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李明军

来源:   作者:   发布日期:2021-12-14     浏览次数:

     

1. 基本信息

李明军,男,甘肃泾川人,1981年 3月生。博士,教授,博士生导师。2004年在维多利亚vic115优惠大厅本科毕业,2009年维多利亚vic115优惠大厅博士毕业,2010年 3 月至 2012年 3月在美国康奈尔大学进行博士后研究工作。2012年5月至今在维多利亚vic115优惠大厅从事教学科研工作。

2. 研究方向

研究方向为果实品质生物学。主要工作是从栽培生理、分子和遗传角度解析果实糖酸、Vc等内在品质的形成与调控机制,进行相关分子育种和栽培技术研发。重点研究内容包括:1)苹果糖酸、Vc含量的合成调控的生理与分子机制及遗传改良;2)旱区苹果园管理与果实品质形成的关系及相关技术研发。

3. 开设课程

本科生“果树栽培学总论”、“落叶果树栽培学”课程以及 “果树冬季修剪”、“园艺生产实习与调研”等实践实习的教学,研究生“果树生理与栽培学”“果树生理生态学”等课程的教学。

4.主要学术成果

(1)主持项目情况

近年来,先后主持了国家自然科学基金青年基金1项、面上项目3项,国家重点研发计划课题和子课题各1项、教育部‘新世纪人才支持计划’、陕西省青年科技新星、陕西省杰出青年科学基金、陕西省重点研发计划、陕西省果业专项等项目或课题10多项。

(2)获奖情况

2011年入选全国百篇优秀博士学位论文提名奖和陕西省优秀博士学位论文奖; 2012年入选教育部“新世纪优秀人才支持计划”;2013年入选陕西省青年科技新星;2015年荣获陕西省青年科技奖,入选陕西省青年科技标兵;2019年入选维多利亚vic115优惠大厅青年卓越人才支持计划;2020年获批陕西省杰出青年科学基金;2020年入选教育部人才计划。

(3)论著和成果(*通讯作者,#第一作者)

在国内外期刊及会议发表科技论文70余篇,其中以第一作者及通讯作者发表SCI索引论文30余篇。近五年,在PNAS, Plant Biotech J, Horticulture Research、 J EXP BOT等期刊发表论文多篇。主要论文如下:

Lingcheng Zhu , Baiyun Li, Limin Wu, Huixia Li, Zhengyang Wang, Xiaoyu Wei, Baiquan Ma, Yanfeng Zhang, Fengwang Ma*, Yong-Ling Ruan*, Mingjun Li*. MdERDL6-mediated glucose efflux to the cytosol promotes sugar accumulation in the vacuole through upregulating TSTs in apple and tomato. Proceedings of the National Academy of Sciences of the United States of America. 2020,

Xiaocheng Tian, Lingcheng Zhu, Nanxiang Yang, Jianyu Song, Haiyan Zhao,Jing Zhang, Fengwang Ma, Mingjun Li*. Proteomics and metabolomics reveal the regulatory pathways of ripening and quality in post-harvest kiwifruit. Journal of Agricultural and Food Chemistry. 2020 Accepted

Zhengyang Wang, Xiaoyu Wei, Jingjing Yang, Huixia Li, Baiquan Ma, Kaikai Zhang, Yanfeng Zhang, Lailiang Cheng, Fengwang Ma*, Mingjun Li*. Heterologous expression of the apple hexose transporter MdHT2.2 altered sugar concentration with increasing cell wall invertase activity in tomato fruit. Plant Biotechnology Journal. 2020,18: 2: ‏ 540-552

Zhengyang Wang, Yonghui Liang, Yuru Jin, Xiaolei Tong, Xiaoyu Wei, Fengwang Ma, Baiquan Ma1, Mingjun Li1*. Ectopic expression of apple hexose transporter MdHT2.2 reduced the salt tolerance of tomato seedlings with decreased ROS-scavenging ability. Plant Physiology and Biochemistry, 2020, 156: ‏504-513,

