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河南农业大学农学院导师介绍:汤继华

河南农业大学 考研网/2016-03-01


姓名 汤继华 姓名拼音 Tang jihua
性别 职称/职务 教授/培育基地副主任
出生年月 1969.02 民族
导师类别 硕导、博导 政治面貌 中共党员
所在院系 农学院
所在学科 作物遗传育种
研究专长 玉米分子生物学
电话、传真 **
通讯地址 郑州市文化路95号
E-mail Tangjihua1@163.com
导师批准时间和指导研究生情况 2004,目前指导硕士研究生9人。
学习经历
(大学以后)
1987.09-1991.07,河南农业大学农学系学习,获学士学位;
1991.09-1994.07,河南农业大学作物遗传育种专业学习,获硕士学位;
1998.09-2001.07,华中农业大学作物遗传育种专业学习,获博士学位;
2003.01-2005.12,中国农业大学博士后流动站工作,副教授。
任职经历 1994.08-1998.08,河南农业大学农学院,助教;
2001.08-2003.10,河南农业大学农学院,讲师;
2003.11-2008.10,河南农业大学农学院,副教授;
2008.11-今,河南农业大学农学院,教授;
学术和社会兼职 河南省遗传学会理事、青年工作委员会副主任;农业部转基因检测实验室(河南)技术顾问。
承担主要科研项目和获奖情况 承担的科研项目:
(1)973项目,2012CB723001,玉米产量相关性状的遗传机理剖析与优异种质创制,2012-2014;
(2)国家自然科学基金,玉米穗粗杂种优势位点的鉴定与候选基因克隆,2013-2016;
(3)河南省优秀创新人才基金,玉米籽粒发育关键基因的克隆与功能分析,2013-2015;
(4)国家自然科学基金,30871538,玉米穗分化相关基因的克隆,2009-2011;
(5)国家自然科学基金,30671304,玉米C型胞质雄性不育恢复主基因Rf4的分离与克隆,2007-2009;
(6)科技成果转化,2011GB2D000006,高产稳产耐密型玉米新品种豫单811中试与示范,2012-2013;
(7)基地建设,玉米原原种基地,2012-2012;
(8)科技支撑计划,2011BAD35B01,黄淮海夏玉米新品种选育与扩繁,2011-2015;
(9)863计划,2012AA10A305,玉米产量相关基因克隆与功能分析,68万元,2012-2015;(10)新世纪优秀人才支持计划,20080010,玉米氮高效利用的分子机理研究,2008-2010,50万元,主持,教育部,正在进行;
(11)河南省杰出青年基金,**,玉米氮高效利用的遗传机理研究与新品种选育,2008-2010,20万元,主持,河南省科技厅,正在进行。
(12)948项目,2010-Z 22,[反]-β-法尼烯(EβF)合成酶基因的引进与玉米抗蚜虫种质的创制,2010。
获得的有关荣誉:
国务院特殊津贴、百千万人才工程国家级人选、 教育部新世纪优秀人才、河南省优秀创新人才、河南省学术技术带头人、河南省优秀青年科技专家、河南省杰出青年、河南省五四青年奖章、河南省优秀青年骨干教师、河南省粮食生产先进个人等。
论著和论文(著作限填5部,代表性论文10篇) 代表性论文:
1) Guo Tingting,Li Huihui,Yan Jianbing,Tang Jihua,Li Jiansheng,Zhang Zhiwu,Zhang Luyan,Wang Jiankang.Performance prediction of F1 hybrids between recombinant inbred lines derived from two elite maize inbred lines.Theor Appl Genet,2012,DOI 10.1007/s00122-012-1973.
2)Yuan L Z,Tang J H,Wang X P,Li C H.QTL analysis of shading sensitive related traits in maize under two shading treatments.PLoS ONE, 2012,7(6):e38696
3)Ding D,Wang Y J,Han M S,Tang J H.MicroRNA transcriptomic analysis of heterosis during maize seed germination.PLoS ONE,2012,7(6):e39578.
4)Liu Z H,Li W H,Qi H Y,Song G L,Ding D,Fu Z Y,Liu J B,Tang J H.Arsenic accumulation and distribution in the tissues of inbred lines in maize (Zea mays L.).Genet Resour Crop Evol,2012,59:1705-1711.
5)Fu Z,Jin X,Ding D,Li Y,Fu Z,Tang J.Proteomic analysis of heterosis during maize seed germination.Proteomics.2011,11(8):1462-72..
6)Ding D,Li W H,Song G L,Qi H Y,Liu J B,Tang J H.Identification of QTLs for arsenic accumulation in maize (Zea mays L.) using a RIL population.PLoS ONE,2011,6(10):e25646.
7)Lin X E,Ji H Q,Niu J H,Hu Y M,Fu Z J,Liu Z H,Tang J H.Cloning one CIPK gene from a thermo-sensitive genic self-incompatible line in maize expressing under different temperature.Chinese Agricultural Science,2011,10(6):813-819.
