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Evolutionarily conserved core microbiota as an extended trait in nitrogen acquisition strategy of herbaceous species

  • Saisai Cheng
  • , Xin Gong
  • , Wenfeng Xue
  • , Paul Kardol
  • , Manuel Delgado-Baquerizo
  • , Ning Ling
  • , Xiaoyun Chen
  • , Manqiang Liu
  • Nanjing Agricultural University
  • Swedish University of Agricultural Sciences
  • CSIC - Institute of Natural Resources and Agrobiology of Seville
  • Universidad Pablo de Olavide
  • Lanzhou University

Research output: Contribution to journalArticlepeer-review

34 Citations (Scopus)

Abstract

Microbiota have co-evolved with plants over millions of years and are intimately linked to plants, ranging from symbiosis to pathogenesis. However, our understanding of the existence of a shared core microbiota across phylogenetically diverse plants remains limited. A common garden field experiment was conducted to investigate the rhizosphere microbial communities of phylogenetically contrasting herbaceous families. Through a combination of metagenomic sequencing, analysis of plant economic traits, and soil biochemical properties, we aimed to elucidate the eco-evolutionary role of the core rhizosphere microbiota in light of plant economic strategies. We identified a conserved core microbiota consisting of 278 taxa that was closely associated with the phylogeny of the plants studied. This core microbiota actively participated in multiple nitrogen metabolic processes and showed a strong correlation with the functional potential of rhizosphere nitrogen cycling, thereby serving as an extended trait in the plant nitrogen acquisition. Furthermore, our examination of simulated species loss revealed the crucial role of the core microbiota in maintaining the rhizosphere community's network stability. Our study highlighted that the core microbiota, which exhibited a phylogenetically conserved association with plants, potentially represented an extension of the plant phenotype and played an important role in nitrogen acquisition. These findings held implications for the utilization of microbiota-mediated plant functions.
Original languageEnglish
Pages (from-to)1570-1584
Number of pages15
JournalNew Phytologist
Volume244
Issue number4
DOIs
Publication statusPublished - Nov 2024
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2024 The Author(s). New Phytologist © 2024 New Phytologist Foundation.

Keywords

  • core microbiota
  • ecological networks
  • functional traits
  • holobiont
  • metagenomics
  • nitrogen cycling
  • phylogenetic associations

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