• 姓名: 马丽媛
  • 职称: 副教授
  • 学位: 博士
  • 中国地质大学(武汉)
  • 环境学院

副教授 硕士生导师

曾获荣誉:2021环境学院“优秀共产党员”
2020全国大学生生命科学创新创业竞赛指导教师二等奖;
2020校级“优秀学务指导教师”;
2020校级本科毕业论文“优秀指导教师奖”;
2019校级“优秀工会工作者”。

性别:女

毕业院校:中南大学

学历:博士研究生

学位:理学博士学位

所在单位:环境学院

学科:生物科学 环境工程

Email:maly@cug.edu.cn

个人简历

马丽媛,博士,副教授,“地大学者”青年拔尖人才,硕士生导师。2017年以“地大学者”青年优秀***至中国地质大学(武汉)环境学院,在***人才期满考核中获评优秀。入选国家留学基金委高等学校青年骨干教师出国研修项目及中国科协“优秀中外青年交流计划”,担任河南省地质学会生态地质专委会副秘书长,担任系教工党支部书记及系副主任。长期从事微生物介导的元素地球化学循环、微生物功能组学及微生物生态学研究,研究载体涉及极端酸性矿山、铅锌/锑污染矿区、煤矿老窑水AMD以及喀斯特洞穴生态系统等。主持国家自然科学基金、国家重点研发计划重点专项子课题、湖北省自然科学基金等科研项目8项,担任智利南极研究所(INACH)国际项目评审专家。参与中国大学MOOC《普通生物学》课程建设,参编教材/专著2部,已授权发明专利2项。发表SCI论文50余篇,在“Bioresource Technology”“Science of The Total Environment”“Microbiology Spectrum”“Applied Microbiology and Biotechnology”等刊物上以第一作者/通讯作者发表学术论文16篇,引用次数800余次,Google Scholar H指数19。

教育与工作经历

2008/9-2012/6,中南大学,生物技术,理学学士

2012/9-2017/6,中南大学,微生物学,理学博士

2017/7-2020/6,中国地质大学(武汉),特任副教授

2020/7-   今    ,中国地质大学(武汉),副教授

研究方向

[1] 微生物与矿物相互作用[2] 重金属矿区微生物介导的地球化学过程机理

[3] 微生物生态学及功能组学  [4] 矿区土水协同修复            [5] 环境污染物的生物降解及转化

主讲课程

普通生物学、Introduction to Microbiology Lab(中加联合办学)、多组学与大数据处理

科研项目

[1] 国家自然科学基金青年科学基金项目,矿区硝酸盐依赖型锑氧化菌介导的厌氧锑氧化过程及分子机理,42007306,2021.1-2023.12,主持。

[2] 国家重点研发计划“场地土壤污染成因与治理技术”重点专项,中南有色冶炼场地土壤-地下水协同修复技术与工程示范,2019YFC1803604,2019.12-2022.12,子课题,主持。

[3] 湖北省自然科学基金项目,基于DNA-SIP技术的神农架泥炭湿地微生物固氮机理研究,2019CFB245,2019.9-2021.8,主持。

[4] 中央高校基本科研业务费专项资金杰出人才培育基金,冷水江锑矿区土壤微生物群落对锑地球化学循环的影响机制,CUG170671,2017.7-2020.6,主持。

[5] 阳泉市水利局省级水利发展资金项目,山底河流域老窖水微生物修复基础研究,2019046477,2019.9-2022.9,主持。

[6] 微生物介导的酸性矿山废水产生过程中硫化矿物颗粒间Galvanic作用,SJ-201903,2019.7-2020.11,主持。

[7] 广东省环境污染控制与修复技术重点实验室基金,锡矿山土壤微生物的分子生态网络特征及其对锑污染的响应机理研究,2018K20,2018.1-2019.12,主持。

