共 53 条
[31]
Niu S L, Fu Z, Luo Y Q, Et al., Interannual variability of ecosystem carbon exchange: From observation to prediction, Global Ecology and Biogeography, 26, 11, pp. 1225-1237, (2017)
[32]
Hu Z M, Guo Q, Li S G, Et al., Shifts in the dynamics of productivity signal ecosystem state transitions at the biomescale, Ecology Letters, 21, 10, pp. 1457-1466, (2018)
[33]
Li Y, Niu S L, Yu G R., Aggravated phosphorus limitation on biomass production under increasing nitrogen loading: A meta-analysis, Global Change Biology, 22, 2, pp. 934-943, (2016)
[34]
Niu S L, Classen A T, Dukes J S, Et al., Global patterns and substrate-based mechanisms of the terrestrial nitrogen cycle, Ecology Letters, 19, 6, pp. 697-709, (2016)
[35]
Tian D S, Reich P B, Chen H Y H, Et al., Global changes alter plant multi-element stoichiometric coupling, New Phytologist, 221, 2, pp. 807-817, (2018)
[36]
Kou L, Jiang L, Fu X L, Et al., Nitrogen deposition increases root production and turnover but slows root decomposition in Pinus elliottii plantations, New Phytologist, 218, pp. 1450-1461, (2018)
[37]
Kou L, Jiang L, Hattenschwiler S, Et al., Diversity-decomposition relationships in forests worldwide, eLife Sciences, 9, (2020)
[38]
Qiao N, Schaefer D, Blagodatskaya E, Et al., Labile carbon retention compensates for CO<sub>2</sub> released by priming in forest soils, Global Change Biology, 20, 6, pp. 1943-1954, (2014)
[39]
Song M H, Guo Y, Yu F H, Et al., Shifts in priming partly explain impacts of long- term nitrogen input in different chemical forms on soil organic carbon storage, Global Change Biology, 20, pp. 1943-1954, (2018)
[40]
Zhang G L, Zhang Y J, Dong J W, Et al., Green-up dates in the Tibetan Plateau have continuously advanced from 1982 to 2011, PNAS, 110, 11, pp. 4309-4314, (2013)