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郑天清

姓  名:郑天清

性   别:男

职  称:副研究员

联系电话:010-82106697

电子邮箱:zhengtianqing@caas.cn; tonyztq@163.com

个人网页:http://www.rmbreeding.cn/profile/Tian-Qing_Zheng.htm

创新小组:水稻分子育种

 
 
 
 
 
 

个人简介:

 

郑天清,男,硕士生导师,副研究员。南京农业大学遗传育种专业博士学位,

1995/9 - 1999/07,南京农业大学生物技术专业,理学学士

1999/09 - 2006/09,南京农业大学农学院遗传育种系,农学博士,其中,2002/11 – 2004/03,国际水稻研究所(IRRI)植物遗传育种与生物化学系(PBGB),PhD Scholar

2006/10 - 2009/05,中国农业科学院作物科学研究所分子生物学系,博士后

2009/06 - 2012/11,中国农业科学院作物科学研究所水稻分子育种与分子遗传课题组,助理研究员

2012/12至今,中国农业科学院作物科学研究所水稻分子育种与分子遗传课题组,副研究员

 

研究方向:

围绕水稻分子育种,开展材料创制、信息平台创建及复杂性状的遗传机理研究。

主要贡献:

(一)分子育种材料平台的创建:

利用回交、复交及轮回选择导入方法构建双向导入系和轮回选择基础群体,结合高通量的方法开展基因型鉴定和多年多点的表型鉴定,为开展水稻复杂农艺性状的遗传解析提供优良的材料平台。与种业合作,利用我国江苏中粳优良品系与东北早粳配组,选育新的品种类型,获得了一批在早粳主产区能够正常成熟,茎秆强度增加、穗粒数有所提高、熟色和转色佳的新类型苗头品系。

(二)分子育种信息平台的创建:

参与全球3000份水稻亲本测序数据的收集;在此基础上,结合从分子育种材料平台所收集的大量信息,合作创建水稻分子育种的数据库系统。建成的基于3000份水稻测序数据的3K水稻数据库(http://www.rmbreeding.cn),将为水稻复杂性状的分子设计育种提供强大的数据支撑。

(三)复杂性状的遗传机理研究:

  1. 独立于遗传背景的主效QTLBI-QTL)研究:利用双向导入系对粒重和粒型进行了BI-QTL分析,其信息有望用于粒型和粒重的设计育种。
  2. 分子育种可用标记的开发:通过重测序开发了等位基因特异(AS-PCR)或紧密连锁的PCR标记,已获得可以初步应用于粒型、品质、早稳性等特异材料鉴定的有用标记。
  3. 复杂抗性的遗传研究:利用高通量的基因组测序与表达谱分析相结合,对抗旱和抗纹枯病的双抗聚合系进行遗传重叠候选区段缩减,获得了双抗候选基因;利用连锁-关联联合分析,与江苏农科院合作利用连锁-关联联合分析开展抗病有利等位基因挖掘;与福建农科院合作利用高代回交导入方法对稻瘟病抗性进行剖析。

 

授权专利5项(其中第一完成人2项、第三完成人2项、第四完成人1项);新申请专利4项(均为第一完成人)。

申请品种权5项(其中第一完成人2项、第三完成人2项、第四完成人1项)。

获得计算机软件授权3项。

参编专著2部(中文1部、英文1部)。

应邀担任《Frontiers in Genetics》的Review Editor以及3SCI杂志《Plant Breeding》、《Crop Science》和《Journal of Plant Research》和2个核心期刊《核农学报》和《Journal of Crop Science》的审稿人。

作为副导师,协助指导研究生7名(包括留学生6名),其中5名已经毕业(博士3人、硕士2人),2名在读(博士2人)。

近五年审定品种:

1. 绥粳18:黑审稻2014021,排名第八。

近五年发表论文:

5年来在《Scientific Data》、《Frontiers in Plant Science》、《Scientific Reports》、《Molecular Breeding》、《Theoretical Applied Genetics》、《Crop Science》、《Plant Breeding》、《Euphytica》和《PLoS One》等国际主流的作物分子育种相关杂志发表SCI论文二十余篇,其中通作4篇、第一/并列一作7篇。

2018

  1. Zhang GM#, Zheng TQ#*, Chen Z#, Wang YL, Wang Y, Shi YM, Wang CC, Zhang LY, Ma JT, Deng LW, Li W, Xu TT, Liang CZ, Xu JL* and Li ZK. Joint exploration of favorable haplotypes for mineral concentrations in milled grains of rice (Oryza sativa L.). Front. Plant Sci. 2018, 9:447.

