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翁文凤

发布日期:2023-10-30    作者:     来源:    点击:



职称/职务:副教授/科研科工作人员

学位/学历:博士/研究生

政治面貌:中共党员

邮箱:1332721469@qq.com

个人简介:

20247月博士毕业于贵州大学农学院,研究方向为种质资源创新、基因挖掘及抗逆机制解析。

主讲课程

《植物配置与造景》、《园林艺术与设计》

研究方向

种质资源创新、基因挖掘及抗逆机制解析

代表性研究论文

1.翁文凤等. 过表达FtbZIP5提高苦荞毛状根黄酮积累及其耐盐性[J]. 作物杂志, 2021(04): 1-9.

2.Wenfeng Weng, et al. FtbZIP12 Positively Regulates Responses to Osmotic Stress in Tartary Buckwheat[J]. International Journal of Molecular Sciences, 2022, 23(21).

3.Wenfeng Weng, et al. Adlay, an Ancient Functional Plant with Nutritional Quality, Improves Human Health [J]. Frontiers in Nutrition, 2022, 9: 1019375.

4.Wenfeng Weng, et al. Roles of Arbuscular mycorrhizal Fungi as a Biocontrol Agent in the Control of Plant Diseases[J]. Microorganisms, 2022, 10(7).

5.Wenfeng Weng, et al. Specific Gibberellin 2-Oxidase 3 (SbGA2ox3) Mutants Promote Yield and Stress Tolerance in Sorghum bicolor[J]. Agronomy, 2023, 13(3).

6.Jingjun Ruan, Wenfeng Weng, et al. Coix lacryma-jobi chymotrypsin inhibitor displays antifungal activity[J]. Pesticide Biochemistry and Physiology, 2019, 160.

7.Wenfeng Weng, et al. Novel mutations in acetolactate synthase confer high levels of resistance to tribenuron-methyl in Fagopyrum tataricum. Pesticide Biochemistry and Physiology2024.

8.Wenfeng Weng, et al. Enhanced reactive oxygen species and metabolism are involved in the reduction of tribenuron-methyl residues in tartary buckwheat mutants. Industrial Crops & Products, 2025.

科研项目

国家地区科学基金项目(32160669,参与)