科学研究

    Zhu Jianxing; He Nianpeng; Zhang Jiahui; Wang Qiufeng; Zhao Ning; Jia Yanlong; Ge Jianping; Yu Guirui2017 . Estimation of carbon sequestration in China's forests induced by atmospheric wet nitrogen deposition using the principles of ecological stoichiomet

    Wang Ruili*; Wang Qiufeng; Liu Congcong; Kou Liang; Zhao Ning; Xu Zhiwei; Zhang Shuoxin; Yu Guirui; He Nianpeng2018 . Changes in trait and phylogenetic diversity of leaves and absorptive roots from tropical to boreal forests . Plant and Soil389-401

    Xu Zhiwei; Yu Guirui; Zhang Xinyu; He Nianpeng; Wang Qiufeng; Wang Shengzhong; Xu Xiaofeng; Wang Ruili; Zhao Ning2018 . Biogeographical patterns of soil microbial community as influenced by soil characteristics and climate across Chinese forest biomes . A

    Xu Zhiwei; Yu Guirui; Zhang Xinyu; He Nianpeng; Wang Qiufeng; Wang Shengzhong; Xu Xiaofeng; Wang Ruili; Zhao Ning2018 . Divergence of dominant factors in soil microbial communities and functions in forest ecosystems along a climatic gradient . Biogeoscien

    Zhao Wenqiang; Reich Peter B; Yu Qiannan; Zhao Ning; Yin Chunying; Zhao Chunzhang; Li Dandan; Hu Jun; Li Ting; Yin Huajun; Liu Qing2018 . Shrub type dominates the vertical distribution of leaf C : N : P stoichiometry across an extensive altitudinal gradie

    Li, Xin*; Zhao, Ning; Jin, Rui; Liu, Shaomin; Sun, Xiaomin; Wen, Xuefa; Wu, Dongxiu; Zhou, Yan; Guo, Jianwen; Chen, Shiping; Xu, Ziwei; Ma, Mingguo; Wang, Tianming; Qu, Yonghua; Wang, Xinwei; Wu, Fangming; Zhou, Yuke2019 . Internet of Things to network sm

    Xu, Zhiwei; Yu, Guirui*; Wang, Qiufeng*; Zhang, Xinyu; Wang, Ruili; Zhao, Ning; He, Nianpeng; Liu, Ziping2019 . Plant functional traits determine latitudinal variations in soil microbial function: evidence from forests in China . Biogeosciences3333-3349

    Zhao, Ning; He, Nianpeng; Wang, Qiufeng; Zhang, Xinyu; Wang, Ruili; Xu, Zhiwei; Yu, Guirui*2014 . The Altitudinal Patterns of Leaf C:N:P Stoichiometry Are Regulated by Plant Growth Form, Climate and Soil on Changbai Mountain, China . Plos One . e95196:

    Zhao, Ning; Yu, Guirui*; He, Nianpeng*; Xia, Fucai; Wang, Qiufeng; Wang, Ruili; Xu, Zhiwei; Jia, Yanlong2016 . Invariant allometric scaling of nitrogen and phosphorus in leaves, stems, and fine roots of woody plants along an altitudinal gradient . Journal

    Zhao Ning; Yu Guirui*; He Nianpeng*; Wang Qiufeng; Guo Dali; Zhang Xinyu; Wang Ruili; Xu Zhiwei; Jiao Cuicui; Li Nani; Jia Yanlong2016 . Coordinated pattern of multi‐element variability in leaves and roots across Chinese forest biomes . Global Ecology and

    Zhang Jiahui#; Zhao Ning#; Liu Congcong; Yang Hao; Li Meiling; Yu Guirui; Wilcox Kevin; Yu Qiang*; He Nianpeng*2018 . C:N:P stoichiometry in China's forests: From organs to ecosystems . Functional Ecology50-60

    Zhao Ning; Liu Huiming; Wang Qiufeng; Wang Ruili; Xu Zhiwei; Jiao Cuicui; Zhu Jianxing; Yu Guirui*; He Nianpeng*2018 . Root elemental composition in Chinese forests: Implications for biogeochemical niche differentiation . Functional Ecology40-49

    Zhao, Ning; Yu, Guirui*; Wang, Qiufeng; Wang, Ruili; Zhang, Jiahui; Liu, Congcong; He, Nianpeng*2020 . Conservative allocation strategy of multiple nutrients among major plant organs: From species to community . Journal of Ecology267-278

    Liu HY, Lin L, Wang H, Zhang Z, Shangguan Z, Feng X, He J-S*2020 . Simulating warmer and drier climate increases root production but decreases root decomposition in an alpine grassland on the Tibetan plateau . Plant and Soil . 458: 59-73

    Feng TJ, Li xu, Zhang LX, Chen Q, Ma ZY, Wang H, Shangguan ZJ, Wang L, He J-S*2021 . Dew formation reduction in global warming experiments and the potential consequences . Journal of Hydrology . 593: DOI:10.1016/j.jhydrol.2020.125819

    Ma T, Dai G, Zhu S, Chen D, Lü X, Wang X, Zhu J, Zhang Y, He J-S, Bai YF, Han XG, Feng XJ*2020 . Vertical variations in plant-and microbial-derived carbon components in grassland soils . Plant and Soil . 446: 441-455

    Shi Y, Zhang K, Li Q, Liu X, He J-S, Chu HY*2020 . Interannual climate variability and altered precipitation influence the soil microbial community structure in a Tibetan Plateau grassland . Science of the Total Environment . 714: DOI: 10.1016/j.scitotenv

    Cao JR, Lin L, Pang S, Guo X, Cao G, He J-S, Wang Q*2020 . Early season precipitation accounts for the variability of fine-root traits in a Tibetan alpine grassland . Environmental and Experimental Botany . 172: DOI:10.1016/j.envexpbot.2020.103991

    Wang H, Liu HY, Cao GM, Ma ZY, Li YK, Zhang FW, Zhao X, Zhao X-Q, Jiang L, Sanders N, Classen A, He J-S*2020 . Alpine grassland plants grow earlier and faster but biomass remains unchanged over 35 years of climate change . Ecology Letters . 23: 701-710

共1995条  13/200