水生生物资源评估及恢复研究室简介

发布者:生命科学学院发布时间:2024-08-07浏览次数:195

一、研究方向

团队现有工作人员4人,其中教授1人,本团队主要关注于生物多样性、各类水生生物在水域生态系统中的功能、水体污染和富营养化的生物监测及控制、受损生态系统的生态恢复、入侵种生态风险评价,以及在气候变化背景下水域生态系统的功能变化。

团队成员先后承担国家自然科学基金、科技部、湖北省自然科学基金等多个项目,团队已在Reviews in Aquaculture, Reviews in Fish Biology and Fisheries, Water Research, Science of the Total Environment, Forest Ecology and Management, Chemosphere, Environmental Science and Pollution Research等高水平杂志发表论文近40篇。获得专利2项。

二、团队成员

李今,博士,教授,硕士生导师。学科带头人,研究领域水污染控制及水生态修复。承担了国家重大科技专项、湖北省科技攻关重大项目、湖北省教育厅重点项目以及黄石市科技攻关项目等。获得湖北省技术发明奖(排名第1)、黄石市科学技术发明奖一等奖(排名第1)等奖励。

张云,博士,讲师,硕士生导师。研究领域藻类生物多样与生态系统功能关系研究,重点关注环境变化对藻类群落构建,多样性与生态系统功能的关系的影响。主持了国家自然科学基金青年项目和中国博士后科学基金面上项目。

熊文,博士,讲师,硕士生导师。研究领域水生生物多样性保护及可持续利用,重点关注外来物种入侵、气候变化、人为干扰等因素对水生生物多样性的影响。主持国家科技部第二青藏高原综合科学考察项目,省部级重点实验室开放课题。

徐坤,博士,讲师,硕士生导师。湖北省科协青年科技人才。研究领域为气候变化对森林、草地、湖泊及城市生态系统功能、多样性和稳定性的影响。

三、研究内容

团队重点研究集中在以下几个方面:

1)水污染控制及水生态修复

湖泊、水库、河流水污染控制与水生态修复;企业废水、生活污水治理技术与工艺;生态理论的科学普及、生态技术的推广。

2)水生生物多样性保护

中国水生生物多样性分布格局形成原因及影响因素;外来物种入侵、全球气候变化和人类干扰对水生生物多样性影响;水生生物对于环境变化的适应及进化;藻类群落在时间和空间上的群落构建机制;环境变化对藻类多样性与水生态系统功能关系的影响。

3)森林生态、全球变化对森林生长、死亡、动态的影响

以北方森林为对象,研究全球变化对树木生长和碳汇储量变化的影响;以北方森林为对象,研制全球变化对森林死亡和群落动态变化的影响机制;以城市森林为对象,致力于提升无人机和遥感卫星数据在碳排放和碳中和模型的可用性。

四、承担科研项目

1)国家水体污染控制与治理科技重大专项,典型南方城市景观湖泊水质改善及水生植被构建技术子子课题,2008-2015

2)湖泊污染控制与水体修复关键技术研究(湖北省科学技术厅,2006

3)水环境健康评价的生物膜技术研究(湖北省教育厅,2007-2009

4)水体中有毒藻类及藻毒素生物降解研究(湖北省教育厅,2002

5)国家自然科学基金青年基金,“基于功能性状和营养水平研究高原湖泊附着藻类对水-沉积物间磷循环的影响”,2020-2023

6)中国博士后科学基金委员会面上项目,“高原湖泊附着藻建群过程及其对底泥-水环境氮磷的影响”。2019-2021

7)科技部第二次青藏高原综合科学考察子课题《雅鲁藏布江下游外来鱼类入侵的调查研究》

8)湖北省青年科技人才晨光托举工程项目,2023

9)黄石市大冶市茗山乡村庄环境综合整治研究;湖北省教育厅,高校服务乡村振兴科技支撑行动计划

10)国家黑臭水体整治示范城市申报技术服务;黄石市人民政府

11)黄石市黑臭水体整治效果评估;黄石市排水管理处

12)黄石市建成区黑臭水体整治督办工作服务项目;黄石市城市管理委员会

13)黄石市建成区黑臭水体调查;黄石市住房与城乡建设局

五、学术论文

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 [3] Wu M*, Fu S*, Jin W, Xiang WZ, Zhang WC, Chen L. Transcriptome comparison of physiological divergence between two ecotypes of Portulaca oleracea. Biologia plantarum, 2021, 65:212-220.

 [4] Fu S, Lu Y, Zhang X, Yang G, Chao D, Wang Z, Shi M, Chen J, Chao D, Li R, Ma J, Xia J. The ABC transporter ABCG36 is required for cadmium tolerance in rice, Journal of Experimental Botany, 2019, 70(20): 5909-5918.

 [5] Yang G*, Fu S*, Huang J, Li L, Long Y, Wei Q, Wang Z, Chen Z, Xia J. The tonoplast-localized transporter OsABCC9 is involved in cadmium tolerance and accumulation in rice, Plant Science, 2021, 307: 110894.

 [6] Fu S*, Fu L*; Zhang X; Huang J, Yang G, Wang Z, Liu Y, Zhang G, Wu D, Xia J. OsC2DP, a novel C2 domain-containing protein is required for salt tolerance in rice, Plant & Cell Physiology, 2019, 60(10): 2220-2230.

 [7] Fu S*, Huang J*, Chen Z, Xia J. C2 domain plays critical roles in localization of novel C2 domain-containing protein OsC2DP, Plant Signaling & Behavior, 2019, 14(11): 1667208.

 [8] Chen L, Wu M, Jin W, Lei T, Li Y, Wu X, Fu S. Gene identification and transcriptome analysis of cadmium stress in tomato, Frontiers in Sustainable Food Systems, 2023, 7.

 [9] Pingan G, Bo   W, Yancheng Z, Jie C, Wenlue L, Lijun L, Dingxiang P. Transcriptome analyses provide insights into the effect of temperature change on fiber quality of ramie, Industrial Crops and Products, 2020, 152.

 [10] Pingan G, Yancheng Z, Yanyan H, Lijun L, Bo W, Dingxiang P. Isolation and functional characterization of SUCROSE SYNTHASE 1 and SUCROSE TRANSPORTER 2 promoters from ramie (Boehmeria nivea   L. Gaudich), Gene, 2019, 685: 114-124.

 [11] Pingan G, Yancheng Z, Jie   C, Bo W, Lijun L, Enying F, Dingxiang P. Isolation of two novel   promoters from ramie (Boehmeria nivea L. Gaudich) and its functional   characterization in Arabidopsis thaliana, Plant Cell, Tissue and Organ Culture (PCTOC), 2019, 136: 467-478.

 [12] Pingan G, Yancheng Z, Dingxiang P, Lijun L, Lunjin D, Cong C, Bo W. Identification and expression characterization of the Phloem Protein 2 (PP2) genes in ramie (Boehmeria nivea L. Gaudich), Scientific Reports, 2018, 8.

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六、发明专利

1)李今, 彭文斌, 华江环, 吕田, 惠阳. 一种分散点源污水处理悬浮装置,发明专利号:ZL201310156775.3

2)李今, 华江环, 吕田, 吉芬芬, 李青原. 一种沉水植物种植装置,发明专利号:ZL 201410202302.7


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