王静

职称:副教授/校聘教授 博士生导师

邮箱:jingwang@hbu.edu.cn

地址:河北省保定市五四东路180号

邮政编码:071002

  • 个人简介

个人简介

王静,河北保定人,博士,河北大学校聘教授,博士研究生导师。主要研究方向为草地土壤碳循环与全球变化。先后主持国家自然科学基金委青年基金项目、面上项目、河北省自然科学基金委青年B类项目(原河北省优青)、中国科学院植物研究所植被与环境变化国家重点实验室开放课题、河北大学青年拔尖人才等项目。在生态学、土壤学等国际主流期刊包括Global Change Biology、Soil Biology and Biochemistry、Functional Ecology等发表SCI论文30余篇。目前担任Soil Biology and Biochemistry编委、Journal of Plant Ecology和《植物生态学报》青年编委。

教育经历

2011.09-2017.01 中国科学院植物研究所,生态学,博士

2007.09-2011.06 河北农业大学,生态学,学士

工作经历

2023.11至今 河北大学,生命科学学院,副教授/校聘教授

2018.02-2023.11 河北大学,生命科学学院,讲师

2019.01-2020.01 美国普渡大学,林业与自然资源系,访问学者

奖励荣誉

2017年获北京市普通高等学校“优秀毕业生”荣誉称号

2017年获中国科学院大学“优秀毕业生”荣誉称号

2017年获中华海外生态学者协会(SINO-ECO)最佳学生论文奖

2016年获“侯学煜青年生态论坛”优秀报告人奖

2016年获中国科学院大学博士研究生出国(境)参加国际会议项目资助

2015年获国家奖学金(博士生)

2015年获中国科学院宝洁优秀研究生奖学金

2014年获第二届北京研究生生态学论坛优秀报告奖第一名

2014年获中国科学院大学“三好学生”荣誉称号

2009年获国家奖学金(本科生)

科研领域】全球变化生态学

以草地为研究对象,利用数据整合分析、野外控制实验、样带调查和室内培养实验等方法,研究全球变化因子对草地生态系统碳循环的影响及其内在作用机理,尤其关注草地凋落物分解过程机制及土壤有机碳形成和周转等过程。

科研项目

1. 2025/01-2027/12,河北省自然科学基金青年基金B类(原河北省优青),草地植物根系和菌根真菌调控土壤有机碳的气候区域格局与机制,20万元,在研,主持

2. 2023/01-2026/12,国家自然科学基金面上项目,大气二氧化碳富集下植物不同碳输入途径对土壤有机碳形成的贡献,54万元,在研,主持;

3. 2020/01-2022/12,国家自然科学基金青年基金项目,施氮和增雨对温带草原群落水平凋落物分解及土壤有机碳形成的影响,24万元,已结题,主持

4. 2019/04-2020/11,中国科学院植物研究所植被与环境变化国家重点实验室开放课题,凋落物性状对土壤有机碳形成效率影响的微生物学机制研究,20万元,已结题,主持

5. 2016/01-2018/12,国家自然科学基金优秀青年基金项目,大气污染与生态系统碳氮循环, 150万元,已结题,参加;

6. 2013/08-2016/08,中央组织部“青年千人”计划,大气污染与生态系统碳氮循环,300万元,已结题,参加;

7. 2013/01-2017/12,科技部国家重大科学研究计划,全球变化对中国典型草地生态过程的影响及生态环境效应,200万元,已结题,参加。

代表性论文

1. Liu Y, Wu JQ, Wang YF, Yang JX, Zhang HY, Wei LY, Yin QL, Wang YD, Wang XY, Jiang LC, Jiang Y, Han XG, Wang J*. 2026. Divergent chemistry and microbiology, convergent carbon fate: insect frass and plant litter are functionally equivalent under climate warming. Soil Biology and Biochemistry, 218, 110159. 通讯作者

2. Liu Y, Wang YF, Yan KC, Wu JQ, Yin QL, Yang JX, Wang YD, Jiang LC, Zhang HY, Sun Osbert JX, Jiang Y, Han XG, Wang J*. 2026. Elevated silicon concentrations accelerate decomposition of the dominant silicon-rich grass litter in grassland ecosystems. Soil and Tillage Research, 255, 106800. 通讯作者

3. Yin QL, Liu Y, Li JF, Wu JQ, Wang YF, Zhang HY, Liu HY, Jiang LC, Yang JX, Wang YD, Jiang Y, Han XG, Wang J*. 2025. Soil organic carbon formation in grassland ecosystems: Higher efficiency of roots than shoots and rhizodeposition. Soil and Tillage Research, 250, 106523. 通讯作者

4. Yin QL, Wu JQ, Wang X, Qiao CL, Wang J*. 2024. Deepened snow cover accelerates litter decomposition by stimulating microbial degradation. Soil Biology and Biochemistry, 193, 109402. 通讯作者

