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Rootstocks and drought stress impact the composition and functionality of grapevine rhizosphere bacterial microbiota

  • David Labarga
  • , Andreu Mairata
  • , Miguel Puelles
  • , Adrian Wallner
  • , Aziz Aziz
  • , Pou Alicia
  • Spanish National Research Council (CSIC)
  • French National Research Institute for Agriculture, Food and the Environment (INRAE)
  • Laboratoire Résistance Induite et Bioprotection des Plantes (RIBP), Université de Reims Champagne-Ardenne (URCA)

Research output: Contribution to journalArticlepeer-review

Abstract

The microbiota, a component of the plant holobiont, plays an active role in the response to biotic and abiotic stresses. Nowadays, with recurrent drought and global warming, a growing challenge in viticulture is being addressed by different practices, including the use of adapted rootstocks. However, the relationships between these practices, abiotic stress and the composition and functions of the rhizosphere microbiota remain to be deciphered. This study aimed to unravel the impact of five rootstocks, water management and the combination of both on the rhizosphere bacterial microbiota in grapevines using shotgun metagenomics approach. The results showed that drought impacted the diversity, composition and functionality of the rhizosphere bacterial community. The genera Mycolicibacterium, Mycobacterium and Rhodococcus, and the bacterial functions, including DNA damage repair, fatty acid synthesis, sugar and amino acid transport, oxidative stress reduction, toxin synthesis and detoxification of exogenous compounds were significantly enriched under drought conditions. Rootstocks also significantly affected the rhizosphere bacterial richness but its influence on diversity and functionality compared to water management was weaker. Some taxa and function could be linked to water managements applied. The interaction between rootstocks and water management further influenced the rhizosphere composition, especially under drought conditions, where distinct clustering was observed for specific rootstocks. The results highlight the importance of conducting multifactorial studies to better understand their impact on shaping functional rhizosphere bacterial communities. This study paves the way for future research on beneficial bacterial inoculation and genetic engineering of rootstock to cope with drought stress.
Original languageEnglish
Article number128073
Number of pages11
JournalMicrobiological Research
Volume293
Early online dateJan 2025
DOIs
Publication statusPublished - Apr 2025

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

Research Field

  • Exploration of Biological Resources

Keywords

  • Bacterial community
  • Climate change
  • Drought
  • Grapevine
  • Rootstock
  • Shotgun metagenomics

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