8)Liu J B,Fu Z Y,Xie H L,Hu Y M,Liu Z H,Duan L J,Xu S Z,Tang J H.Identification of QTLs for maize seed vigor at three stages of seed maturity using a RIL population.Euphytica,2010,178(1):127-135.
9)Liu Z H,Ji H Q,Cui Z T,Wu X,Dun L J,Feng X X,Tang J H.QTL detected for grain filling rate in maize using a RIL population.Molecular breeding,2011,27:25-36
10)Xie H L,Ding D,Cui Z T,Wu X,Hu Y M,Liu Z H,Li Y L,Tang J H.Genetic analysis of the related traits of flowering and silk for hybrid seed production in maize.Gene & Genomics,2010,32:53-59.
11)Tang J H,Yan J B,Ma X Q,Teng W T,Wu W R,Dai J R,Dhillon B S, Melchinger A E,Li J S.Dissection of the genetic basis of heterosis in an elite maize hybrid by QTL mapping in an immortalized F2 population.Thero Appl Genet 2009,120:333-340.
12)Xie H L,Ji H Q,Liu Z H,Tian G W,Wang C L,Hu Y M,Tang J H.Genetic basis of nutritional content of stover in maize under low nitrogen conditions.Euphytica 2009,165:485-493.
13)Lin X E,Xie H L,Xi Z Y,Hu Y M,Zhao G Y,Duan L J,Hao Z Y,Liu Z H,Tang J H.Identification and mapping of a thermo-sensitive genic self-incompatibility gene in maize.Gene & Genomics,2009,31:227-34.
14)Li Y L,Qin G Y,Huo Y P,Tang J H.Proteome changes in maize embryo (Zea mays L) induced by ion beam implantation treatments.Plasma Science and Technology,2009,11:510-514.
15)Wang C L,Cheng F F,Sun Z H,Tang J H,Wu L C,Ku L X,Chen Y H.Genetic analysis of photoperiod sensitivity in a tropical by temperate maize recombinant inbred population using molecular markers,TAG,2008,117:1129-39.
16)Li Yongliang,Tang Jihua,Qin Guangyong,Hou Yuping.Maize pollen mutation by low energy lon bean radiation,The Philippine Agricultural Scientist,2008,91(4):395-400.
17)Fu Z Y,Xie H L,Li J S,Hao Z Y,Tang J H.Genetic linkage of genes for a thermo-sensitive genic male sterility in maize,Gene & Genetics,2008,30(6):499-505.
18)Liu Z H,Tang J H,Wu L C,Tian G W,Chen S J,Wang C L,Hu Y M.Quantitative trait loci mapping for nutrient components in maize kernels under low nitrogen stress.Plant breeding,2008,127:279-285.
19)Wang Y,Yin G,Yang Q,Tang J,Lu X,Korban S S,Xu M.Identification and isolation of Mu-flanking fragments from maize.Journal Genet.Genomics,2008,35(4):207-213.
20)Wu Suowei,Yu Zhanwang,Wang Fengge,Li Weihua,Ye Chunjiang,Li Jun,Tang Jihua,Ding Junqiang,Zhao Jiuran,Wang Bin.Cloning, characterization,and transformation of the phosphoethanolamine N-methyltransferase gene (ZmPEAMT1) in maize (Zea mays L.).Molecular Biotechnology,2007,36:102-112.
21)Tang J H,Teng W T,Ma X Q,Yan J B,Meng Y J,Li J S.The genetic dissection of plant height using a set of RIL population in maize.Euphytica, 2007,155:117-124.
22)Tang J H,Ma XQ,Teng W T,Yan J B,Wu W R,Dai J R,Li J S.Detection of quantitative trait loci and heterotic loci for plant height using an immortalized F2 population in maize.Chinese Science Bulletin,2007, 52:477-483.
23)Ma X Q,Tang J H,Teng W T,Yan J B,Li J S.Epistatic interaction is an important genetic basis of grain yield and its components in maize.Molecular breeding,2007,20:41-51.
24)Lu G H,Tang J H,Ma X Q,Li J S,Dai J R.Quantitative traits loci mapping of maize yield and its components under different water treatments at flowering time.Journal of Integrative Plant biology,2006,48:1233-1243.
25)Tang J H,Fu Z Y,Hu Y M,Li J S,Sun L L,Ji H Q.Genetic analyses and mapping of a new thermo-sensitive genic male sterile gene in maize,TAG,2006,113:11-15.
26)Hu Y M,Tang J H,Yang H,Xie H L,Lu X M,Niu J H,Chen W C.Identification and mapping of Rf-I an inhibitor of the Rf5 restorer gene for Cms-C in maize (Zea mays L.).TAG,2006,113(2):357-360.
27)Li Y L,Lu D B,Wang Y Z,Chen S J,Tang J H,Lv D B.Study on the genetic diversity of popcorn inbreds and their germplasm relationship with normal corn inbreds using SSR markers.Maydica,2004,49:327-333.
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