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首页> 外文期刊>Molecular Plant-Microbe Interactions >Contribution of rpfB to Cell-to-Cell Signal Synthesis, Virulence, and Vector Transmission of Xylella fastidiosa
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Contribution of rpfB to Cell-to-Cell Signal Synthesis, Virulence, and Vector Transmission of Xylella fastidiosa

机译:rpfB对小木鼠的细胞间信号合成,毒力和载体传播的贡献

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In Xylella fastidiosa the fatty acid signal molecule diffusible signaling factor (DSF) is produced and sensed by components of the regulation of pathogenicity factors (rpf) cluster; lack of DSF production in RpfF mutants results in a non-vector-transmissible phenotype yet cells are hypervirulent to grape. rpfB has not been characterized in Xylella fastidiosa, although its homolog has been suggested to be required for DSF synthesis in Xanthomonas campestris pv. campestris. We show that RpfB is involved in DSF processing in both Xylella fastidiosa and Xanthomonas campestris, affecting the profile of DSF-like fatty acids observed in thin-layer chromatography. Although three fatty acids whose production is dependent on RpfF were detected in Xylella fastidiosa and Xanthomonas campestris wild-type strains, their respective rpfB mutants accumulated primarily one chemical species. Although no quantifiable effect of rpfB on plant colonization by Xylella fastidiosa was found, insect colonization and transmission was reduced. Thus, RpfB apparently is involved in DSF processing, and like Xanthomonas campestris, Xylella fastidiosa also produces multiple DSF molecules. It is possible that Xylella fastidiosa coordinates host vector and plant colonization by varying the proportions of different forms of DSF signals via RpfB.
机译:在Xylella fastidiosa中,脂肪酸信号分子的扩散信号因子(DSF)是由致病因子(rpf)簇的调控成分产生和感知的。 RpfF突变体缺乏DSF产生导致非载体可传递的表型,但细胞对葡萄具有高毒力。 rpfB在Xylella fastidiosa中尚未得到鉴定,尽管有人建议将其同源物用于Xanthomonas campestris pv中的DSF合成。桔梗。我们显示RpfB参与了在小木杆菌和野油菜黄单胞菌的DSF处理中,影响了在薄层色谱法中观察到的DSF样脂肪酸的概况。尽管在鼠疫小木霉和野油菜黄单胞菌野生型菌株中检测到三种依赖于RpfF的脂肪酸,但它们各自的rpfB突变体主要积累了一种化学物质。尽管未发现rpfB对小叶小球藻定植在植物上的定量作用,但昆虫的定植和传播减少了。因此,RpfB显然参与了DSF的加工,就像Xanthomonas campestris一样,fastylosa也可产生多个DSF分子。枯草杆菌可能通过改变RpfB改变不同形式的DSF信号的比例来协调宿主载体和植物定植。

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