秦成,女,山西长治人,博士,主要从事作物逆境生理及分子生物学的研究。主要承担《分子生物学》、《生物专业英语》、《植物逆境生理学》等课程的教学工作。 一、教育科研经历 2010.09—2014.07 山西师范大学园艺学专业,获农学学士学位。 2014.09—2017.07 山西师范大学生态学专业,获理学硕士学位。 2017.09—2020.12 西北农林科技大学植物学专业,获理学博士学位。 二、主要学术成果 (一)近年来发表论文 [1] Qin C, Su YY, Li BS, Cheng YQ, Wei CC, Yuan S, Ahmed N, Ashraf M, Zhang LX. 2019. Acetylcholine mechanism of action to enhance tolerance to salt stress in Nicotiana benthamiana. Photosynthetica, 57:590-598 [2] Qin C, Ahanger, MA, Zhou J, Ahmed N, Wei C, Yuan S, Ashraf M, Zhang, LX. 2019. Beneficial role of Acetylcholine in chlorophyll metabolism and photosynthesis gas exchange in Nicotiana benthamiana seedlings under salinity stress. Plant Biology, 22:357-365 [3] Qin C,Ahanger, MA, Lin B, Huang ZG, Zhou J, Ahmed N, Ai SL, Mustafa NSA, Ashraf M, Zhang LX. Genetic regulation of antioxidant enzymes, cell wall biosynthesis, and hormone signaling pathways by acetylcholine to induce salt tolerance in tobacco (Nicotiana benthamiana). Phytochemistry. 181:112582.https://doi.org/10.1016/j.phytochem.2020.112582 [4] Qin C, Shen J and Ahanger MA (2022) Supplementation of nitric oxide andspermidine alleviates the nickel stressinduced damage to growth,chlorophyll metabolism, and photosynthesis by upregulating ascorbate-glutathione and glyoxalase cycle functioning in tomato.Front. Plant Sci. 13:1039480.doi: 10.3389/fpls.2022.1039480 [5] Ahanger MA, Qin C, Qi MD, Xu XD, Ahmad, P, Abd_Allah, EF, Zhang, LX. 2019. Spermine application alleviates salinity induced growth and photosynthetic inhibition in Solanum lycopersicum by modulating osmolyte and secondary metabolite accumulation and differentially regulating antioxidant metabolism. Plant Physiology and Biochemistry, 144, 1-13. [6] Begum N, Qin C, Ahanger MA, Raza S, Khan MI, Ahmed N, Zhang LX. 2019. Role of Arbuscular Mycorrhizal Fungi in Plant Growth Regulation: Implications in Abiotic Stress Tolerance. Frontiers in plant science, 10, 1068. 三、主持或参加的教研、科研项目 (一)主持的教研、科研项目 [1] 山西省应用基础研究计划项目,20210302124362,多壁碳纳米管调控绿豆耐铅能力研究,2022/01-2024/12(在研) [2] 山西省高等学校科技创新项目,2021L511,富勒烯提高番茄抗旱能力的分子机制,2021/08-2023/8(在研) (二)参与的教研、科研项目 [1] 中国科学院水利部黄土高原土壤侵蚀与旱地农业国家重点实验室开放基金,“不同年代旱地冬小麦对氮肥的响应”(A314021402-1712),起止年月为: 2021.1—2022.12(在研) [2] 山西省高等学校教学改革创新项目“基于“学习通+BOPPPS”融合模式的分子生物学课程混合式教学改革与实践”(J20221080),起止年月为:2022.6—2014.12(在研) |