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Exploitation of a hockey-puck phenotype to identify pilus and biofilm regulators in Serratia marcescens through genetic analysis

机译:利用曲棍球表型通过遗传分析鉴定粘质沙雷氏菌中的菌毛和生物膜调节剂

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摘要

Pili are essential adhesive determinants for many bacterial pathogens. A suppressor mutation screen that takes advantage of a pilus-mediated self-aggregative “hockey-puck” colony phenotype was designed to identify novel regulators of type I pili in Serratia marcescens. Mutations that decreased pilus biosynthesis mapped to the fimABCD operon; to the genes alaT, fkpA, and oxyR; upstream of the flagellar master regulator operon flhDC; and to an uncharacterized gene encoding a predicted DUF1401 domain. biofilm formation and pilus-dependent agglutination assays were used to characterize the relative importance of the identified genes in pilus biosynthesis. Additional mutagenic or complementation analysis was used to verify the role of candidate genes in pilus biosynthesis. Presented data support a model that CRP negatively regulates pilus biosynthesis through increased expression of flhDC and decreased expression of oxyR. Further studies are warranted to determine the mechanism by which these genes mediate pilus biosynthesis or function.
机译:菌毛是许多细菌病原体必不可少的粘合剂决定因素。设计了利用菌毛介导的自聚集“曲棍球”菌落表型的抑制基因突变筛选,以鉴定粘质沙雷氏菌中I型菌毛的新型调控因子。菌毛生物合成减少的突变定位于fimABCD操纵子;基因alaT,fkpA和oxyR;鞭毛主调节器操纵子flhDC的上游;编码未知DUF1401结构域的基因。生物膜形成和菌毛依赖性凝集试验用于表征菌毛生物合成中已鉴定基因的相对重要性。使用其他诱变或互补分析来验证候选基因在菌毛生物合成中的作用。提出的数据支持一个模型,该模型通过增加flhDC的表达和降低oxyR的表达来负调节菌毛的生物合成。必须进行进一步的研究以确定这些基因介导菌毛生物合成或功能的机制。

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