More Than the Sum of Its Parts: Microbiome Biodiversity as a Driver of Plant Growth and Soil Health
Publication date
2019-01-01
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taverne
Abstract
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.
Keywords
abiotic stress, biodiversity-ecosystem functioning, disease suppression, microbial ecology, microbiome, nutrient cycling, plant-microbe interaction, soil health, Taverne, Ecology, Evolution, Behavior and Systematics, Ecology, SDG 2 - Zero Hunger
Citation
Saleem, M, Hu, J & Jousset, A 2019, 'More Than the Sum of Its Parts : Microbiome Biodiversity as a Driver of Plant Growth and Soil Health', Annual Review of Ecology, Evolution, and Systematics, vol. 50, pp. 145-168. https://doi.org/10.1146/annurev-ecolsys-110617-062605