2025-09-24 17:20:36 浏览数:0
个人简历:
基本信息:
职称、职务:讲师
联系方式:mly@qau.edu.cn
办公地点:资源与环境学院 化学楼313A
研究方向:
重金属-抗生素复合污染土壤修复;抗生素抗性基因水平转移;复合功能菌群构建
学习工作经历:
2024.10-至今 青岛农业大学,资源与环境学院,讲师
2022.09-2024.09 山东大学,生命科学学院,博士后
2017.09-2022.06 浙江大学,环境与资源学院,获农学博士学位
2013.09-2017.06 山东农业大学,资源与环境学院, 获农学学士学位
教学情况:
土壤肥料学、地质地貌学
科研项目:
1.国家自然科学基金青年基金项目:复合功能菌群对镉-土霉素复合污染土壤上番茄-东南景天间作效应的调控作用机制,2024-2026,30万,主持。
2. 山东省自然科学基金青年项目:内生菌对蔬菜作物与东南景天间作效应影响及机理研究,2024-2026,15万,主持。
3. 青岛市博士后资助项目,内生菌调控番茄与东南景天间作效应机理研究,2023-2024,5万元,主持。
4. 自然资源部渤海生态预警与保护修复重点实验室开放基金项目,滨海湿地芦苇的环境胁迫耐受性及其适应性进化机制,2024-2025,3万元,主持。
科研成果:
1.Ma LY, Liu YR, Sahito ZA, et al.. Intraspecific variation in tomato: Impact on production quality and cadmium phytoremediation efficiency in intercropping systems with hyperaccumulating plant, Ecotoxicology and Environmental Safety, 2024.116715.
2.Ma LY, Huang LK, Liu QZ, et al.. Positive effects of applying endophytic bacteria in eggplant-Sedum intercropping system on Cd phytoremediation and vegetable production in cadmium polluted greenhouse, Journal of Environmental Sciences, 2022, 115: 383-391.
3.Ma LY, Liu YR, Wu YJ, et al.. The effects and health risk assessment of cauliflower co-cropping with Sedum alfredii in cadmium contaminated vegetable field, Environmental Pollution, 2021, 268: 115869.
4.Ma LY, Wu YJ, Wang Q, et al.. The endophytic bacterium relieved healthy risk of pakchoi intercropped with hyperaccumulator in the cadmium polluted greenhouse vegetable field, Environmental Pollution, 2020, 264: 114796.
5.俞朝, 王芸, 马璐瑶*, 等. 自然复合污染条件下小白菜对镉汞吸收的品种差异研究, 中国农学通报, 2024, 40(16):124-130.
6.冯英, 马璐瑶, 王琼, 等. 我国土壤-蔬菜作物系统重金属污染及其安全生产综合农艺调控技术, 农业环境科学学报, 2018, 37(11): 2359-2370.
7.Wu YJ, Ma LY, Liu QZ, et al.. The plant-growth promoting bacteria promote cadmium uptake by inducing a hormonal crosstalk and lateral root formation in a hyperaccumulator plant Sedum alfredii, Journal of Hazardous Materials, 2020, 395:122661.
8.Wu YJ, Ma LY, Liu QZ, et al.. Pseudomonas fluorescens promote photosynthesis, carbon fixation and cadmium phytoremediation of hyperaccumulator Sedum alfredii. Science of the Total Environment, 2020, 726: 138554.
9.Wu YJ, Ma LY, Liu QZ, et al.. Pseudomonas fluorescens accelerates a reverse and long-distance transport of cadmium and sucrose in the hyperaccumulator plant Sedum alfredii, Chemosphere, 2020, 256:127156.
10.Wu YJ, Ma LY, Zhang XC, et al.. A hyperaccumulator plant Sedum alfredii recruits Cd/Zn-tolerant but not Pb-tolerant endospheric bacterial communities from its rhizospheric soil, Plant and Soil, 2020, 455:257-270.
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责任编辑:史越清