http://www.frontiersin.org/articles/10.3389/fpls.2018.00447/full

  1. Wang, W.#, R. Mauleon#, Z. Hu#, D. Chebotarov#, S. Tai#, Z. Wu#, M. Li#, T. Zheng#, R. R. Fuentes#, F. Zhang#, L. Mansueto#, D. Copetti#, M. Sanciangco, K. C. Palis, J. Xu, C. Sun, B. Fu, H. Zhang, Y. Gao, X. Zhao, F. Shen, X. Cui, H. Yu, Z. Li, M. Chen, J. Detras, Y. Zhou, X. Zhang, Y. Zhao, D. Kudrna, C. Wang, R. Li, B. Jia, J. Lu, X. He, Z. Dong, J. Xu, Y. Li, M. Wang, J. Shi, J. Li, D. Zhang, S. Lee, W. Hu, A. Poliakov, I. Dubchak, V. J. Ulat, F. N. Borja, J. R. Mendoza, J. Ali, J. Li, Q. Gao, Y. Niu, Z. Yue, M. E. B. Naredo, J. Talag, X. Wang, J. Li, X. Fang, Y. Yin, J.-C. Glaszmann, J. Zhang, J. Li, R. S. Hamilton, R. A. Wing*, J. Ruan*, G. Zhang*, C. Wei*, N. Alexandrov*, K. L. McNally*, Z. Li* and H. Leung. Genomic variation in 3,010 diverse accessions of Asian cultivated rice. Nature. 2018, Apr 25. doi: 10.1038/s41586-018-0063-9.

http://www.ncbi.nlm.nih.gov/pubmed/29695866

2017

  1. Nie, S.-J.#, Y.-Q. Liu#, C.-C. Wang#, S.-W. Gao, T.-T. Xu, Q. Liu, H.-L. Chang, Y.-B. Chen, P.-C. Yan, W. Peng, T.-Q. Zheng*, J.-L. Xu and Z.-K. Li (2017). Assembly of an early-matured japonica (Geng) rice genome, Suijing18, based on PacBio and Illumina sequencing. Scientific Data 4: 170195.

http://www.nature.com/articles/sdata2017195  

  1. Xianjin Qiu#, Kai Chen#, Wenkai Lv, Xiaoxue Ou, Yajun Zhu, Danying Xing, Longwei Yang,  Fangjun Fan, Jie Yang, Jianlong Xu*, Tianqing Zheng*, Zhikang Li. Examining two sets of introgression lines reveals backgroundindependent and stably expressed QTL that improve grain appearance quality in rice (Oryza sativa L.). Theor Appl Genet, 2017, 130:951–967

http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5395602/

  1. Chen Sun#, Zhiqiang Hu#, Tianqing Zheng#, Kuangchen Lu, Yue Zhao, Wensheng Wang, Jianxin Shi, Chunchao Wang, Jinyuan Lu, Dabing Zhang, Zhikang Li, and Chaochun Wei. RPAN: Rice Pan-genome Browser for ~3,000 rice genomes. Nucleic Acids Research, 2017, 45 (2): 597-605.

http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5314802/

  1. Qiming Lv, Zhiyuan Huang, Xiao Xu, Li Tang, Hai Liu, Chunchao Wang, Zhuangzhi Zhou, Yeyun Xin, Junjie Xing, Zhirong Peng, Xiaobing Li, Tianqing Zheng* & Lihuang Zhu*. Allelic variation of the rice blast resistance gene Pid3 in cultivated rice worldwide. Scientific Reports 7(1): 10362.

http://www.nature.com/articles/s41598-017-10617-2

 

2016

  1. Qiang Zhang#, Tianqing Zheng#, Long Hoang, Chunchao Wang, NafisahCharles Joseph, Wenzhong Zhang*, Jianlong Xu*, Zhikang Li. Joint Mapping and Allele Mining of the Rolled Leaf Trait in Rice (Oryza sativa L.). Plos One, 2016, 11(7): e0158246.

http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4956317/

  1. Huan Liu, Aijaz Soomro, Yajun Zhu, Xianjin Qiu, Kai Chen, Tianqing Zheng, Longwei Yang, Danying Xing*, Jianlong Xu*. QTL underlying iron and zinc toxicity tolerances at seedling stage revealed by two sets of reciprocal introgression populations of rice (Oryza sativa L.). The Crop Journal, 2016,4: 280 -289

http://www.sciencedirect.com/science/article/pii/S2214514116300496

  1. 向小娇, 张建, 郑天清, 徐建龙*. 应用分子标记技术改良京作1号的稻瘟病抗性. 植物遗传资源学报,2016, 17(4):773-380

http://www.zwyczy.cn/ch/reader/view_pdf.aspx?file_no=20160315002&flag=1&year_id=2016&quarter_id=4

2015

  1. Xu Q,# Zheng T-Q#, Hu X, Cheng L-R, Xu JL*,Shi Y-M, Li ZK. Examining Two Sets of Introgression Lines in Rice (Oryza sativa L.) Reveals Favorable Alleles that Improve Grain Zn and Fe Concentrations. PLoS ONE, 2015, 10(7): e0131846

http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4498612/

  1. Wang WS, Fu BY, Ali J, Xu JL, Gao, YM, Zheng TQ, Zhang F, Li ZK. Genome-Wide Responses to Selection and Genetic Networks Underlying Submergence Tolerance in Rice. The Plant Genome, 2015, 8,1-13

http://dl.sciencesocieties.org/publications/tpg/articles/8/2/plantgenome2014.10.0066

