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Nitrogen addition alleviates the adverse effects of drought on plant productivity in a temperate steppe

温带气候 草原 生产力 生态学 农林复合经营 农学 环境科学 生物 宏观经济学 经济
作者
Yonghong Luo,Lan Du,Jia‐Tao Zhang,Haiyan Ren,Yan Shen,Jinbao Zhang,Na Li,Ru Tian,Shan Wang,Heyong Liu,Zhuwen Xu
出处
期刊:Ecological Applications [Wiley]
卷期号:34 (4) 被引量:6
标识
DOI:10.1002/eap.2969
摘要

Abstract Drought and nitrogen enrichment could profoundly affect the productivity of semiarid ecosystems. However, how ecosystem productivity will respond to different drought scenarios, especially with a concurrent increase in nitrogen availability, is still poorly understood. Using data from a 4‐year field experiment conducted in a semiarid temperate steppe, we explored the responses of aboveground net primary productivity (ANPP) to different drought scenarios and nitrogen addition, and the underlying mechanisms linking soil properties, plant species richness, functional diversity (community‐weighted means of plant traits, functional dispersion) and phylogenetic diversity (net relatedness index) to ANPP. Our results showed that completely excluding precipitation in June (1‐month intense drought) and reducing half the precipitation amount from June to August (season‐long chronic drought) both significantly reduced ANPP, with the latter having a more negative impact on ANPP. However, reducing half of the precipitation frequency from June to August (precipitation redistribution) had no significant effect on ANPP. Nitrogen addition increased ANPP irrespective of drought scenarios. ANPP was primarily determined by soil moisture and nitrogen availability by regulating the community‐weighted means of plant height, rather than other aspects of plant diversity. Our findings suggest that precipitation amount is more important than precipitation redistribution in influencing the productivity of temperate steppe, and nitrogen supply could alleviate the adverse impacts of drought on grassland productivity. Our study advances the mechanistic understanding of how the temperate grassland responds to drought stress, and implies that management strategies to protect tall species in the community would be beneficial for maintaining the productivity and carbon sequestration of grassland ecosystems under climate drought.

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