Microbial ecology of hot desert edaphic systems

Микробная экология эдафических систем жарких пустынь
Thulani P. Makhalanyane, Ángel Valverde, Eoin Gunnigle, Aline Frossard, Jean‐Baptiste Ramond, Don A. Cowan
2015-01-25

climate change feedbacksdesert soil microbial communitieshot desert microbial ecologymicrobial community assemblyplant-root-associated microbes
A significant proportion of the Earth's surface is desert or in the process of desertification. The extreme environmental conditions that characterize these areas result in a surface that is essentially barren, with a limited range of higher plants and animals. Microbial communities are probably the dominant drivers of these systems, mediating key ecosystem processes. In this review, we examine the microbial communities of hot desert terrestrial biotopes (including soils, cryptic and refuge niches and plant-root-associated microbes) and the processes that govern their assembly. We also assess the possible effects of global climate change on hot desert microbial communities and the resulting feedback mechanisms. We conclude by discussing current gaps in our understanding of the microbiology of hot deserts and suggest fruitful avenues for future research.
1
Community assembly in hot desert biotopes is governed by environmental processes examined across multiple microbial habitats.
2
Global climate change may alter hot desert microbial communities and generate feedbacks affecting desert ecosystem functioning.
3
Hot desert terrestrial microbial communities occupy soils, cryptic niches, refuge habitats, and plant-root-associated environments.
4
Major knowledge gaps remain in hot desert microbiology, motivating targeted future research on community processes and climate-related impacts.
5
Microbial communities likely dominate hot desert ecosystems and mediate key ecosystem processes where higher-plant and animal life is limited.

Microbial communities of hot desert terrestrial biotopes

Community assembly, ecosystem processes, and climate-change feedbacks governing hot desert microbial communities

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Publication Date
2015-01-25
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Authors
Thulani P. Makhalanyane
Ángel Valverde
Eoin Gunnigle
Aline Frossard
Jean‐Baptiste Ramond
Don A. Cowan
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