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Biofilm-Constructing Variants of Paraburkholderia phytofirmans PsJN Outcompete the Wild-Type Form in Free-Living and Static Conditions but Not In Planta

机译:植物假单胞菌PsJN的生物膜构建变体在自由活动和静态条件下胜过野生型,但在植物中不胜过野生型。

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Members of the genus Burkholderia colonize diverse ecological niches. Among the plant-associated strains, Paraburkholderia phytofirmans PsJN is an endophyte with a broad host range. In a spatially structured environment (unshaken broth cultures), biofilm-constructing specialists of P. phytofirmans PsJN colonizing the air-liquid interface arose at high frequency. In addition to forming a robust biofilm in vitro and in planta on Arabidopsis roots, those mucoid phenotypic variants display a reduced swimming ability and modulate the expression of several microbe-associated molecular patterns (MAMPs), including exopolysaccharides (EPS), flagellin, and GroEL. Interestingly, the variants induce low PR1 and PDF1.2 expression compared to that of the parental strain, suggesting a possible evasion of plant host immunity. We further demonstrated that switching from the planktonic to the sessile form did not involve quorum-sensing genes but arose from spontaneous mutations in two genes belonging to an iron-sulfur cluster: hscA (encoding a cochaperone protein) and iscS (encoding a cysteine desulfurase). A mutational approach validated the implication of these two genes in the appearance of variants. We showed for the first time that in a heterogeneous environment, P. phytofirmans strain PsJN is able to rapidly diversify and coexpress a variant that outcompete the wild-type form in free-living and static conditions but not in planta.IMPORTANCEParaburkholderia phytofirmans strain PsJN is a well-studied plant-associated bacterium known to induce resistance against biotic and abiotic stresses. In this work, we described the spontaneous appearance of mucoid variants in PsJN from static cultures. We showed that the conversion from the wild-type (WT) form to variants (V) correlates with an overproduction of EPS, an enhanced ability to form biofilm in vitro and in planta, and a reduced swimming motility. Our results revealed also that these phenotypes are in part associated with spontaneous mutations in an iron-sulfur cluster. Overall, the data provided here allow a better understanding of the adaptive mechanisms likely developed by P. phytofirmans PsJN in a heterogeneous environment.
机译:伯克霍尔德氏菌属的成员定居各种生态位。在植物相关菌株中,植物假单胞菌PsJN是具有广泛宿主范围的内生菌。在空间结构化的环境中(肉汤培养未动摇),在气液界面定殖的P. phytofirmans PsJN生物膜构造专家频频出现。除了在拟南芥根上在体外和植物中形成坚固的生物膜外,这些粘液表型变体还显示出降低的游泳能力,并调节几种微生物相关分子模式(MAMP)的表达,包括胞外多糖(EPS),鞭毛蛋白和GroEL 。有趣的是,与亲本菌株相比,这些变体诱导了较低的PR1和PDF1.2表达,表明可能逃避了植物宿主的免疫力。我们进一步证明,从浮游形式转换为无梗形式并不涉及群体感应基因,而是由两个属于铁硫簇的基因的自发突变引起的:hscA(编码辅酶蛋白)和iscS(编码半胱氨酸脱硫酶) 。突变方法验证了这两个基因在变体出现中的含义。我们首次证明,在异质环境中,植物疫霉菌PsJN能够快速多样化并共表达在自由生活和静态条件下胜过野生型但在植物中却无法与野生型竞争的变异体。一种经过充分研究的植物相关细菌,已知可诱导对生物和非生物胁迫的抗性。在这项工作中,我们描述了静态培养中PsJN中黏液样变体的自发出现。我们表明,从野生型(WT)到变体(V)的转化与EPS的过量生产,体外和植物中形成生物膜的能力增强以及游泳运动降低有关。我们的结果还表明,这些表型与铁硫簇中的自发突变部分相关。总体而言,此处提供的数据可让您更好地了解异质环境中植物疫霉菌PsJN可能产生的适应性机制。

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