Research Articles

Nitrogen addition amplified water effects on species composition shift and productivity increase

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  • 1 State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, the Chinese Academy of Sciences, Beijing 100093, China, 2 College of Grassland Science, Shanxi Agricultural University, Taigu 030801, China, 3 College of Resources and Environment, University of Chinese Academy of Sciences, Beijing 100049, China, 4 Department of Earth Sciences, Indiana University Purdue University Indianapolis, Indianapolis, IN 46202, USA

    *Corresponding author. E-mail: lyons@ibcas.ac.cn (A.L.); jhhuang@ibcas.ac.cn (J.H.)
    These authors contributed equally to this work.

Received date: 2020-10-31

  Revised date: 2020-12-15

  Accepted date: 2021-03-16

  Online published: 2021-03-31

Abstract

Aims

Water and nitrogen (N) are two key resources in dryland ecosystems, but they may have complex interactive effects on the community structure and ecosystem functions. How future precipitation (rainfall vs snowfall) change will impact aboveground net primary production (ANPP) is far from clear, especially when combined with increasing N availability.

Methods

In this study, we investigated changes in community productivity, abundance and aboveground biomass of two dominant plant functional groups (PFGs), i.e. perennial rhizome grasses (PR) and perennial bunchgrasses (PB) under the impacts of increased precipitation (rainfall vs snowfall) combined with N addition in a semiarid temperate steppe.

Important Findings

Summer rainfall augmentation marginally increased community ANPP, whereas it significantly increased the abundance and aboveground biomass of PR, but not those of PB. Summer rainfall addition increased the fraction of PR biomass (fPR) while decreased that of PB (fPB). Spring snow addition had no effect on aboveground biomass of either compositional PFG although it marginally increased community ANPP. Nitrogen addition significantly increased community ANPP with greater increase in PR under summer rainfall addition, indicating strong interactive effects on community ANPP largely by enhancing PR biomass. We also found a nonlinear increase in the positive effect of nitrogen addition on productivity with the increased precipitation amount. These findings indicate an amplified impact of precipitation increase on grassland productivity under the accelerated atmospheric N deposition in the future.

Cite this article

Xiaolin Zhang, Muqier Hasi, Ang Li, Yulian Tan, Stefani Daryanto, Lixin Wang, Xueyao Zhang, Shiping Chen and Jianhui Huang . Nitrogen addition amplified water effects on species composition shift and productivity increase[J]. Journal of Plant Ecology, 2021 , 14(5) : 816 -828 . DOI: 10.1093/jpe/rtab034

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