Structure and Function of the Bacterial Root Microbiota in Wild and Domesticated Barley

Структура и функции бактериальной микробиоты корней дикого и культурного ячменя
Alice C. McHardy, Paul Schulze‐Lefert, Johannes Dröge, Rubén Garrido‐Oter, Philipp C. Münch, Davide Bulgarelli, Aaron Weiman, Yao Pan
2015-02-26

16S rRNA gene profilingbarley domesticationbarley root microbiotaroot-soil interfaceshotgun metagenomics
The microbial communities inhabiting the root interior of healthy plants, as well as the rhizosphere, which consists of soil particles firmly attached to roots, engage in symbiotic associations with their host. To investigate the structural and functional diversification among these communities, we employed a combination of 16S rRNA gene profiling and shotgun metagenome analysis of the microbiota associated with wild and domesticated accessions of barley (Hordeum vulgare). Bacterial families Comamonadaceae, Flavobacteriaceae, and Rhizobiaceae dominate the barley root-enriched microbiota. Host genotype has a small, but significant, effect on the diversity of root-associated bacterial communities, possibly representing a footprint of barley domestication. Traits related to pathogenesis, secretion, phage interactions, and nutrient mobilization are enriched in the barley root-associated microbiota. Strikingly, protein families assigned to these same traits showed evidence of positive selection. Our results indicate that the combined action of microbe-microbe and host-microbe interactions drives microbiota differentiation at the root-soil interface.
1
Barley host genotype has a small but significant effect on root-associated bacterial community diversity, potentially reflecting domestication.
2
Barley root-associated microbiota are enriched in traits related to pathogenesis, secretion, phage interactions, and nutrient mobilization.
3
Comamonadaceae, Flavobacteriaceae, and Rhizobiaceae dominate bacterial communities enriched in barley roots.
4
Microbiota differentiation at the root–soil interface is driven by combined microbe–microbe and host–microbe interactions.
5
Protein families involved in these enriched traits show evidence of positive selection.

Bacterial root microbiota associated with wild and domesticated barley

Structural and functional diversification of the microbiota, including host-genotype effects, enriched functional traits, positive selection, and microbe–microbe and host–microbe interactions

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2015-02-26
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Alice C. McHardy
Paul Schulze‐Lefert
Johannes Dröge
Rubén Garrido‐Oter
Philipp C. Münch
Davide Bulgarelli
Aaron Weiman
Yao Pan
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