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January 14, 2026Global Change Biology0 citations

Soil Protist Diversity and Biotic Interactions Shape Ecosystem Functions Under Climate Change

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HLHongwei LiuCMCatarina S.C. MartinsGZGuiyao Zhou

Key Points

  • This research aims to understand how soil protist diversity and interactions influence ecosystem functions, particularly under climate change.
  • Conducted a factorial microcosm experiment manipulating microbial diversity, plant species richness, and drought stress.
  • Established 203 microcosms generating 812 soil samples and 2436 amplicon sequencing libraries.
  • Utilized structural equation modelling and multiple regression analyses to assess relationships among variables.
  • Protist diversity positively correlated with ecosystem multifunctionality, carbon sequestration, soil organic matter decomposition, and nutrient cycling.
  • Microbial interaction networks restructured under drought, with protists identified as keystone taxa aiding in ecosystem resilience.

Abstract

ABSTRACT Soil protists significantly influence ecosystem multifunctionality (EMF) through their roles in microbial predation, parasitism, and organic matter decomposition. However, the multifaceted contributions of protist diversity, along with its interactions with other microbial groups and plant diversity, to EMF—especially under climate‐induced stresses such as drought—remain poorly understood. To address this knowledge gap, we conducted a factorial microcosm experiment, manipulating microbial diversity (protists, bacteria and fungi), plant species richness, and drought stress. In total, 203 microcosms were established, generating 812 soil samples and 2436 amplicon sequencing libraries. Using structural equation modelling (SEM) and multiple regression analyses, we found that protist diversity was positively correlated with EMF, carbon sequestration, soil organic matter (SOM) decomposition, and nutrient cycling. Furthermore, protist communities exhibited distinct, phylum‐specific relationships with these ecosystem functions. Under drought conditions, microbial interaction networks experienced significant restructuring, with protists emerging as keystone taxa—enhancing protist connectivity and highlighting their central role in ecosystem resilience, especially in relation to leaf carbon dynamics. Our findings provide novel empirical evidence that protists act as multitrophic integrators in soil ecosystems and highlight their role in buffering ecosystems against global environmental change.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/6966f31d13bf7a6f02c00d22https://doi.org/10.1111/gcb.70692
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