5. Wang J, Zhang A, Zheng YJ, Song J, Ru JY, Zheng MM, Hui DF, Wan SQ*. 2021. Long-term litter removal rather than litter addition enhances ecosystem carbon sequestration in a temperate steppe. Functional Ecology, 35(12):2799-2807. 第一作者

6. Wang J, Zhang Q, Song J, Ru JY, Zhou ZZ, Xia JY, Dukes SJ, Wan SQ*. 2020. Nighttime warming enhances ecosystem carbon-use efficiency in a temperate steppe. Functional Ecology, 34(8): 1721-1730. 第一作者

7. Wang J, Liu WX, Li P, Jia Z, Deng MF, Yang S, Liu LL*. 2020. Long-term deepened snow cover alters litter layer turnover rate in temperate steppes. Functional Ecology, 34(5): 1113-1122. 第一作者

8. Wang J, Yang S, Zhang BB, Liu WX, Deng MF, Chen SP, Liu LL*. 2017. Temporal dynamics of ultraviolet radiation impacts on litter decomposition in a semi-arid ecosystem. Plant and Soil, 419(1-2): 71-81. 第一作者

9. Wang J, Liu LL*, Wang X, Yang S, Zhang BB, Li P, Qiao CL, Deng MF, Liu WX. 2017. High night-time humidity and dissolved organic carbon content support rapid decomposition of standing litter in a semi-arid landscape. Functional Ecology, 31(8): 1659-1668. 第一作者

10. Wang J, Liu LL*, Wang X, Chen YW. 2015. The interaction between abiotic photodegradation and microbial decomposition under ultraviolet radiation. Global Change Biology, 21(5): 2095-2104. 第一作者

11. Lv RF, Han XG, Su JS, Su J, Wang J, Yu LF, Lv XT, Yang GJ, Jiang LC, Zhang HY, Wei CZ*. 2026. Divergent plant and nematode community responses to long-term nitrogen enrichment in a meadow steppe. Ecological Applications, 36(1): e70173.

12. Yang S, Jia Z, Cahng PF, Wu YT, Huang JS, Wang J, Deng MF, Su J, Hong SB, He Y, Zhu JT, Zhang PJ, Wang Y, Guo XW, Zhang ZH, Zhang YJ, Hu SJ, He JS, Piao SL, Liu LL*. 2025. Significant impact of UV exposure on litter decomposition across diverse climate zones. Global Change Biology, 31, e70456.

13. Liu L, Yang JJ, Wang J, Yu Q, Wei CZ, Jiang LC, Huang JS, Zhang YH, Jiang Y, Zhang HY, Han XG. 2025. Increase in mineral-associated organic carbon does not offset the decrease in particulate organic carbon under long-term nitrogen enrichment in a steppe ecosystem. Soil Biology and Biochemistry, 202, 109695.

14. Jiang LC, Wang J, Yang GY, Ning QS, Wang YL, Li S, Yu LF, Liu HJ, Lv XT, Jiang Y, Han XG, Wei CZ, Zhang HY*. 2025. Labile carbon input alleviates nitrogen-induced community instability in a meadow steppe. Journal of Ecology, 113(3): 742-752.

15. Zhang XJ, Bo YS, Jiang LC, Wang J, Yu LF, Fu W, He XL, Dong XN, Jiang Y, Han XG, Zhang HY*. 2025. Mycelium biomass and community composition impact nutrient concentration in arbuscular mycorrhizal fungi at fine spatial scale. Functional Ecology, 39, 1455-1468.

16. Zhang YX, Ding ZN, Guo XW, Tang ZX, Zhang HY, Wang J, Wang RZ, Liu SR, Han XG, Jiang Y, Liu HY*. Partitioning soil carbon emissions in a temperate oak forest: insights from metabolic theory and the role of fine roots and microbial biomass. Journal of Forestry Research, 37, 15.

17. Namuhan, Wang J, Yang GJ, Song YT, Yu YG, Wang JD, Wang XG, Shi YP, Shen Y, Han XG, Wuyunna, Zhang HY*. 2024. Mechanisms of biodiversity loss under nitrogen enrichment: unveiling a shift from light competition to cation toxicity. New Phytologist, 243(5): 1966-1979.

18. Yang S, Wang J, Su Jiao, Peng ZY, Guo LL, Wu YT, Chang PF, Wang Y, Huang JS, Liu LL*. 2024. Divergent Roles of UV Exposure and Microclimatic Conditions in the Decomposition of Standing and Soil Surface Litter in a Semi-Arid Steppe. JGR Biogeosciences, 129, e2023JG007934.

19. Deng MF, Li P, Liu WX, Chang PF, Yang L, Wang ZH, Wang J, Liu LL*. 2023. Deepened snow cover increases grassland soil carbon stocks by incorporating carbon inputs into deep soil layers. Global Change Biology, DOI: 10.1111/gcb.16798.

