问鼎娱乐

刘晓姣

发布时间: 2026-03-30 19:53:25 已阅读:

刘晓姣

女,博士,副教授,硕士研究生导师研究领域:根际土壤微生态;功能微生物开发与应用;植物病害生物防治;桑树青枯病;植物与微生物互作讲授课程:《微生物学与发酵工程》《生态学》《生物统计与R语言》

招生方向:生物学-微生物学方向、生物与医药-生物工程方向

一、教育及工作经历

教育经历

2009.09-2013.06 西南大学植物保护问鼎                      本科

2013.09-2018.12 西南大学植物保护问鼎                                      博士

2016.09-2018.03 荷兰皇家科问鼎 生态研究所(NIOO-KNAW)   联合培养博士

2019.04-2021.08 西南大学植物保护问鼎                                       博士后

工作经历

2021.09-2023.06 问鼎娱乐-问鼎官网               讲师

2023.07-至今 问鼎娱乐-问鼎官网                    副教授

二、代表性科研成果

1. 代表性科研项目

(1)国家自然科学基金(青年项目):降解4-羟基苯甲酸关键菌群抑制青枯病发生的作用机制研究(32***00),2022.1-2024.12

(2)重庆市自然科学基金(面上项目):桑青枯抗病品种根际关键菌群的合成及其抑制机制研究(CSTB20***35),2025.7-2028.6

(3)中央高校基本科研业务费项目(科研启动项目):桑青枯抗性品种的根际微生物组成与抗病相关性研究(SWU-KQ***82),2023.1-2025.12

(4)重庆市自然科学基金(博士后项目):抑制青枯病发生的土壤中响应4-羟基苯甲酸累积的微生物组学研究(cstc20***27),2020.9-2022.8

2. 代表性科研论文

(1)Wen J., Jiang Z., Li N., Jiao W., Qiu C., Liu X.*, Xie J.* Characterization of Ralstonia pseudosolanacearum MSG-1 and its pathogenic interaction with mulberry. Physiologia Plantarum, 2025. 177(6): e70702.

(2)Jiao W., Wen J., Li N., Ou T., Qiu C., Ji Y., Lin K., Liu X.*, Xie J.* The biocontrol potentials of rhizospheric bacterium Bacillus velezensis K0T24 against mulberry bacterial wilt disease. Archives of Microbiology, 2024. 206: 213.

(3)Liu X., Hannula S.E., Li X., Hundscheid M., Gunnewiek P., Clocchiatti A., Ding W.*, de Boer W.* Decomposing cover crops modify root-associated microbiome composition and disease tolerance of cash crop seedlings. Soil Biology and Biochemistry, 2021, 160: 108343.

(4)Liu X., Jiang Q., Hu X., Zhang S., Liu Y., Huang W., Ding W.* Soil microbial carbon metabolism reveals a disease suppression pattern in continuous ginger mono-cropping fields. Applied Soil Ecology, 2019. 144: 165-169.

(5)Liu X.#, Liu L.#, Gong J., Zhang L., Jiang Q., Huang K., Ding W.* Soil conditions on bacterial wilt disease affect bacterial and fungal assemblage in the rhizosphere. AMB Express, 2022. 12(1): 110.

(6)Liu X., Zhang S., Jiang Q., Bai Y., Shen G., Li S., Ding W.* Using community analysis to explore bacterial indicators for disease suppression of tobacco bacterial wilt. Scientific Reports, 2016. 6: 36773.

(7)Zhang S., Liu X., Zhou L., Deng L., Zhao W., Liu Y., Ding W.* Alleviating soil acidification could increase disease suppression of bacterial wilt by recruiting potentially beneficial rhizobacteria. Microbiology Spectrum, 2022. 10(2): e0233321.

(8)Li X., Garbeva P., Liu X., Gunnewiek P., Clocchiatti A., Hundscheid M., Wang X., de Boer W.* Volatile-mediated antagonism of soil bacterial communities against fungi. Environmental Microbiology, 2020. 22(3): 1025-1035.

(9)Zhang S., Jiang Q., Liu X., Liu L., Ding W.* Plant growth promoting rhizobacteria alleviate aluminum toxicity and ginger bacterial wilt in acidic continuous cropping soil. Frontiers in Microbiology, 2020. 11: 569512.

(10)Shen G., Zhang S., Liu X., Jiang Q., Ding W.* Soil acidification amendments change the rhizosphere bacterial community of tobacco in a bacterial wilt affected field. Applied Microbiology and Biotechnology, 2018. 102(22): 9781-9791.

三、联系方式

邮箱[email protected]