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The ISME Journal
Article . 2024 . Peer-reviewed
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The ISME Journal
Article . 2024
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Dryland microbiomes reveal community adaptations to desertification and climate change

Authors: orcid Coleine, Claudia;
Coleine, Claudia
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Coleine, Claudia in OpenAIRE
orcid Delgado-Baquerizo, Manuel;
Delgado-Baquerizo, Manuel
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Delgado-Baquerizo, Manuel in OpenAIRE
DiRuggiero, Jocelyne; orcid Guirado, Emilio;
Guirado, Emilio
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Guirado, Emilio in OpenAIRE
Harfouche, Antoine L.; orcid Perez-Fernandez, Cesar;
Perez-Fernandez, Cesar
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Perez-Fernandez, Cesar in OpenAIRE
orcid Singh, Brajesh K.;
Singh, Brajesh K.
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Singh, Brajesh K. in OpenAIRE
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Dryland microbiomes reveal community adaptations to desertification and climate change

Abstract

Abstract Drylands account for 45% of the Earth’s land area, supporting ~40% of the global population. These regions support some of the most extreme environments on Earth, characterized by extreme temperatures, low and variable rainfall, and low soil fertility. In these biomes, microorganisms provide vital ecosystem services and have evolved distinctive adaptation strategies to endure and flourish in the extreme. However, dryland microbiomes and the ecosystem services they provide are under threat due to intensifying desertification and climate change. In this review, we provide a synthesis of our current understanding of microbial life in drylands, emphasizing the remarkable diversity and adaptations of these communities. We then discuss anthropogenic threats, including the influence of climate change on dryland microbiomes and outline current knowledge gaps. Finally, we propose research priorities to address those gaps and safeguard the sustainability of these fragile biomes.

Country
Spain
Keywords

Conservation of Natural Resources, Hot Temperature, Anthropogenic impact, Climate Change, Microbiota, Drylands, Review Article, Dryland Microbiomes, Environmental Drivers,, Soil, Environmental Drivers, 52 Drylands, Ecosystem, Extreme Environments

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