More Than the Sum of Its Parts: Microbiome Biodiversity as a Driver of Plant Growth and Soil Health
Больше, чем сумма составляющих: биоразнообразие микробиома как фактор роста растений и здоровья почвы
2019-07-23
SCID: 54.1/ugyd4a7p
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biodiversity–ecosystem functioningmicrobiome biodiversityplant growthsoil healthsoil microbiome functionality
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Abstract (AI)
Microorganisms drive several processes needed for robust plant growth and health. Harnessing microbial functions is thus key to productive and sustainable food production. Molecular methods have led to a greater understanding of the soil microbiome composition. However, translating species or gene composition into microbiome functionality remains a challenge. Community ecology concepts such as the biodiversity–ecosystem functioning framework may help predict the assembly and function of plant-associated soil microbiomes. Higher diversity can increase the number and resilience of plant-beneficial functions that can be coexpressed and unlock the expression of plant-beneficial traits that are hard to obtain from any species in isolation. We combine well-established community ecology concepts with molecular microbiology into a workable framework that may enable us to predict and enhance soil microbiome functionality to promote robust plant growth in a global change context.
Key Findings
1
Higher microbiome biodiversity may increase the number and resilience of plant-beneficial functions expressed simultaneously.
2
Improved microbiome functionality could promote robust plant growth and soil health under global change conditions.
3
Microbial communities can unlock beneficial plant-associated traits that are difficult or impossible for individual species to provide alone.
4
Soil microbiome species or gene composition alone does not reliably predict community functionality, creating a major translational challenge.
5
The paper integrates biodiversity–ecosystem functioning concepts with molecular microbiology into a framework for predicting and enhancing soil microbiome functionality.
Research Object
Plant-associated soil microbiomes
Research Subject
How microbiome biodiversity drives the assembly, functionality, resilience, and coexpression of plant-beneficial traits supporting plant growth and soil health
Publication Details
Publication Date
2019-07-23
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