Literature DB >> 32325613

Climatic humidity mediates the strength of the species richness-biomass relationship on the Mongolian Plateau steppe.

Zijing Li1, Zhiyong Li2, Xuze Tong3, Jinghui Zhang1, Lei Dong4, Ying Zheng1, Wenhong Ma1, Liqing Zhao1, Lixin Wang1, Lu Wen1, Zhenhua Dang1, Indree Tuvshintogtokh5, Cunzhu Liang1, Frank Yonghong Li1.   

Abstract

The relationships between biodiversity and ecosystem functioning (BEF) have been extensively studied over past decades. However, the environmental factors affecting their relationships, and how their relationships vary under the influence of environmental factors, remain controversial. Studying the BEF relationships in natural/wild environments is of great significance for devising strategies in biodiversity conservation and ecosystem functioning. Using the data from 75 sites on the Mongolian Plateau steppe, we analyzed the relationship between species richness and biomass with general linear models (GLMs) and linear mixed models (LMMs), and analyzed the variation in the species richness-biomass relationships under environmental conditions by the partial least square path modeling (PLSPM). The results showed that de Martonne aridity index affected both species richness and community biomass in parallel, and that hydrothermal coupling conditions were more important direct impact factors for aboveground biomass. However, the significant species richness-biomass relationships became weaker when the effects of environmental factors (i.e. climate and soil properties) were present. Climate humidity was the most important factor in mediating the relationship between species richness and community biomass. Our research suggested that species richness-biomass relationships are weak in the natural grasslands of the Mongolian Plateau, and that this may be due to the differences in the regional-scale environment and changes in species interactions. We recommend that a more comprehensive understanding of the relationship between diversity and biomass requires further research within broader environmental gradients.
Copyright © 2020 Elsevier B.V. All rights reserved.

Keywords:  Aboveground biomass; Biodiversity-ecosystem functioning relationships; Climate; Environmental factors; Grasslands; Species richness

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Year:  2020        PMID: 32325613     DOI: 10.1016/j.scitotenv.2020.137252

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  1 in total

1.  Species richness promotes ecosystem carbon storage: evidence from biodiversity-ecosystem functioning experiments.

Authors:  Shan Xu; Nico Eisenhauer; Olga Ferlian; Jinlong Zhang; Guoyi Zhou; Xiankai Lu; Chengshuai Liu; Deqiang Zhang
Journal:  Proc Biol Sci       Date:  2020-11-25       Impact factor: 5.349

  1 in total

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