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首页> 外文期刊>Applied Microbiology >Calcium-Enhanced Twitching Motility in Xylella fastidiosa Is Linked to a Single PilY1 Homolog
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Calcium-Enhanced Twitching Motility in Xylella fastidiosa Is Linked to a Single PilY1 Homolog

机译:Xylella fastidiosa中钙增强的抽搐运动与单个PilY1同源物相关联

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摘要

The plant-pathogenic bacterium Xylella fastidiosa is restricted to the xylem vessel environment, where mineral nutrients are transported through the plant host; therefore, changes in the concentrations of these elements likely impact the growth and virulence of this bacterium. Twitching motility, dependent on type IV pili (TFP), is required for movement against the transpiration stream that results in basipetal colonization. We previously demonstrated that calcium (Ca) increases the motility of X. fastidiosa , although the mechanism was unknown. PilY1 is a TFP structural protein recently shown to bind Ca and to regulate twitching and adhesion in bacterial pathogens of humans. Sequence analysis identified three pilY1 homologs in X. fastidiosa (PD0023, PD0502, and PD1611), one of which (PD1611) contains a Ca-binding motif. Separate deletions of PD0023 and PD1611 resulted in mutants that still showed twitching motility and were not impaired in attachment or biofilm formation. However, the response of increased twitching at higher Ca concentrations was lost in the pilY1 -1611 mutant. Ca does not modulate the expression of any of the X. fastidiosa PilY1 homologs, although it increases the expression of the retraction ATPase pilT during active movement. The evidence presented here suggests functional differences between the PilY1 homologs, which may provide X. fastidiosa with an adaptive advantage in environments with high Ca concentrations, such as xylem sap.
机译:植物致病性细菌Xylella fastidiosa仅限于木质部血管环境,在该环境中,矿物质营养素通过植物宿主被转运。因此,这些元素浓度的变化可能会影响该细菌的生长和毒力。依赖于IV型菌毛(TFP)的抽动运动是必需的,以抵抗导致基底足定植的蒸腾流。我们先前证明,钙(Ca)会增加X. fastidiosa的运动能力,尽管其机理尚不清楚。 PilY1是一种TFP结构蛋白,最近被证明可以结合Ca并调节人类细菌病原体中的抽搐和粘连。序列分析确定了X. fastidiosa(PD0023,PD0502和PD1611)中的三个pilY1同源物,其中之一(PD1611)包含一个Ca结合基序。 PD0023和PD1611的单独缺失导致突变体仍然显示抽搐运动力,并且在附着或生物膜形成方面没有受到损害。但是,在pilY1 -1611突变体中失去了在较高Ca浓度下增加抽搐的响应。 Ca不会调节任何X. fastidiosa PilY1同源物的表达,尽管它会在主动运动中增加收缩ATPase pilT的表达。此处提供的证据表明,PilY1同源物之间存在功能差异,这可能会在高Ca浓度的环境(例如木质部树液)中为Fast。X线虫提供适应性优势。

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