20. Ru JY, Wan SQ*, Hui DF, Song J, Wang J. 2022. Increased interannual precipitation variability enhances the carbon sink in a semi-arid grassland. Functional Ecology, 36(4): 987-997.

21. Feng JY, Li Z, Hao YF, Wang J, Ru JY, Song J, Wan SQ*. 2021. Litter removal exerts greater effects on soil microbial community than understory removal in a subtropical-warm temperate climate transitional forest. Forest Ecology and Management, 505: 119867.

22. Guo LL, Deng MF, Yang S, Liu WX, Wang X, Wang J, Liu LL*. 2021. The coordination between leaf and fine root litter decomposition and the difference of their controlling factors. Global Ecology and Biogeography, 30(11): 2286-2296.

23. Song J, Xia JY, Hui DF, Zheng MM, Wang J, Ru JY, Wang HD, Zhang QS, Yang C, Wan SQ*. 2021. Plant functional types regulate non-additive responses of soil respiration to five-year warming and nitrogen addition in a semi-arid grassland. Functional Ecology, 35(11): 2593-2603.

24. Yang S, Liu WX, Qiao CL, Wang J, Deng MF, Zhang BB, Liu LL*. 2019. The decline in plant biodiversity slows down soil carbon turnover under increasing nitrogen deposition in a temperate steppe. Functional Ecology, 33(7): 1362-1372.

25. Li P, Liu LL*, Wang J, Wang ZH, Wang X, Bai YF, Chen SP. 2018. Wind erosion enhanced by land use changes significantly reduces ecosystem carbon storage and carbon sequestration potentials in semiarid grasslands. Land Degradation & Development, 29(10): 3469-3478.

26. Liu WX, Allison S.D, Li P, Wang J, Chen DM, Wang ZH, Yang S, Diao LW, Wang B, Liu LL*. 2018. The effects of increased snow depth on plant and microbial biomass and community composition along a precipitation gradient in temperate steppes. Soil Biology and Biochemistry, 124, 134-141.

27. Wang X, Wu J, Chen M, Xu XT, Wang ZH, Wang B, Wang CZ, Piao SL, Lin WL, Miao GF, Deng MF, Qiao CL, Wang J, Xu S, Liu LL*. 2018. Field evidences for the positive effects of aerosols on tree growth. Global Change Biology, 24(10): 4983-4992.

28. Xu S, Li P, Sayer EJ, Zhang BB, Wang J, Qiao CL, Peng ZY, Diao LW, Chi YG, Liu WX, Liu LL*. 2018. Initial soil organic matter content influences the storage and turnover of litter, Root and soil carbon in grasslands. Ecosystems, 1-13.

29. Qiao CL*, Xu BB, Han YT, Wang J, Wang X., Liu LL, Liu WX, Wan SQ, Tan H., Liu YZ, Zhao XM. 2018. Synthetic nitrogen fertilizers alter the soil chemistry, production and quality of tea. A meta-analysis. Agronomy for Sustainable Development, 38, 10.

30. Deng MF, Liu LL*, Sun ZZ, Piao SL, Ma YC, Chen YW, Wang J, Qiao CL, Wang X, Li P. 2016. Increased phosphate uptake but not resorption alleviates phosphorus deficiency induced by nitrogen deposition in temperate Larix principis-rupprechtii plantations. New Phytologist, 212(4): 1019-1029.

31. Wang X, Liu LL*, Piao SL, Janssens I.A, Tang JW, Liu WX, Chi YG, Wang J, Xu S. 2014. Soil respiration under climate warming: differential response of heterotrophic and autotrophic respiration. Global Change Biology, 20(10), 3229-3237.

32. 刘影, 李疆枫, 吴佳琪, 王艺帆, 尹清琳, 王静*. 2025. 干旱下草地植物糙隐子草根系和菌根真菌对土壤碳氮的影响. 植物生态学报, 49(9): 1388-1398. (通讯作者)

33. 常鹏飞, 李平,纳尔斯格,王静,王振华,杨森,贾舟,杨璐,刘玲莉,邓美凤*. 2025. 内蒙古温带草原不同草地类型土壤有机碳和无机碳储量对总碳储量的贡献及其驱动因素. 植物生态学报, 49(9): 1374-1387.

34. 王晨宇, 林湛沂, 王静, 张东良, 张卉*. 2025. 新疆北部泥炭地水位线上下不同深度微生物群落结构研究. 第四纪研究. 45(3): 682-695.

35. 彭子洋, 刘卫星, 田瑞, 杨森, 王静, 黄俊胜, 杨雅舒, 刘玲莉*. 2021. 海拔和坡向对唐古拉山土壤胞外酶活性的影响. 生态学报, 41(19): 7659-7668.

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