生态学

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张秀玮研究生/博士

学科/专业:生态学

职称/职务:副教授

联系/方式:电话:15267263163, Email:xiuwei8689@163.com

学习经历:

2009年毕业于聊城大学,获农学学士学位

2012年毕业于山东农业大学,获农学硕士学位

2018年毕业于中国科学院沈阳应用生态研究所,获理学博士学位


工作经历:

2018年7月至2022年12月,BET体育365投注官网 beat365官方最新版 讲师

2022年12月至今, BET体育365投注官网 beat365官方最新版 讲师


研究方向:

土壤碳循环、稳定碳同位素示踪、植物物种多样性。


主要科研项目:

1) 植物多样性对根际土壤有机质分解激发效应的影响(32101385),国家自然科学基金青年项目,2022.01至2024.12,30万元,在研,主持;

2) 活性和稳定碳库激发效应的长期动态及与土壤碳周转多过程的关系(LQ20D030001),浙江省自然科学基金探索项目Q(LQ20D030001),2020.01至2022.12,9万元,在研,主持;

3) 土壤新老碳库分解对土壤扰动的响应(2018PY047),BET体育365投注官网,校立项目,2018.10至2020.09,1万元,结题,主持;

4) 亲体效应在种群和群落水平的作用及其表观遗传机制(32071527),国家自然科学基金面上项目,2021.01至2024.12,58万,在研,参与;

5) 植物多样性对有机污染土壤修复的影响机制(LTZ20C030001),浙江省自然科学基金重点项目,2020.01至2023.12,30万元,在研,参与。


近期代表性论文及成果:

1Zhang, X.*, Zhu, B.*, Yu, F., Wang, P., Cheng, W., 2021. Long-term bare fallow soil reveals the temperature sensitivity of priming effect of the relatively stabilized soil organic matter. Plant and Soil doi:10.21203/rs.3.rs-836713/v1.

2)Zhang, X.*, Zhu, B.*, Yu, F., Cheng, W., 2021. Plant inputs mediate the linkage between soil carbon and net nitrogen mineralization. Science of The Total Environment 790, 148208.

3Zhang, X.*, Zhu, B.*, Yu, F.-H., Wang, P., Cheng, W., 2022. Exclusion of plant input affects the temperature sensitivity of soil organic carbon decomposition. Ecological Indicators 142, 109274.

4Zhang, X.*, Yu, F., 2020. Physical disturbance accelerates carbon loss through increasing labile carbon release. Plant, Soil and Environment 66, 584–589.

5Junaid Nazir, M., Zhang, X.*, Du, D., Yu, F., 2022. How Physical Disturbance and Nitrogen Addition Affect the Soil Carbon Decomposition? PHYTON-INTERNATIONAL JOURNAL OF EXPERIMENTAL BOTANY 91, 2087–2097.

6) Zhang, X., Han, X., Yu, W., Wang, P., Cheng, W.*, 2017. Priming effects on labile and stable soil organic carbon decomposition: Pulse dynamics over two years. PLoS ONE 12, e0184978. doi:10.1371/journal.pone.0184978

7)Wang, X., Lu, J., Zhang, X., Wang, P.*, 2021. Contrasting microbial mechanisms of soil priming effects induced by crop residues depend on nitrogen availability and temperature. Applied Soil Ecology 168, 104186.

8)Jianfeng, H.*, Feike A., D., Xiuwei, Z., Chao, W., Xiaotao, L., Peng, W., Xingguo, H., Weixin, C.*, 2019. Aridity thresholds of soil microbial metabolic indices along a 3200 km transect across arid and semi-arid regions in Northern China. PeerJ 7, e6712.

9)Zhang Xiuwei, Dong Yuanjie*, Kong Jing, Liu Zhiguang, Wang Quanhui, 2014. Effect of nitric oxide on iron-deficiency stress alleviation of peanut. Journal of Plant Nutrition 37(13), 2108-2127.

10)Zhang Xiuwei*, Dong Yuanjie, Kong Jing, Wang Quanhui, 2014. Exogenous nitric oxide effects on physiological characteristics of a peanut cultivar growing on calcareous Soil. Communications in Soil Science and Plant Analysis 45(7), 1011-1024.

11)Zhang Xiuwei, Dong, Yuanjie*, Qiu Xiankui, Hu Guoqing, Wang Yanhua, Wang Quanhui, 2012. Exogenous nitric oxide alleviates iron-deficiency chlorosis in peanut growing on calcareous soil. Plant Soil and Environment 58(3), 111-120.


个人荣誉及获奖:

1)浙江省第十三届大学生生命科学竞赛(指导教师),三等奖,浙江省大学生科技竞赛委员会,2021.09;

2)第四届浙江省大学生环境生态科技创新大赛(指导教师),三等奖,浙江省大学生科技竞赛委员会,2021.11。