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Soil-derived bacterial root commensals induce systemic alterations of defence-related secondary metabolism and response in tomato whole plants for favoring resistance against Fusarium wilt

2025-11-13

Abstract excerpt

<title>Abstract</title> <p> Aims Root-associated beneficial microbes orchestrate systemic defense priming in plants, yet the underlying metabolism-mediated plant-microbe interplay remains poorly understood. Methods Here, it was demonstrated that synthetic bacterial consortia ( <italic>Bacillus velezensis</italic> YY13, <italic>B</italic> . <italic>subtilis</italic> JN1, and <italic>Pseudomonas chlororaphi...

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Literature Corpus work
47e90c07-b947-5ea1-bd64-dfeae404c245
DOI
10.21203/rs.3.rs-7838786/v1
Open publication

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Soil-derived bacterial root commensals induce systemic alterations of defence-related secondary metabolism and response in tomato whole plants for favoring resistance against Fusarium wiltDOI 10.21203/rs.3.rs-7838786/v1
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