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A Plant Stress-Responsive Bioreporter Coupled With Transcriptomic Analysis Allows Rapid Screening for Biocontrols of Necrotrophic Fungal Pathogens. | LitMetric

A Plant Stress-Responsive Bioreporter Coupled With Transcriptomic Analysis Allows Rapid Screening for Biocontrols of Necrotrophic Fungal Pathogens.

Front Mol Biosci

Commonwealth Scientific and Industrial Research Organisation (CSIRO) Agriculture and Food, Acton, ACT, Australia.

Published: September 2021

AI Article Synopsis

  • Soil-borne Actinobacteria produce various enzymes, phytohormones, and antifungal compounds, making them potential biocontrol agents in agriculture.
  • Researchers used a plant reporter gene construct linked to luciferase to screen Actinobacteria for their ability to influence plant stress responses.
  • The study highlighted the isolate KB001 as a promising candidate, successfully protecting Arabidopsis plants from certain fungal pathogens and inducing stress-related genes and signaling pathways.

Article Abstract

are soil-borne Actinobacteria known to produce a wide range of enzymes, phytohormones, and metabolites including antifungal compounds, making these microbes fitting for use as biocontrol agents in agriculture. In this study, a plant reporter gene construct comprising the biotic stress-responsive glutathione S-transferase promoter GSTF7 linked to a luciferase output (GSTF7:luc) was used to screen a collection of Actinobacteria candidates for manipulation of plant biotic stress responses and their potential as biocontrol agents. We identified a isolate (KB001) as a strong candidate and demonstrated successful protection against two necrotrophic fungal pathogens, and , but not against a bacterial pathogen (). Treatment of Arabidopsis plants with either KB001 microbial culture or its secreted compounds induced a range of stress and defense response-related genes like pathogenesis-related (PR) and hormone signaling pathways. Global transcriptomic analysis showed that both treatments shared highly induced expression of reactive oxygen species and auxin signaling pathways at 6 and 24 h posttreatment, while some other responses were treatment specific. This study demonstrates that GSTF7 is a suitable marker for the rapid and preliminary screening of beneficial bacteria and selection of candidates with potential for application as biocontrols in agriculture, including the KB001 that was characterized here, and could provide protection against necrotrophic fungal pathogens.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8446517PMC
http://dx.doi.org/10.3389/fmolb.2021.708530DOI Listing

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