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Unraveling complexity in climate change effects on beneficial plant-microbe interactions: mechanisms, resilience, and future directions
Journal article   Open access   Peer reviewed

Unraveling complexity in climate change effects on beneficial plant-microbe interactions: mechanisms, resilience, and future directions

Michelle E Afkhami, Aimée T Classen, Collin G Dice, Damian J Hernandez, Vicki W Li, Amanda H Rawstern, Jennifer A Rudgers, John R Stinchcombe and Kerri M Crawford
The New phytologist
2025-10-14
PMID: 41084918

Abstract

legacy effects drought plant–microbe mutualism microbiome resilience stability Salinity Climate Change
Plant microbiomes have the potential to mitigate the impacts of climate change, yet both the complexity of climate change and the complexity of plant-microbe interactions make applications and future predictions challenging. Here, we embrace this complexity, reviewing how different aspects of climate change influence beneficial plant-microbe interactions and how advances in theory, tools, and applications may improve understanding and predictability of climate change effects on plants, microbiomes, and their roles within ecosystems. New advances include consideration of (1) interactions among climate stressors, such as more variable precipitation regimes combined with warmer mean temperature; (2) mechanisms that promote the stability of microbiome functions; (3) legacies of stress affecting the functionality of microbial communities under future stress; and (4) temporally repeated plant-microbe interactions or feedbacks. We also identify key gaps in each of these areas and spotlight the need for more research bridging molecular biology and ecology to develop a more mechanistic understanding of how climate change shapes beneficial microbe-plant interactions.
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Unraveling complexity in climate change effects on beneficial plant-microbe interactions: mechanisms, resilience, and future directions4.21 MBDownloadView
Open Access CC BY V4.0
url
https://doi.org/10.1111/nph.70644View
Published (Version of record) Open

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Collaboration types
Domestic collaboration
International collaboration
Citation topics
3 Agriculture, Environment & Ecology
3.97 Plant Pathology
3.97.556 Microbial Biocontrol
Web Of Science research areas
Plant Sciences
ESI research areas
Plant & Animal Science

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