环境科学
雪
生态系统
草原
温带气候
初级生产
生产力
生态学
地理
生物
宏观经济学
气象学
经济
作者
Ping Li,Emma J. Sayer,Zhou Jia,Weixing Liu,Yuntao Wu,Sen Yang,Chengzhang Wang,Lu Yang,Dima Chen,Yongfei Bai,Lingli Liu
摘要
(NEE) and reduced intra- and inter-annual variation in NEE. Deepened snow did not affect aboveground plant biomass (AGB) but significantly increased root biomass. This suggested that the enhanced NEE was allocated to the belowground, which improved water acquisition and thus contributed to greater stability in NEE in deep-snow plots. Interestingly, the AGB of grasses in the control plots declined over time, resulting in a shift towards a forb-dominated system. Similar declines in grass AGB were also observed at three other locations in the region over the same time frame and are attributed to 4 years of below-average precipitation during the growing season. By contrast, grass AGB was stabilized under deepened winter snow and plant community composition remained unchanged. Hence, our study demonstrates that increased winter snowfall may stabilize arid grassland systems by reducing resource competition, promoting coexistence between plant functional groups, which ultimately mitigates the impacts of chronic drought during the growing season.
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