[8] 生物冶金教育部重点实验室基金,锡矿山地下水系统微生物对锑污染的响应机理研究,MOEKLB02,2018.1-2019.12,主持。

[9] 国家自然科学基金“水圈微生物驱动地球元素循环的机制”重大研究计划,岩溶地下水系统洞穴微生物驱动的甲烷循环及其生态效应,91951208,2020.1-2023.12,排名前三,项目骨干。

[10] 中国地质调查局二级项目,鄱阳湖-洞庭湖-丹江口库区综合地质调查,DD20190263,2019.1-2021.12,项目骨干。

[11] 长江大保护中武汉市湖泊典范作用的战略研究,2018015069,2018.11-2019.12,参与。

[12] 国家自然科学基金面上项目,基于宏转录组学的浸矿微生物相互作用及其分子机理研究,31570113,2016.1-2019.12,参与。

[13] 国家自然科学基金面上项目,嗜酸微生物作用下黄铜矿多步氧化分解的协同作用机制,51774332,2018.1-2021.12,参与。

教学项目

[1] 2021本科教学改革研究立项,中加合作办学“地下水科学与工程”《基础微生物学实验》课程体系优化与实践,2021A83,2021-2023,主持。

[2] 2018本科教学工程第二批立项, 《肠道微生物:你的健康我做主》教学资源建设研究与实践,2018A61,2018-2020,主持。

[3] 2021本科教学改革研究立项,“美丽中国”课程思政研究中心建设,2021G08,2021-2023,项目骨干。

[4] 2018本科教学工程第一批立项,地下水科学与工程专业国际化办学模式探索与实践,ZL201812,2018-2020,项目骨干。

代表性论文

[1] Liyuan Ma*, Weiyi Yang, Shanshan Huang, Rui Liu, Huiying Li, Xinping Huang, Junming Xiong, Xueduan Liu. Integrative assessments on molecular taxonomy of Acidiferrobacter thiooxydans ZJ and its environmental adaptation based on mobile genetic elements [J]. Frontiers in Microbiology, 2022: 826829. (SCI, T2, IF: 5.640)

[2] Xiaocen Jia, Liyuan Ma, Jing Liu, Peng Liu, Lu Yu, Jianwei Zhou*, Wanyu Li, Weiqing Zhou, Zichao Dong. Reduction of antimony mobility from Sb-rich smelting slag by Shewanella oneidensis: Integrated biosorption and precipitation [J]. Journal of Hazardous Materials, 2021: 127385. (SCI, T2, IF: 10.588)

[3] Liyuan Ma, Xinping Huang, Hongmei Wang*, Yuan Yun, Xiaoyu Cheng, Deng Liu, Xiaolu Lu, Xuan Qiu. Microbial interactions drive distinct taxonomic and potential metabolic responses to habitats in karst cave ecosystem [J]. Microbiology Spectrum, 2021, 9(2): e01152-21. (SCI, T2, IF: 7.171)

[4] Liyuan Ma*, Shanshan Huang, Peiyi Wu, Junming Xiong, Hongmei Wang, Hehuan Liao, Xueduan Liu. The interaction of acidophiles driving community functional responses to the re-inoculated chalcopyrite bioleaching process [J]. Science of The Total Environment, 2021, 798: 149186. (SCI, T2, IF: 7.963)

[5] Xingjie Wang, Liyuan Ma*, Jiangjun Wu, Yunhua Xiao, Jiemeng Tao, Xueduan Liu. Effective bioleaching of low-grade copper ores: insights from microbial cross experiments [J]. Bioresource Technology, 2020, 308: 123273. (SCI, T1, IF: 9.642)

[6]  Liyuan Ma*, Hongmei Wang, Jiangjun Wu, Yuguang Wang, Du Zhang, Xueduan Liu. Metatranscriptomics reveals microbial adaptation and resistance to extreme environment coupling with bioleaching performance [J]. Bioresource Technology, 2019, 280: 9-17. (SCI, T1, IF: 9.642)

[7] Liyuan Ma, Jiangjun Wu, Xueduan Liu, Ling Tan, Xingjie Wang*. The detoxification potential of ferric ions for bioleaching of the chalcopyrite associated with fluoride-bearing gangue mineral [J]. Applied Microbiology and Biotechnology, 2019, 103(5): 2403-2412. (SCI, T2, IF: 4.813)

