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Roles of the Structural Symbiosis Polysaccharide (syp) Genes in Host Colonization Biofilm Formation and Polysaccharide Biosynthesis in Vibrio fischeri

机译:结构共生多糖(syp)基因在费氏弧菌宿主定殖生物膜形成和多糖生物合成中的作用

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摘要

The symbiosis polysaccharide locus, syp, is required for Vibrio fischeri to form a symbiotic association with the squid Euprymna scolopes. It is also required for biofilm formation induced by the unlinked regulator RscS. The syp locus includes 18 genes that can be classified into four groups based on putative function: 4 genes encode putative regulators, 6 encode glycosyltransferases, 2 encode export proteins, and the remaining 6 encode proteins with other functions, including polysaccharide modification. To understand the roles of each of the 14 structural syp genes in colonization and biofilm formation, we generated nonpolar in-frame deletions of each gene. All of the deletion mutants exhibited defects in their ability to colonize juvenile squid, although the impact of the loss of SypB or SypI was modest. Consistent with their requirement for colonization, most of the structural genes were also required for RscS-induced biofilm formation. In particular, the production of wrinkled colonies, pellicles, and the matrix on the colony surface was eliminated or severely decreased in all mutants except for the sypB and sypI mutants; in contrast, only a subset of genes appeared to play a role in attachment to glass. Finally, immunoblotting data suggested that the structural Syp proteins are involved in polysaccharide production and/or export. These results provide important insights into the requirements for the syp genes under different environmental conditions and thus lay the groundwork for a more complete understanding of the matrix produced by V. fischeri to enhance cell-cell interactions and promote symbiotic colonization.
机译:共生多糖位点syp是费氏弧菌与鱿鱼Euprymna form形成共生关系所必需的。对于未连接的调节剂RscS诱导的生物膜形成,它也是必需的。 syp基因座包含18个基因,可根据推定功能将其分为四类:4个基因编码推定的调节子,6个基因编码糖基转移酶,2个编码出口蛋白,其余6个编码具有其他功能(包括多糖修饰)的蛋白。为了了解14个结构性syp基因中每个基因在定殖和生物膜形成中的作用,我们生成了每个基因的非极性框内缺失。尽管缺失SypB或SypI的影响不大,但所有缺失突变体均显示出其在未成年鱿鱼定殖能力上的缺陷。与它们对定植的要求一致,大多数结构基因也是RscS诱导的生物膜形成所必需的。尤其是,除sypB和sypI突变体外,所有突变体中皱纹菌落,防护膜和菌落表面基质的产生均被消除或严重降低。相反,只有一部分基因似乎在玻璃附着中起作用。最后,免疫印迹数据表明结构性Syp蛋白与多糖的产生和/或输出有关。这些结果为在不同环境条件下对syp基因的需求提供了重要见识,从而为更完整地了解费氏弧菌产生的基质以增强细胞之间的相互作用并促进共生定殖奠定了基础。

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