王亞平,女,1991年12月生,華東理工大學生物化學與分子生物學專業畢業,理學博士,黃山學院生命與環境科學學院講師。
基本介紹
- 畢業院校:華東理工大學
- 學位/學歷:博士
人物經歷,研究方向,主要成就,
人物經歷
2011/09-2016/06 河南科技學院植物保護專業,本科
2016/09-2019/08 華東理工大學農藥學專業,碩士
2019/09-2024/06 華東理工大學生物化學與分子生物學專業,博士
2024/07-至今 黃山學院生命與環境科學學院專職教師
研究方向
(1)環境微生物的多樣性分析
(2)生防菌資源開發利用及作用機理研究
(3)功能微生物的篩選、遺傳改造、基因調控及作用機理研究
主要成就
教研/科研項目
1.2014.09-2018.09,國家科技基礎性工作專項“中國木黴菌資源收集、全息化鑑定與多功能評價”,2014FY120900,已結題,主要參與人
2.2022.01-2025.11,上海市科技興農重點攻關項目“番茄灰霉病高效木黴菌厚垣孢子微膠囊劑生物農藥創製與套用”,2022-02-08-00-12-F01163,在研,主要參與人
代表性成果
1. Wang Y, Zhu X, Wang J, Shen C, Wang W*. Identification of Mycoparasitism-Related Genes against the Phytopathogen Botrytis cinerea via Transcriptome Analysis of Trichoderma harzianum T4. J Fungi (Basel). 2023 Mar 6;9(3):324.
2.Wang Y, Wang J, Wang W*. Identification of mycoparasitism-related genes in Trichoderma harzianum T4 active against Calletotrichum musae. Arch Microbiol. 2023 Dec 20; 206(1):29.
3.Wang Y, Wang J, Zhu X, Wang W*. Genome and transcriptome sequencing of Trichoderma harzianum T4, an important biocontrol fungus of Rhizoctonia solani, reveals genes related to mycoparasitism. Can J Microbiol. 2024 Mar 1;70(3):86-101.
4. Wang J#, Wang Y#, Lu S, Lou H, Wang X, Wang W*. The protective role of potassium in the adaptation of Pseudomonas protegens SN15-2 to hyperosmotic stress. Microbiol Res. 2024, 289: 127887.
5. Zhu X, Wang Y, Wang X, Wang W*. Exogenous Regulators Enhance the Yield and Stress Resistance of Chlamydospores of the Biocontrol Agent Trichoderma harzianum T4. J Fungi. 2022, 8, 1017.
6. Wang J, Wang Y, Lou H, Wang W*. AlgU controls environmental stress adaptation, biofilm formation, motility, pyochelin synthesis and antagonism potential in Pseudomonas protegens SN15-2. Microbiol Res. 2023 Jul; 272:127396.
7. Zhu X, Wang Y, Shen C, Zhang S, Wang W*. The participation of vacuoles and the regulation of various metabolic pathways under acid stress promote the differentiation of chlamydospore in Trichoderma harzianum T4. J. Appl. Microbiol. 2023 Sep 5;134(9): lxad203.
8. Wang J, Wang Y, Lu S, Lou H, Wang X, Wang W*. AlgU mediates hyperosmotic tolerance in Pseudomonas protegens SN15-2 by regulating membrane stability, ROS scavenging, and osmolyte synthesis. Appl Environ Microbiol. 2024, 90(8): e0059624.