[8] Liyuan Ma, Xingjie Wang, Xueduan Liu, Shanquan Wang, Hongmei Wang*. Intensified bioleaching of chalcopyrite by communities with enriched ferrous or sulfur oxidizers [J]. Bioresource Technology, 2018, 268: 415-423. (SCI, T1, IF: 9.642)

[9] Liyuan Ma, Xingjie Wang, Xue Feng, Yili Liang, Yunhua Xiao, Xiaodong Hao, Huaqun Yin, Hongwei Liu, Xueduan Liu*. Co-culture microorganisms with different initial proportions reveal the mechanism of chalcopyrite bioleaching coupling with microbial community succession [J]. Bioresource Technology, 2017, 223: 121-130. (SCI, T1, IF: 9.642)

[10] Liyuan Ma, Xingjie Wang, Jiemeng Tao, Xue Feng, Kai Zou, Yunhua Xiao, Yili Liang, Huaqun Yin, Xueduan Liu*. Bioleaching of the mixed oxide-sulfide copper ore by artificial indigenous and exogenous microbial community [J]. Hydrometallurgy, 2017, 169: 41-46. (SCI, T2, IF: 4.156)

[11] Liyuan Ma, Xingjie Wang*, Jiemeng Tao, Xue Feng, Xueduan Liu, Wenqing Qin. Differential fluoride tolerance between sulfur- and ferrous iron-grown Acidithiobacillus ferrooxidans and its mechanism analysis [J]. Biochemical Engineering Journal, 2017, 119: 59-66. (SCI, T2, IF: 3.978)

[12] Liyuan Ma, Qian Li, Li Shen, Xue Feng, Yunhua Xiao, Jiemeng Tao, Yili Liang, Huaqun Yin, Xueduan Liu*. Insights into the fluoride-resistant regulation mechanism of Acidithiobacillus ferrooxidans ATCC 23270 based on whole genome microarrays [J]. Journal of Industrial Microbiology & Biotechnology, 2016, 43(10): 1441-1453. (SCI, T2, IF: 3.346)

[13] Liyuan Ma, Xingjie Wang, Xue Feng, Xue Guo, Qi Hu, Yunhua Xiao, Xiaodong Hao, Yili Liang, Huaqun Yin, Xueduan Liu*. Influence of biological and environmental factors on leaching efficiency during chalcopyrite bioleaching process [J]. Advanced Materials Research, 2015, 1130: 387-391.

[14] Liyuan Ma, Qian Li, Yunhua Xiao, Qingliang Wang, Huaqun Yin, Yili Liang, Guanzhou Qiu, Xueduan Liu*. Comparative study of fluoride-tolerance of five typical bioleaching microorganisms [J]. Advanced Materials Research, 2013, 825: 214-218.

[15] 黄珊珊,  马丽媛*, 王红梅, 刘学端. 极端酸性矿山环境微生物基于CRISPR系统的适应性免疫机制[J]. 微生物学报, 2020, 60(9): 1985-1998.

[16] 熊俊茗, 马丽媛*, 黄珊珊, 李相良, 王红梅. 分子生态网络揭示冶金微生物对能源底物的响应[J]. 生物工程学报, 2020, 36(12): 2674-2684.

[17] 黄珊珊, 马丽媛*, 刘学端. 基于16S rRNA测序和RT-qPCR的硫化矿物表面微生物群落组成分析[J]. Bio-Protocol, Microbiome Protocol eBook. doi: 10.21769/BioProtoc.2003690.

