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木糖葡萄球菌依赖的韧皮部杆菌调控基因。

RpfF-dependent regulon of Xylella fastidiosa.

机构信息

Department of Plant and Microbial Biology, University of California, Berkeley 94720, USA.

出版信息

Phytopathology. 2012 Nov;102(11):1045-53. doi: 10.1094/PHYTO-07-12-0146-R.

Abstract

ABSTRACT Xylella fastidiosa regulates traits important to both virulence of grape as well as colonization of sharpshooter vectors via its production of a fatty acid signal molecule known as DSF whose production is dependent on rpfF. Although X. fastidiosa rpfF mutants exhibit increased virulence to plants, they are unable to be spread from plant to plant by insect vectors. To gain more insight into the traits that contribute to these processes, a whole-genome Agilent DNA microarray for this species was developed and used to determine the RpfF-dependent regulon by transcriptional profiling. In total, 446 protein coding genes whose expression was significantly different between the wild type and an rpfF mutant (false discovery rate < 0.05) were identified when cells were grown in PW liquid medium. Among them, 165 genes were downregulated in the rpfF mutant compared with the wild-type strain whereas 281 genes were over-expressed. RpfF function was required for regulation of 11 regulatory and σ factors, including rpfE, yybA, PD1177, glnB, rpfG, PD0954, PD0199, PD2050, colR, rpoH, and rpoD. In general, RpfF is required for regulation of genes involved in attachment and biofilm formation, enhancing expression of hemagglutinin genes hxfA and hxfB, and suppressing most type IV pili and gum genes. A large number of other RpfF-dependent genes that might contribute to virulence or insect colonization were also identified such as those encoding hemolysin and colicin V, as well as genes with unknown functions.

摘要

摘要 Xylella fastidiosa 通过其产生的一种称为 DSF 的脂肪酸信号分子来调节对葡萄的毒力以及对尖音库蚊载体的定殖都很重要的特性,而 DSF 的产生依赖于 rpfF。尽管 X. fastidiosa rpfF 突变体表现出对植物更高的毒力,但它们无法通过昆虫载体从一株植物传播到另一株植物。为了更深入地了解有助于这些过程的特性,开发了针对该物种的全基因组 Agilent DNA 微阵列,并通过转录谱分析来确定 RpfF 依赖性调控子。当细胞在 PW 液体培养基中生长时,总共鉴定出 446 个编码蛋白的基因,它们在野生型和 rpfF 突变体之间的表达有显著差异(错误发现率 < 0.05)。其中,与野生型菌株相比,rpfF 突变体中有 165 个基因下调,而 281 个基因过表达。RpfF 功能对于 11 个调节和 σ 因子的调节是必需的,包括 rpfE、yybA、PD1177、glnB、rpfG、PD0954、PD0199、PD2050、colR、rpoH 和 rpoD。一般来说,RpfF 需要调节与附着和生物膜形成有关的基因,增强血凝素基因 hxfA 和 hxfB 的表达,并抑制大多数 IV 型菌毛和口香糖基因。还鉴定出许多其他依赖于 RpfF 的基因,这些基因可能有助于毒力或昆虫定殖,例如编码溶菌酶和 colicin V 的基因以及具有未知功能的基因。

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