A global analysis of soil acidification caused by nitrogen addition D Tian, S Niu Environmental Research Letters 10 (2), 024019, 2015 | 1073 | 2015 |
Microbes drive global soil nitrogen mineralization and availability Z Li, D Tian, B Wang, J Wang, S Wang, HYH Chen, X Xu, C Wang, N He, ... Global change biology 25 (3), 1078-1088, 2019 | 373 | 2019 |
Global patterns and substrate‐based mechanisms of the terrestrial nitrogen cycle S Niu, AT Classen, JS Dukes, P Kardol, L Liu, Y Luo, L Rustad, J Sun, ... Ecology letters 19 (6), 697-709, 2016 | 264 | 2016 |
Global patterns and controlling factors of soil nitrification rate Z Li, Z Zeng, D Tian, J Wang, Z Fu, F Zhang, R Zhang, W Chen, Y Luo, ... Global Change Biology 26 (7), 4147-4157, 2020 | 228 | 2020 |
Global soil acidification impacts on belowground processes C Meng, D Tian, H Zeng, Z Li, C Yi, S Niu Environmental Research Letters 14 (7), 074003, 2019 | 190 | 2019 |
Water scaling of ecosystem carbon cycle feedback to climate warming Q Quan, D Tian, Y Luo, F Zhang, TW Crowther, K Zhu, HYH Chen, Q Zhou, ... Science Advances 5 (8), eaav1131, 2019 | 163 | 2019 |
Global changes alter plant multi‐element stoichiometric coupling D Tian, PB Reich, HYH Chen, Y Xiang, Y Luo, Y Shen, C Meng, W Han, ... New Phytologist 221 (2), 807-817, 2019 | 161 | 2019 |
Global evidence on nitrogen saturation of terrestrial ecosystem net primary productivity D Tian, H Wang, J Sun, S Niu Environmental Research Letters 11 (2), 024012, 2016 | 139 | 2016 |
Global meta-analysis on the responses of soil extracellular enzyme activities to warming C Meng, D Tian, H Zeng, Z Li, HYH Chen, S Niu Science of the Total Environment 705, 135992, 2020 | 127 | 2020 |
Fine‐root functional trait responses to experimental warming: a global meta‐analysis J Wang, C Defrenne, ML McCormack, L Yang, D Tian, Y Luo, E Hou, ... New Phytologist 230 (5), 1856-1867, 2021 | 103 | 2021 |
Soil acid cations induced reduction in soil respiration under nitrogen enrichment and soil acidification Y Li, J Sun, D Tian, J Wang, D Ha, Y Qu, G Jing, S Niu Science of the Total Environment 615, 1535-1546, 2018 | 102 | 2018 |
Variations and controlling factors of soil denitrification rate Z Li, Z Tang, Z Song, W Chen, D Tian, S Tang, X Wang, J Wang, W Liu, ... Global change biology 28 (6), 2133-2145, 2022 | 101 | 2022 |
Nonlinear responses of ecosystem carbon fluxes and water‐use efficiency to nitrogen addition in Inner Mongolia grassland D Tian, S Niu, Q Pan, T Ren, S Chen, Y Bai, X Han Functional Ecology 30 (3), 490-499, 2016 | 99 | 2016 |
Heavy grazing reduces grassland soil greenhouse gas fluxes: A global meta-analysis S Tang, K Wang, Y Xiang, D Tian, J Wang, Y Liu, B Cao, D Guo, S Niu Science of the Total Environment 654, 1218-1224, 2019 | 92 | 2019 |
Vital roles of soil microbes in driving terrestrial nitrogen immobilization Z Li, Z Zeng, Z Song, F Wang, D Tian, W Mi, X Huang, J Wang, L Song, ... Global Change Biology 27 (9), 1848-1858, 2021 | 90 | 2021 |
Size‐dependent nutrient limitation of tree growth from subtropical to cold temperate forests Y Li, D Tian, H Yang, S Niu Functional Ecology 32 (1), 95-105, 2018 | 87 | 2018 |
Nitrogen addition reduces soil respiration but increases the relative contribution of heterotrophic component in an alpine meadow J Wang, B Song, F Ma, D Tian, Y Li, T Yan, Q Quan, F Zhang, Z Li, ... Functional Ecology 33 (11), 2239-2253, 2019 | 81 | 2019 |
Effects of functional diversity loss on ecosystem functions are influenced by compensation Q Pan, D Tian, S Naeem, K Auerswald, JJ Elser, Y Bai, J Huang, Q Wang, ... Ecology 97 (9), 2293-2302, 2016 | 76 | 2016 |
Diversity of plant and soil microbes mediates the response of ecosystem multifunctionality to grazing disturbance R Zhang, Z Wang, S Niu, D Tian, Q Wu, X Gao, MP Schellenberg, G Han Science of the total environment 776, 145730, 2021 | 71 | 2021 |
Vegetation type controls root turnover in global grasslands J Wang, J Sun, Z Yu, Y Li, D Tian, B Wang, Z Li, S Niu Global Ecology and Biogeography 28 (4), 442-455, 2019 | 70 | 2019 |