[18] Li Xiang, Chaoyang Liu, Deng Liu,  Liyuan Ma, Xuan Qiu, Hongmei Wang*, Xiaolu Lu*. Antimony transformation and mobilization from stibnite by an antimonite oxidizing bacterium Bosea sp. AS-1 [J]. Journal of Environmental Sciences, 2022, 111: 273-281. (SCI, T2)

[19] Mengxiaojun Wu, Hongmei Wang*, Weiqi Wang, Yuyang Song,  Liyuan Ma, Xiaolu Lu, Nian Wang, Chaoyang Liu. The impact of heavy rain event on groundwater microbial communities in Xikuangshan, Hunan Procince, P.R. China [J]. Journal of Hydrology, 2021, 125674. (SCI, T1)

[20] Hui Bai, Deng Liu*, Weili Zheng,  Liyuan Ma, Shanshan Yang, Jinpeng Cao, Xiaolu Lu, Hongmei Wang, Neha Mehta. Microbially-induced calcium carbonate precipitation by a halophilic ureolytic bacterium and its potential for remediation of heavy metal-contaminated saline environments [J]. International Biodeterioration & Biodegradation, 2021, 165: 105311. (SCI, T2)

[21] Xiaoyu Cheng#, Xiaoyan Liu#, Hongmei Wang*, Chuntian Su, Rui Zhao, Paul L. E. Bodelier, Weiqi Wang,  Liyuan Ma, Xiaolu Lu. USC γ Dominated Community Composition and Cooccurrence Network of Methanotrophs and Bacteria in Subterranean Karst Caves [J]. Microbiology Spectrum, 2021, 9(1): e00820-21. (SCI, T2)

[22] Xiaoyu Cheng, Yuan Yun, Hongmei Wang*, Liyuan Ma, Wen Tian, Baiying Man, Chaoyang Liu. Contrasting bacterial communities and their assembly processes in karst soils under different land use [J]. Science of the Total Environment, 2021, 751, 142263. (SCI, T2)

[23] Prakash C. Loni#, Mengxiaojun Wu#, Weiqi Wang, Hongmei Wang*, Liyuan Ma, Chaoyang Liu, Yuyang Song, Olli H Tuovinen. Mechanism of microbial dissolution and oxidation of antimony in stibnite under ambient conditions [J]. Journal of Hazardous Materials, 2020, 385: 121561. (SCI, T2)

[24] Xian Zhang*, Xinyu Ye, Lv Chen, Hongbo Zhao*, Qiwei Shi, Yunhua Xiao,  Liyuan Ma, Xinran Hou, Yingxin Chen, Fei Yang*. Functional role of bloom-forming cyanobacterium Planktothrix in ecologically shaping aquatic environments [J]. Science of The Total Environment, 2020, 710, 136314. (SCI, T2)

[25] Wen Tian, Xing Xiang,  Liyuan Ma, Stephanie Evers, Ruicheng Wang, Xuan Qiu, Hongmei Wang*. Rare Species Shift the Structure of Bacterial Communities Across Sphagnum Compartments in a Subalpine Peatland [J]. Frontiers in Microbiology, 2019, 10: 3138. (SCI, T2)

[26] Jiemeng Tao, Chong Qin, Xue Feng,  Liyuan Ma, Xueduan Liu, Huaqun Yin, Yili Liang, Hongwei Liu, Caoming Huang, Zhigang Zhang, Nengwen Xiao, Delong Meng*. Traits of exogenous species and indigenous community contribute to the species colonization and community succession [J]. Frontiers in Microbiology, 2018, 9: 3087.

[27] Tangjian Peng, Liyuan Ma, Xue Feng, Jiemeng Tao, Meihua Nan, Yuandong Liu, Jiaokun Li, Li Shen, Xueling Wu, Runlan Yu, Xueduan Liu, Guanzhou Qiu, Weimin Zeng*. Genomic and transcriptomic analyses reveal adaptation mechanisms of an Acidithiobacillus ferrivorans strain YL15 to alpine acid mine drainage [J]. Plos One, 2017, 12(5): e0178008.

[28] Delong Meng, Xianghua Yu*, Liyuan Ma, Jin Hu, Yili Liang, Xueduan Liu, Huaqun Yin, Hongwei Liu. Transcriptomic response of Chinese yew (Taxus chinensis) to cold stress [J]. Frontiers in Plant Science, 2017, 8: 468.

