Arseneault Tanya, Goyer Claudia, Filion Martin
First and third authors: Université de Moncton, Department of Biology, Moncton, NB, Canada; and second author: Potato Research Center, Agriculture and Agri-Food Canada, Fredericton, NB, Canada.
Phytopathology. 2015 Oct;105(10):1311-7. doi: 10.1094/PHYTO-12-14-0358-R. Epub 2015 Sep 11.
Common scab of potato, caused by pathogenic Streptomyces spp., is an important disease not efficiently controlled by current methods. We previously demonstrated that Pseudomonas fluorescens LBUM223 reduces common scab development under controlled conditions through phenazine-1-carboxylic (PCA) production, leading to reduced thaxtomin A production by the pathogen, a key pathogenicity and virulence factor. Here, we aimed at determining if LBUM223 is able to increase potato yield and control common scab under field conditions, while characterizing the biocontrol mechanisms involved. We investigated if a reduction in pathogen soil populations, activation of induced systemic resistance in potato, and/or changes in txtA gene expression, involved in thaxtomin A biosynthesis in pathogenic Streptomyces spp. were involved in common scab control by LBUM223. Common scab symptoms were significantly reduced and total tuber weight increased by 46% using biweekly applications of LBUM223. LBUM223 did not reduce pathogen soil populations, nor was potato systemic defense-related gene expression significantly altered between treatments. However, a significant down-regulation of txtA expression occurred in the geocaulosphere. This is the first demonstration that a Pseudomonas strain can directly alter the transcriptional activity of a key pathogenesis gene in a plant pathogen under field conditions, contributing to disease control.
马铃薯普通疮痂病由致病链霉菌属引起,是一种重要病害,目前的防治方法效果不佳。我们之前证明荧光假单胞菌LBUM223在可控条件下通过产生吩嗪-1-羧酸(PCA)减少普通疮痂病的发生,从而导致病原菌致病关键毒力因子thaxtomin A的产量降低。在此,我们旨在确定LBUM223在田间条件下是否能够提高马铃薯产量并防治普通疮痂病,同时对其涉及的生物防治机制进行表征。我们研究了病原菌土壤数量的减少、马铃薯诱导系统抗性的激活和/或参与致病链霉菌属thaxtomin A生物合成的txtA基因表达的变化是否与LBUM223防治普通疮痂病有关。通过每两周施用一次LBUM223,普通疮痂病症状显著减轻,块茎总重量增加了46%。LBUM223并未减少病原菌土壤数量,处理之间马铃薯系统防御相关基因的表达也未发生显著变化。然而,在土球中txtA表达出现了显著下调。这首次证明了假单胞菌菌株能够在田间条件下直接改变植物病原菌关键致病基因的转录活性,从而有助于病害防治。