Haiyan Zhao, Simin Sun, Lihua Zhang, Jingjing Yang, Zhengyang Wang, Fengwang Ma*, Mingjun Li*..Carbohydrate metabolism and transport in apple roots under nitrogen deficiency. Plant Physiology and Biochemistry, 2020, 15: ‏455-463

Jingjing Yang,Ruiling Zhan,  Yuru Jin, Dongxia Li, Zhengyang Wang, Guiyang An, Mingjun Li*. Functional analysis of the promoter of the MdFRK2 gene encoding a high affinity fructokinase in apple (malus x domestica) . SCIENTIA HORTICULTURAE, 2020, 265: 109088

Jingjing Yang, Jing Zhang, Chuang Li, Zhao Zhang, Fengwang Ma, Mingjun Li *. Response of sugar metabolism in apple leaves subjected to short-term drought stress. Plant Physiology and Biochemistry, 2019, 141:164-171

JingjIng Yang #, Chuanxia Zhang#,Zhengyang Wang , Simin Sun, Ruilin Zhan, Yuyue Zhao, Baiquan Ma , Fengwang Ma,Mingjun Li * Melatonin-mediated sugar accumulation and growth inhibition in apple plants involves down-regulation of fructokinase 2 expression and activity. Front. Plant Sci. 2019, 10:150.  

Jingjing Yang, Lingcheng Zhu, Weifang Cui, Chen Zhang, Dongxia Li, Baiquan Ma, Lailiang Cheng, Yong-Ling Ruan, Fengwang Ma, Mingjun Li *. Increasing activity of MdFRK2, a high affinity fructokinase, leads to upregulation of sorbitol metabolism and downregulation of sucrose metabolism in apple leaves. Hortic Res 5:62 2018

Mingjun Li, Pengmin Li, Fengwang Ma, Lailiang Cheng *. Sugar metabolism and accumulation in the fruit of transgenic apple trees with decreased sorbitol synthesis. Hortic Res 5:60. 2018

Chunxia Zhang*, Sen Meng, Mingjun Li*, Zhong Zhao. Transcriptomic insight into nitrogen uptake and metabolism of Populus simonii in response to drought and low nitrogen stresses. Tree Physiology. tpy085, https://doi.org/10.1093/treephys/tpy085 2018

Xiao-Lei Tong #, Zheng-Yang Wang #, Bai-quan Ma, Chun-xia Zhang, Lingcheng Zhu, Fengwang Ma, Ming-Jun Li *. Structure and expression analysis of the sucrose synthase gene family in apple.  Journal of Integrative Agriculture  16(0): 60345-7, 2018

Ai-di Zhang, Wen-qiu Wang, Yang Tong, Ming-jun Li, Donald Grierson, Ian B. Ferguson, Kun-song Chen, and Xue-ren Yin*. Transcriptome analysis identifies a zinc finger protein regulating starch degradation in kiwifruit. Plant Physiology: 18004271-4272018. 2018

Duan Naibin, Bai YAng, Sun H, Wang N, Ma Y, Li Mingjun, ……., Cheng L, Fei Z*, Chen X*. Genome re-sequencing reveals the history of apple and supports a two-stage model for fruit enlargement. Nature Communications, 8(1):249. 2017

Cheng Chen, Yulin Yuan, Chen Zhang, Huixia Li, Fengwang Ma, Mingjun Li,*.  Sucrose phloem unloading follows an apoplastic pathway with high sucrose synthase in actinidia fruit.  Plant Science,  2 , 40-0, 2017

Mingjun Li *, D. Li, F. Feng, S. Zhang, Fengwang Ma and Lailiang Cheng *. Proteomic analysis reveals dynamic regulation of fruit development and sugar and acid accumulation in apple.  Journal of Experimental Botany , 67: 14–17 2016

5. 联系方式

通讯地址:陕西杨凌邰城路3号维多利亚vic115优惠大厅

E-mail: limingjun@nwsuaf.edu.cn

团队网个人链接:http://sbft.nwsuaf.edu.cn/szdw/fgjzcjs/29561.html

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