[29] Xian Zhang, Xueduan Liu, Yili Liang, Xue Guo, Yunhua Xiao,  Liyuan Ma, Bo Miao, Hongwei Liu, Deliang Peng, Wenkun Huang, Yuguang Zhang, Huaqun Yin*, Adaptive evolution of extreme acidophile Sulfobacillus thermosulfidooxidans potentially driven by horizontal gene transfer and gene loss [J]. Applied and Environmental Microbiology, 2017, 83(7): e03098-16.

[30] Jiemeng Tao, Xueduan Liu, Yili Liang, Jiaojiao Niu, Yunhua Xiao, Yabing Gu,  Liyuan Ma, Delong Meng, Yuguang Zhang, Wenkun Huang, Deliang Peng, Huaqun Yin*, Maize growth responses to soil microbes and soil properties after fertilization with different green manures [J]. Applied Microbiology and Biotechnology, 2017: 101:1289-1299.

[31] Xian Zhang, Xueduan Liu, Yili Liang, Yunhua Xiao, Liyuan Ma, Xue Guo, Bo Miao, Hongwei Liu, Deliang Peng, Wenkun Huang, Huaqun Yin*. Comparative genomics unravels the functional roles of co-occurring acidophilic bacteria in bioleaching heaps [J]. Frontiers in Microbiology, 2017, 8:790.

[32] 曹静, 程晓钰, 曾智霖, 杨梓琪, 刘晓燕, 王红梅,  马丽媛, 鲁小璐, 苏春田, 黄奇波. 广西桂林新村屯洞穴细菌群落的生境特异性及网络分析. 科学通报, 2021, 66: 4003-4016.

[33] 张蔚, 胡小丽, 邱轩, 刘邓, 冯亮,  马丽媛, 胡婧, 王红梅*. 山东胜利油田沾3油藏微生物组特征. 科学通报, 2019, 64: 1930-1942.

指导学生及获奖

博士生:贾晓岑(2019级,联合指导)

硕士生:吴将军(2018级)、陈秀云(2019级)、黄鑫平(2020级)、高伟康(2020级)、邓晓宇(2020级,联合指导)、熊俊茗(2021级)、蒋沙沙(2021级)

本科生:李依然(2018级 高徒计划 联合指导)、杨伟艺(2018级 未来科学家计划)、高雨萌(2019级 李四光计划)

学生获奖情况:

吴将军 2019年硕士研究生国家奖学金

吴将军 科技论文报告会校级二等奖、院级一等奖

黄珊珊 2020届校级优秀本科毕业论文

黄珊珊、熊俊茗、李辉莹、李依然 第五届全国大学生生命科学创新创业大赛二等奖

吴思宇、李宜伦、吴将军 首届实验室安全微视频大赛三等奖

李宜伦 Bio-protocol生物实验短视频大赛二等奖(最热门作品)

2021年国家级大学生创新创业训练项目 曾为一、高雨萌、李晶晶

2020年校级英才工程--“科学家计划”暨争先奖学金立项 冷水江锡矿山地下水中微生物对锑的响应机理研究  杨伟艺、仇静旋、李依然

2019年大学生基础科研训练计划 微塑料对水样中重金属污染物的影响及其毒理研究 曾为一、吴思宇、李宜伦、高雨萌、陈秀云

2018年国家级大学生创新创业训练计划 李相良、任云锋、熊俊茗

期刊审稿

Bioresource Technology, Journal of Hazardous Materials, Frontiers in Microbiology, Journal of Industrial Microbiology & Biotechnology, Scientific Reports, Journal of Environmental Chemical Engineering, Geomicrobiology Journal, Journal of Central South University,  International Journal of Minerals, Metallurgy and Materials, 微生物学报, 地质科技通报, 安全与环境工程学报等 

联系方式

单位:中国地质大学(武汉)环境学院 

地址:湖北省武汉市东湖新技术开发区锦程街68号 环境学院614室

E-mail: maly@cug.edu.cn QQ: 810972268