教授
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茆海亮
发布时间:2018-05-02

 

 

基本信息


姓名:

茆海亮

出生年月:

1981.11


性别: 硕/博导:

博导


民族: 开设课程:

职称: 教授 研究方向:

作物育种学,小麦产量相关性状的基因克隆与功能鉴定


学位:

理学博士

 

联系方式

移动电话: 18071123411     

电子邮件:maohailiang@mail.hzau.edu.cn

 

个人简介

教育经历:

2000.09-2004.06, 华中农业大学,生物科学,学士

2004.09-2010.12, 华中农业大学,分子生物学硕博连读,博士,导师: 张启发

 

 

科研与学术工作经历:

 

  1. 2018.4-至今, 华中农业大学,植物科学技术学院,教授

  2. 2011.07-2017.06, 瑞典于默奥植物科学中心, 博士后

 

研究领域

小麦产量相关性状的基因克隆与功能研究,主要侧重于研究小麦籽粒大小(size)与形状(shape,长宽比)的遗传变异及调控机制。

 

 

科研项目

 

 

发明专利及获奖情况

 

 

发表的论文及著作

1.Shengyuan Sun, Lei Wang, Hailiang Mao, Lin Shao, Xianghua Li, Jinghua Xiao, Yidan Ouyang, Qifa Zhang: A G-protein pathway determines grain size in rice. Nat Commun, 2018, 9:851.

2.Hailiang Mao, Bibek Aryal, Tobias Langenecker, J?rg Hagmann, Markus Geisler, Markus Grebe: Arabidopsis BTB/POZ-domain protein-mediated PENETRATION3 trafficking and contributes disease resistance. Nat Plants, 2017, 3:854-858.

3.Hailiang Mao, Moritaka Nakamura, Corrado Viotti & Markus Grebe: A framework for Arabidopsis PEN3 outer epidermal membrane trafficking and polar tethering. Plant Physiol, 2016, 172:2245-2260.

4.Hailiang Mao, Shengyuan Sun, Jialing Yao, Chongrong Wang, Sibin Yu, Caiguo Xu, Xianghua Li, Qifa Zhang: Linking differential domain functions of the GS3 protein to natural variation of grain size in rice. Proc Natl Acad Sci USA, 2010, 107:19579-19584.

5.Jihua Ding, Qing Lu, Yidan Ouyang, Hailiang Mao, Pingbo Zhang, Jialing Yao, Caiguo Xu, Xianghua Li, Jinghua Xiao, and Qifa Zhang: A long noncoding RNA regulates photoperiod-sensitive male sterility, an essential component of hybrid rice. Proc Natl Acad Sci USA, 2012, 109:2654-2659.

6.Jihua Ding, Jianqiang Shen, Hailiang Mao, Weibo Xie, Xianghua Li, Qifa Zhang. RNA-directed DNA methylation is involved in regulating photoperiod-sensitive male sterility in rice. Mol plant, 2012, 5:1210-1216.

7.Chuchuan Fan, Yongzhong Xing, Hailiang Mao, Tingting Lu, Bin Han, Caiguo Xu, Xianghua Li, Qifa Zhang: GS3, a major QTL for grain length and weight and minor QTL for grain width and thickness in rice, encodes a putative transmembrane protein. Theor Appl Genet, 2006, 112: 1164-71. 

 

 

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