  1. Xu JL, Wang Y, Zhang F, Wu Y, Zheng TQ, Wang Y-H, Zhao XQ, Cui YR, Chen K, Zhang Q, Lin HX, Li JY, Li ZK. SS1 (NAL1)- and SS2-Mediated Genetic Networks Underlying Source-Sink and Yield Traits in Rice (Oryza sativa L.). PLoS ONE 2015,10(7): e0132060

http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4498882/

  1. 郑天清#*, 余泓#, 张洪亮#, 吴志超#, 王文生#, 太帅帅#, 迟璐, 阮珏, 韦朝春, 石建新, 高用明, 傅彬英, 周永力, 赵秀琴, 张帆, McNally Kenneth, 李自超, 张耕耘, 李家洋, 张大兵, 徐建龙*, 黎志康*. 水稻功能基因组育种数据库(RFGB): 3K 水稻SNPInDel子数据库. 科学通报,2015, 60(4):367-371

http://csb.scichina.com:8080/CN/abstract/abstract516741.shtml

 

2014

  1. Xiaoqian Wang, Yunlong Pang, Jian Zhang, Qiang Zhang, Yonghong Tao, Bo Feng, Tianqing Zheng, Jianlong Xu*, Zhikang Li. Genetic background effects on QTL and QTL × environment interaction for yield and its component traits as revealed by reciprocal introgression lines in rice. The Crop Journal, 2014,2: 345-357

http://www.sciencedirect.com/science/article/pii/S2214514114000567

  1. Dong Wei, Cheng Zhi-jun*, Xu Jian-long, Zheng Tian-qing, Wang Xiao-le, Zhang Hong-zheng, Wang Jie and Wan Jian-min. Identification of QTLs underlying folate content in milled rice.  Journal of Integrative Agriculture, 2014, 13:1827-1834

http://www.chinaagrisci.com/Jwk_zgnykxen/EN/10.1016/S2095-3119(13)60537-7

  1. Yun Wang, Qiang Zhang, Tianqing Zheng, Yanru Cui, Wenzhong Zhang, Jianlong Xu*, Zhikang Li. Drought-tolerance QTLs commonly detected in two sets of reciprocal introgression lines in rice. Crop & Pasture Science, 2014, 65:171-184

http://www.publish.csiro.au/CP/CP13344

  1. Chai Lu, Zhang Jian, Pan Xiao-biao, Zhang Fan, Zheng Tian-qing, Zhao Xiu-qing, Wang Wen-sheng, Ali Jauhar, Xu Jian-long*, Li Zhi-kang*. Advanced Backcross QTL Analysis for the Whole Plant Growth Duration Salt Tolerance in Rice (Oryza sativa L.). Journal of Integrative Agriculture, 2014, 1461-1467

http://www.sciencedirect.com/science/article/pii/S2095311913605754

  1. Wei Chen#, Haodong Chen#, Tianqing Zheng#, Renbo Yu, Zhikang Li, Xing Wang Deng, JianLong Xu*, Hang He*. Highly efficient genotyping of rice biparental population by GoldenGate assay based on parents resequencing. Theor Appl Genet, 2014, 127:297-307

http://link.springer.com/article/10.1007%2Fs00122-013-2218-2

  1. Junmin Wang#, Lijun Wei#, Tianqing Zheng#, Xiuqin Zhao, Jauhar Ali, Jianlong Xu*, Zhikang Li. Simple sequence repeat markers reveal multiple loci governing grain-size variations in a japonica rice (Oryza sativa L.) mutant induced by cosmic radiation during space flight. Euphytica, 2014, 196:225-236

http://link.springer.com/article/10.1007%2Fs10681-013-1026-8

  1. The 3,000 rice genomes project. The 3,000 rice genomes project. GigaScience, 2014, 3:7 (作者排列第8)

http://europepmc.org/articles/PMC4035669

2013

  1. Li, Z. K. and T. Q. Zheng (2013). Utilization of exotic germplasm. genetics and genomics of rice. Q. F. Zhang and R. Wing, Springer Science + Business Media, Inc.: 349-361.

http://link.springer.com/chapter/10.1007/978-1-4614-7903-1_23

  1. Lirui Cheng, Qin Xu, Tianqing Zheng, Guoyou Ye, Chenggang Luo, Jianlong Xu*, and Zhikang Li. Identification of stably expressed QTLs for grain yield and protein content using recombinant inbred line and reciprocal introgression line populations in rice. Crop Science, 2013, 53:1437-1446

http://dl.sciencesocieties.org/publications/cs/abstracts/53/4/1437?search-result=1

  1. 张建,Aijaz Ahmed Soomro,柴路,崔彦茹,王小倩,郑天清,徐建龙*, 黎志康.利用双向回交导入系定位水稻苗期耐亚铁毒和锌毒的QTL. 作物学报,2013, 39(10):1754-1765

http://zwxb.chinacrops.org/CN/abstract/abstract5484.shtml

  1. 张强, 陈凯梁云涛,  章禄标,   郑天清,  徐建龙*,  张文忠*,   黎志康. 利用双向导入系剖析水稻源、库相关性状的QTL. 核农学报, 2013 , 27(3):261-271

http://manu02.magtech.com.cn/Jweb_hnxb/CN/abstract/abstract11031.shtml



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