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Our results suggested that significant NPP increases were found in most of the vegetated areas, especially in grasslands and shrublands.
GSP and SDP accounted for approximately 67% and 21%, respectively, of the variability in NPP. We concluded that growing season precipitation and its seasonal ...
The results showed that the precipitation in northwest China had a significantly increasing trend (P < 0.01), at a rate of 0.61 ... [Show full abstract] mm/year ...
Sep 3, 2021 · Increased precipitation significantly enhanced the soil C inputs, pools and outputs by 18.17%, 18.50%, and 21.04%, respectively, while decreased ...
... Drought significantly affects plant growth, soil biodiversity and ecosystem carbon (C) cycling by reducing soil moisture availability (de Vries et al. 2012; ...
Changes in precipitation patterns increased soil water content, fungal PLFA, and fungivore diversity, thus improving ecosystem multifunction. Conclusion: High ...
Jan 5, 2023 · These global change drivers have significantly impacted plant productivity, biodiversity and ecosystems [2,3]. In particular, arid and semiarid ...
Aug 8, 2011 · Though some studies indicate that warming can lead to drought and decreases in primary production, one meta-analysis showed that warming led to.
Jun 1, 2017 · In this study, the spatial distribution and dynamic characteristics of climate change effects on vegetation activity in China from the 1980s to the 2010s and ...
Jan 12, 2024 · Our results suggest the predicted changes in precipitation regime, including precipitation amount and frequency, is likely to alter primary productivity and ...