under long days is FT5a, a FLOWERING LOCUS T ortholog. Journal of Experimental Botany, 2016, 67 (17): 5247-5258.

  5.Chen Zhao, Ryoma Takeshima, Jianghui Zhu, Meilan Xu, Satoshi Watanabe, Akira Kanazawa, Baohui Liu*, Fanjiang Kong*, Tetsuya Yamada, Jun Abe*, A recessive allele at the soybean maturity E9 locus attenuates a transcription of FT2a to delay flowering by an insertion of Ty1/copia-like retrotransposon, BMC Plant Biology, 2016, DOI: 10.1186/s12870-016-0704-9

  6.Sijia Lu, Ying Li, Jialin Wang, Haiyang Nan, Dong Cao, Xiaoming Li, Danning Shi, Chao Fang, Xinyi Shi, Xiaohui Yuan, Jun Abe, Baohui Liu* and Fanjiang Kong*, Identification of additional new QTLs for flowering time by removing the major effect of the maturity gene E1 in soybean, Journal of Integrative Agriculture, 2016, (151):60345-7

  7.Dong Cao,Ying Li, Sijia Lu, Jialin Wang, Haiyang Nan, Xiaoming Li, Danning Shi, Chao Fang, Hong Zhai, Xiaohui Yuan, Toyoaki Anai, Zhengjun Xia, Baohui Liu* and Fanjiang Kong*,  GmCOL1a and GmCOL1b function as flowering repressor in soybean under long-day conditions, Plant Cell Physiology, 2015, 56 (12): 2409-2422.

  8.Dong Cao, Ying Li, Jialin Wang, Haiyang Nan, Youning Wang, Sijia Lu, Qiong Jiang, Xiaoming Li, Danning Shi, Chao Fang, Xiaohui Yuan, Xiaohui, Zhao, Xia Li*, Baohui Liu* and Fanjiang Kong*,  GmmiR156b overexpression delays flowering time in soybean, Plant Molecular Biology,, 2015, 89:353–363

  9.Sijia Lu, Ying Li, Jialin Wang, Peerasak Srinives, Haiyang Nan, Dong Cao, Xiaoming Li, Chao Fang, Xinyi Shi, Xiaohui Yuan, Satoshi Watanabe, Xianzhong Feng, Baohui Liu*, Jun Abe* and Fanjiang Kong*,  QTL mapping for flowering time in different latitude in soybean, Euphytica, DOI:10.1007/s10681-015-1501-5, 2015

  10.Xiaohui Zhao, Dong Cao, Zhijun Huang, Jialin Wang, Sijia Lu, Yan Xu, Lingping Kong, Xia Sun, Xiangwen Pan, Baohui Liu*, Fanjiang Kong* and Xiaohui Yuan*, Dual functions of GmTOE4a on the regulation of photoperiod-mediated flowering and plant morphology in soybean, Plant Molecular Biology, doi:10.1007/s11103-015-0322-1, 2015

  11.Bingjun Jiang, Haiyang Nan, Youfei Gao, Lili Tang, Yanlei Yue, Sijia Lu, Liming Ma, Dong Cao, Shi Sun, Jialin Wang, Cunxiang Wu, Xiaohui Yuan, Wensheng Hou, Fanjiang Kong*, Tianfu Han* and Baohui Liu*, Allelic combinations of soybean maturity loci E1, E2, E3 and E4 result in diversity of maturity and adaptation to different latitudes, PLoS ONE, 9(8): e106042. doi:10.1371/journal.pone.0106042, 2014.

  12.Haiyang Nan, Dong Cao, Dayong Zhang, Ying Li, Sijia Lu, Lili Tang, Xiaohui Yuan, Baohui Liu* and Fanjiang Kong*. GmFT2a and GmFT5a redundantly and differentially regulate flowering through interaction with and upregulation of the bZIP transcription factor GmFDL19 in soybean. PLoS ONE, 9(5): e97669, 2014

  13.Fanjiang Kong*,  Haiyang Nan, Dong Cao, Ying Li, Fangfang Wu, Jialin Wang, Sijia Lu, Xiaohui Yuan, Elroy R. Cober, Jun Abe and Baohui Liu*. A New Dominant Gene Conditions Early Flowering and Maturity in Soybean. Crop Science, 2014, 54: 2529-2535.

  14.Fanjiang Kong,  Baohui Liu, Zhengjun Xia, Shusei Sato, Bomin Kim, Satoshi Watanabe, Tetsuya Yamada, Satoshi Tabata, Akira Kanazawa, Kyuya Harada, Jun Abe*,Two Coordinately Regulated Homologs of Flowering Locus T are involved in the Control of Photoperiodic Flowering in Soybean, Plant Physiology, 2010, 154(11): 1220-1231

 
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