副教授
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蔡青
作者:审核:编辑:发布时间:2018-09-26

 

208CF

基本信息


姓名:

蔡青

出生年月:

1991.10


性别: 硕/博导: 硕导

民族: 汉族 开设课程:

昆虫病理学、植物杀虫抗病微生物


职称: 副研究员 研究方向:

农业害虫生物防治


学位: 理学博士

 

 

联系方式


电子邮件:caiqing@mail.hzau.edu.cn

办公地址:农业微生物重点实验室B座

 

 

个人简介

蔡青,男,1991年10月出生,博士,副研究员。2018年6月毕业于浙江大学微生物专业并取得理学博士学位。主要研究方向:1.农业害虫的生物防治;2.生防真菌的翻译后修饰;3.生防真菌与昆虫之间的互作等。相关研究成果发表于Environmental Microbiology、mSystems、Cellular Microbiology、Pest Management ScienceApplied Microbiology and Biotechnology等杂志上。

 

教育经历

2009.09-2013.06 郑州大学 生物技术专业 理学学士

2013.09-2018.06 浙江大学 微生物学专业 理学博士

 

工作经历

2018.08至今 新葡萄官网登录入口 新葡萄官网登录入口 副研究员

 

 

科研项目


1)重要生防真菌球孢白僵菌的乙酰化功能解析(2662018QD063),新葡萄官网登录入口自主创新基金,2018.09-2021.09,20万,主持

2)球孢白僵菌组蛋白乙酰化修饰酶类的功能解析(ZRMS2019000471),湖北省自然科学基金,2019.01-2020.12,5万,主持

3)球孢白僵菌特有疑似分泌性假定蛋白基因中高生防潜能因子的发掘(31772218),国家自然科学基金面上项目,2018.01-2021.12,60万,参与

4)主要草原区有害昆虫多样性调查(2019FY100400),科技部基础性工作专项, 2020.01-2024.12,18万元,参与

 

 

 

发表的论文及著作

  1. Cai Q*, Tian L, Xie JT, Huang QY, Feng MG, Keyhani NO. A fungal sirtuin modulates development and virulence in the insect pathogen, Beauveria bassiana. Environmental Microbiology, 2021, doi: 10.1111/1462-2920.15497.

  2. Shao W#, Cai Q#, Tong SM, Ying SH, Feng MG*. Nuclear Ssr4 Is Required for the In Vitro and In Vivo Asexual Cycles and Global Gene Activity of Beauveria bassiana. mSystems. 2020, 5(2):e00677-19.

  3. Cai Q, Wang JJ, Fu B, Ying SH, Feng MG*. Gcn5-dependent histone H3 acetylation and gene activity is required for the asexual development and virulence of Beauveria bassiana. Environmental Microbiology, 2018, 20(4):14841497.

  4. Cai Q#, Wang ZK#, Shao W, Ying SH, Feng MG*. Essential role of Rpd3-dependent lysine modification in the growth, development and virulence of Beauveria bassiana. Environmental Microbiology, 2018, 20(4):15901606.

  5. Cai Q, Tong SM, Shao W, Ying SH, Feng MG*. Pleiotropic effects of the histone deacetylase Hos2 linked to H4-K16 deacetylation, H3-K56 acetylation and H2A-S129 phosphorylation in Beauveria bassiana. Cellular Microbiology, 2018, 15: e12839.

  6. Cai Q#, Wang JJ#, Shao W, Ying SH, Feng MG*. Rtt109-dependent histone H3K56 acetylation and gene activity are essential for the biological control potential of Beauveria bassiana. Pest Management Science, 2018, 74: 2626–2635.

  7. Wang ZK#, Cai Q#, Tong SM, Ying SH, Feng MG*. C-terminal Ser/Thr residues are vital for the regulatory role of Ste7 in the asexual cycle and virulence of Beauveria bassiana. Applied Microbiology and Biotechnology, 2018, 102(16):69736986.

  8. Wang JJ#, Cai Q#, Qiu L, Ying SH, Feng MG*. The histone acetyltransferase Mst2 sustains the biological control potential of a fungal insect pathogen through transcriptional regulation. Applied Microbiology and Biotechnology, 2017, 102(3):1343–1355.

  9. Wang JJ#, Cai Q#, Qiu L, Ying SH, Feng MG*. Additive roles of two TPS genes in trehalose synthesis, conidiation, multiple stress responses and host infection of a fungal insect pathogen. Applied Microbiology and Biotechnology, 2017, 101(9):3637–3651.

  10. Wang ZK, Cai Q, Liu J, Ying SH, Feng MG*. Global insight into lysine acetylation events and their links to biological aspects in Beauveria bassiana, a fungal insect pathogen. Scientific Reports, 2017, 7:44360.

  11. Wang JJ, Qiu L, Cai Q, Ying SH, Feng MG*. Transcriptional control of fungal cell cycle and cellular events by Fkh2, a forkhead transcription factor in an insect pathogen. Scientific Reports, 2015, 5:10108.

  12. Wang JJ, Qiu L, Cai Q, Ying SH, Feng MG*. Three α-1, 2-mannosyltransferases contribute differentially to conidiation, cell wall integrity, multistress tolerance and virulence of Beauveria bassiana. Fungal Genetics and Biology, 2014, 70:110.

  13. Tong SM, Wang DY, Cai Q, Ying SH, Feng MG*. Opposite Nuclear Dynamics of Two FRH-Dominated Frequency Proteins Orchestrate Non-Rhythmic Conidiation in Beauveria bassiana. Cells, 2020, 9(3):626.

  14. Shao W, Cai Q, Tong SM, Ying SH, Feng MG*. Rei1-like protein regulates nutritional metabolism and transport required for the asexual cycle in vitro and in vivo of a fungal insect pathogen. Environmental Microbiology, 2019, 21(8):2772-2786.


 

 

 

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