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The spatial patterns of diversity and their relationships with environments in rhizosphere microorganisms and host plants differ along elevational gradients

Shijia Xu, Yan Yuan, Pengfei Song, Mufeng Cui, Rensheng Zhao, Xiaoyang Song, Min Cao, Yazhou Zhang, Jie Yang

2023Frontiers in Microbiology16 citationsDOIOpen Access PDF

Abstract

Introduction: the rhizosphere) and thus may share spatial patterns of diversity and show similar relationships with environments. Methods: This study compared diversity patterns and relationships with environments in host plants and rhizosphere microorganisms (including various functional groups) along elevational gradients across three climatic zones. Results: We found that above-and belowground diversity decreased monotonically or showed a hump-shaped or U-shaped pattern along elevation gradients. However, the diversity patterns of plants, bacteria, and fungi varied depending on the taxon and climatic zone. Temperature and humidity strongly contribute to above-and belowground diversity patterns and community composition along elevational gradients. Nonetheless, soil factors might be important regulators of diversity patterns and the community composition of plants and microorganisms along these gradients. Structural equation modeling revealed that environmental factors had a stronger direct effect on rhizosphere microbial diversity than host plant diversity. Discussion: In sum, spatial patterns of diversity and their relationships with environments in rhizosphere microorganisms and their host plants differed at the regional scale. Different functional groups (e.g., pathogen, mycorrhiza and nitrifier) of soil microorganisms may have divergent elevational patterns and environmental responses. These data improve our understanding of elevational diversity patterns, and provide new insights into the conservation of biodiversity and ecosystem management, especially under climate change.

Topics & Concepts

RhizosphereEcologyBiodiversityBiologyEcosystemSpatial ecologyHost (biology)Beta diversityMicroorganismBacteriaGeneticsMicrobial Community Ecology and PhysiologyMycorrhizal Fungi and Plant InteractionsSoil Carbon and Nitrogen Dynamics