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Identification of novel virulence genes of Salmonella enterica using an Array Based Analysis of Cistrons Under Selection.

机译:使用基于阵列的选择中的Cistron分析鉴定小肠沙门氏菌的新毒力基因。

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摘要

Pools of mutants of minimal complexity but maximal coverage of genes of interest facilitate screening for genes under selection in a particular environment. Prior to this work, mutants were generated by random transposon insertions, which yielded highly complex pools for in vivo studies. Recent advances in polymerase chain reaction (PCR)-based mutagenesis in bacteria using the lambda red recombinase, as well as whole genome sequencing, enable a more directed approach for the generation of mutants. The lambda red approach was used to construct individual mutants in 1,023 Salmonella enterica serovar Typhimurium genes, including almost all genes found in Salmonella, but not in related genera. All the mutations were confirmed simultaneously using a novel amplification strategy to produce labeled ribonucleic acid (RNA) from a T7 RNA polymerase promoter, introduced during the construction of each mutant, followed by hybridization of this labeled RNA to a Typhimurium genome tiling array. To demonstrate the ability to identify fitness phenotypes using our pool of mutants, the pool was subjected to selection by intraperitoneal injection into BALB/c (Bagg Albino) mice and was recovered from the spleen. Changes in the representation of each mutant were monitored using T7 transcripts hybridized to a novel inexpensive minimal microarray. Among the top 120 statistically significant spleen colonization phenotypes, 51 were mutations in genes with no previously known role in this model. Fifteen phenotypes were tested using individual mutants in competitive assays and eleven were confirmed in individual mixed intraperitoneal infection in mice, including the first two examples of attenuation for sRNA mutants in Salmonella. We refer to our method as Array-Based Analysis of Cistrons Under Selection (ABACUS).;Among the confirmed mutants identified in the ABACUS screen was a component of the twin arginine transport (Tat) system, tatC, required for transport of folded proteins across the cellular membrane. TatC is the highly conserved component necessary for recognition of the twin arginine containing signal sequence S/T-R-R-x-F-L-K. We confirmed DeltatatC mutants are defective for colonization of the liver and spleen in competitive infections with wild type ATCC14028 after intraperitoneal infection in Salmonella-susceptible (BALB/c). We also found that DeltatatC mutants were defective for swimming motility, but not swarming motility, which was linked to the ability to elaborate flagellins on the bacterial surface under different conditions.
机译:具有最小复杂度但最大覆盖目的基因的突变体库有助于筛选在特定环境中选择的基因。在这项工作之前,突变体是通过随机转座子插入而产生的,产生了用于体内研究的高度复杂的库。使用lambda红重组酶在细菌中进行基于聚合酶链反应(PCR)的诱变的最新进展以及全基因组测序,为突变体的产生提供了更直接的方法。 λ法用于构建1,023肠沙门氏菌鼠伤寒沙门氏菌基因中的单个突变体,包括几乎所有在沙门氏菌中发现的基因,但不在相关属中。使用新的扩增策略同时从T7 RNA聚合酶启动子产生标记的核糖核酸(RNA),同时确认所有突变,在每个突变体的构建过程中将其引入,然后将该标记的RNA与Typhimurium基因组平铺阵列杂交。为了证明使用我们的突变体库识别健身表型的能力,通过腹膜内注射到BALB / c(Bagg Albino)小鼠中对库进行选择,并从脾脏中回收。使用与新型廉价的最小微阵列杂交的T7转录本监测每个突变体的表达变化。在前120个具有统计学意义的脾脏定殖表型中,有51个是该模型中以前未知的基因突变。在竞争试验中使用单个突变体测试了15种表型,在小鼠的单个混合腹膜内感染中证实了11种表型,包括沙门氏菌中sRNA突变体减毒的前两个例子。我们将我们的方法称为基于选择的Cistron的基于阵列的分析(ABACUS)。在ABACUS筛选中确定的已确认突变体是双精氨酸转运(Tat)系统tatC的组成部分,该系统是折叠蛋白跨转运的必需条件细胞膜。 TatC是识别含双精氨酸的信号序列S / T-R-R-x-F-L-K所必需的高度保守的成分。我们确认,在沙门氏菌易感性(BALB / c)腹膜内感染后,在野生型ATCC14028的竞争性感染中,DeltatatC突变体在肝脏和脾脏的定殖方面存在缺陷。我们还发现DeltatatC突变体在游泳运动方面有缺陷,但在蜂群运动方面没有缺陷,这与在不同条件下在细菌表面上细化鞭毛蛋白的能力有关。

著录项

  • 作者

    Reynolds, Mollie Megan.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Biology Genetics.;Biology Molecular.;Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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