supported by the National Natural Science Foundation of China(Grant Nos.32130065 and 32192461).
Increasing intensity and frequency of climate extremes under climate change are expected to affect rainfall-constrained ecosystems,particularly grassland ecosystems in arid and semi-arid zones.However,our understandin...
supported by a grant from the National Natural Science Foundation of China(grant no.32071603 and 32122055);the Strategic Priority Research Program of the Chinese Academy of Sciences(XDA26020101)。
Tall clonal grasses commonly display competitive advantages with nitrogen(N)enrichment.However,it is currently unknown whether the height is derived from the vegetative or reproductive module.Moreover,it is unclear wh...
Under the auspices of the Key Laboratory of Xinjiang Science and Technology Department(No.2022D04009);National Social Science Foundation of China’s Major Program(No.17ZDA064)。
It is necessary to quantitatively study the relationship between climate and human factors on net primary productivity(NPP)inorder to understand the driving mechanism of NPP and prevent desertification.This study inve...
This work was supported by the National Natural Science Foundation of China(31630010 and 31320103916).
Aims Seasonal variations in species richness,aboveground net primary productivity(ANPP)and stability under resource enrichment are frequently ignored.This study explores how the impacts of resource enrichment on speci...