Opposing responses of temporal stability of aboveground and belowground net primary productivity to water and nitrogen enrichment in a temperate grassland

Author:

Xu Zhuwen123ORCID,Jiang Lin4ORCID,Ren Haiyan5ORCID,Han Xingguo6

Affiliation:

1. Key Laboratory of Grassland Ecology, School of Ecology and Environment Inner Mongolia University Hohhot China

2. Institute of Applied Ecology, Chinese Academy of Sciences Shenyang Liaoning China

3. Autonomous Region Collaborative Innovation Center for Integrated Management of Water Resources and Water Environment in the Inner Mongolia Reaches of the Yellow River Hohhot China

4. School of Biological Sciences, Georgia Institute of Technology Atlanta Georgia USA

5. Key Laboratory of Grassland Resources College of Grassland, Resources and Environment, Inner Mongolia Agricultural University Hohhot China

6. College of Life Sciences, Hebei University Baoding Hebei China

Abstract

AbstractChanges in water and nitrogen availability, as important elements of global environmental change, are known to affect the temporal stability of aboveground net primary productivity (ANPP). However, evidences for their effects on the temporal stability of belowground net primary productivity (BNPP), and whether such effects are consistent between belowground and aboveground, are rather scarce. Here, we investigated the responses of temporal stability of both ANPP and BNPP to water and nitrogen addition based on a 9‐year manipulative experiment in a temperate grassland in northern China. The results showed that the temporal stability of ANPP increased with water addition but decreased with nitrogen addition. By contrast, the temporal stability of BNPP decreased with water addition but increased with nitrogen enrichment. The temporal stability of ANPP was mainly determined by the soil moisture and inorganic nitrogen, which modulated species asynchrony, as well as by the stability of dominant species. On the other hand, the temporal stability of BNPP was mainly driven by the soil moisture and inorganic nitrogen that modulated ANPP of grasses, and by the direct effect of soil water availability. Our study provides the first evidence on the opposite responses of aboveground and belowground grassland temporal stability to increased water and nitrogen availability, highlighting the importance of considering both aboveground and belowground components of ecosystems for a more comprehensive understanding of their dynamics.

Publisher

Wiley

Subject

General Environmental Science,Ecology,Environmental Chemistry,Global and Planetary Change

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