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Rhizosphere-Associated Pseudomonas Suppress Local Root Immune Responses by Gluconic Acid-Mediated Lowering of Environmental pH

Curr Biol.. 2019; 
Yu K1, Liu Y2, Tichelaar R1, Savant N1, Lagendijk E3, van Kuijk SJL1, Stringlis IA1, van Dijken AJH1, Pieterse CMJ1, Bakker PAHM1, Haney CH2, Berendsen RL4.
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Peptide Synthesis … Chemicals, Peptides, and Recombinant Proteins. Flg22 Pa, GenScript, Cat# RP19986. Flg22
417 : QRLSTGLSINSAKDNASGLQIS, GenScript, N/A. Flg22 358 : QRLSSGLRINSAKDDAAGLQIA,
GenScript, N/A. Rifampicin, CAS# 13292-46-1, Duchefa, Cat# R0146 …
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摘要

The root microbiome consists of commensal, pathogenic, and plant-beneficial microbes [1]. Most members of the root microbiome possess microbe-associated molecular patterns (MAMPs) similar to those of plant pathogens [2]. Their recognition can lead to the activation of host immunity and suppression of plant growth due to growth-defense tradeoffs [3, 4]. We found that 42% of the tested root microbiota, including the plant growth-promoting rhizobacteria Pseudomonas capeferrum WCS358 [5, 6] and Pseudomonas simiae WCS417 [6, 7], are able to quench local Arabidopsis thaliana root immune responses that are triggered by flg22 [8], an immunogenic epitope of the MAMP flagellin [9], suggesting that this is an important... More

关键词

beneficial microbes; gluconic acid; immune suppression; induced systemic resistance; plant immunity; plant microbiome; rhizosphere competence