- 黄俊胜
- 研 究 组 : 全球变化与生态系统响应研究组
- 民 族: 汉
- 研究领域: 植物-土壤-微生物互作、土壤生态学
- 籍 贯: 江西
- 导师资格:
- 出生年月: 1990.01
- 职 称: 副研究员
- 毕业院校: 中国科学院大学
- 入职时间: 2022.8
- 毕业时间: 2018.6
- 办公电话: 010-62836594
- 电子邮件: huangjunsheng@ibcas.ac.cn
(1) 紫外辐射对凋落物分解及凋落物碳转化为土壤有机碳的影响机制研究,国家自然科学基金面上项目,2024/1-2027/12,主持人
(2) 凋落物性状对土壤有机碳形成与稳定性的影响机制研究,国家自然科学基金青年项目,2020/1-2022/12,主持人
第一或通讯文章:
(1) Huang JS, Deng MF, Jia Z, Yang S, Yang L, Pan SN, Liu LL*. 2023. Influences of plant traits on the retention and redistribution of bioavailable nitrogen within the plant-soil system. Geoderma, 432: 116380.
(2) Huang JS, Liu WX, Deng MF, Wang Z, Yang S, Jia Z, Wang ZH, Pan SN, Ahirwal J, Liu LL*. 2021. Divergent contributions of living root inputs to turnover of different soil organic carbon pools and their links to plant traits. Functional Ecology, 35: 2821-2830.
(3) Huang JS, Liu WX*, Yang S, Yang L, Peng ZY, Deng MF, Xu S, Zhang BB, Ahirwal J, Liu LL*. 2021. Plant carbon inputs through shoot, root, and mycorrhizal pathways affect soil organic carbon turnover differently. Soil Biology & Biochemistry, 160: 108322.
(4) Huang JS, Liu WX, Deng MF, Wang X, Wang ZH, Yang L, Liu LL*. 2020. Allocation and turnover of rhizodeposited carbon in different soil microbial groups. Soil Biology & Biochemistry, 150: 107973.
(5) Huang JS, Liu LL, Qi KB, Yang B, Yang TH, Bao WK, and Pang XY*. 2019. Differential mechanisms drive changes in soil C pools under N and P enrichment in a subalpine spruce plantation. Geoderma, 340: 213-223.
(6) Huang JS, Chen WJ, Qi KB, Yang B, Bao WK*, Pang XY*. 2018. Distinct effects of N and P addition on soil enzyme activities and C distribution in aggregates in a subalpine spruce plantation. Biogeochemistry, 141: 199-212.
(7) Huang JS, Hu B, Qi KB, Chen WJ, Pang XY*, Bao WK*, Tian GL. 2016. Effects of phosphorus addition on soil microbial biomass and community composition in a subalpine spruce plantation. European Journal of Soil Biology, 72: 35-41.
其他代表性文章:
(1) Guo LL, Deng MF, Li XF, Schmid B, Huang JS, Wu YT, Peng ZY, Yang L, Liu LL*. 2024. Evolutionary and ecological forces shape nutrient strategies of mycorrhizal woody plants. Ecology Letters, 27: e14330.
(2) Wu YT, Deng MF, Huang JS, Yang S, Guo LL, Yang L, Ahirwal J, Peng ZY, Liu WX, Liu LL*. 2022. Global patterns in mycorrhizal mediation of soil carbon storage, stability, and nitrogen demand: A meta-analysis. Soil Biology & Biochemistry, 166: 108578.
(3) Deng MF, Li P, Wang ZH, Guo LL, Wu YT, Huang JS, Wang XH, Liu LL*. 2021. Drought and salinization stress induced by stand development alters mineral element cycling in a larch plantation. Journal of Geophysical Research-Biogeosciences: e2020JG005906.