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◆ Nature microbiology2026-09-17

Functional capacities drive recruitment of bacteria into plant root microbiota.

Gijs Selten, Florian Lamouche, Adrián Gómez-Repollés, José Luiz López, Xiao-Mei Zhang, Caitlan Smart, Zuzana Blahovska, Geovanna Zarate Camargo, Simon Kelly, Ronnie de Jonge, Simona Radutoiu

原始摘要(英文原文)· Original abstract
Root-associated microbiomes are shaped by the plant, yet vary across environments and hosts, challenging prediction and engineering. Here, to uncover principles of bacterial selection at the root-soil interface, we applied a systems-level approach using reconstitution studies with communities of isolates from Arabidopsis, barley and Lotus grown in soil. Functional divergence among the microbiota of the host plants reflected distinct strategies: in Arabidopsis and barley, recruitment was primarily shaped by inoculum, while Lotus root environment favoured fewer, functionally diverse isolates, akin to a 'Swiss army knife' strategy. Despite taxonomic variability, root microbiomes encoded overlapping functions. Across major taxa, isolates with broad but distinct functional repertoires within their families were consistently more abundant. Using a genome-to-function framework that is function centric, taxonomically inclusive and host-context aware, we identified 266 functions enriched across all root microbiomes. This functional backbone emerged as a core signature of plant-associated bacteria, providing a solid foundation for microbiome engineering in agriculture.
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Functional capacities drive recruitment of bacteria into plant root microbiota. — 科研速览 Science Skim