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Candidate Essential Genes in Burkholderia cenocepacia J2315 Identified by Genome-Wide TraDIS

机译:全基因组TraDIS鉴定的新伯克霍尔德菌J2315候选基本基因

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摘要

Burkholderia cenocepacia infection often leads to fatal cepacia syndrome in cystic fibrosis patients. However, antibiotic therapy rarely results in complete eradication of the pathogen due to its intrinsic resistance to many clinically available antibiotics. Recent attention has turned to the identification of essential genes as the proteins encoded by these genes may serve as potential targets for development of novel antimicrobials. In this study, we utilized TraDIS (Transposon Directed Insertion-site Sequencing) as a genome-wide screening tool to facilitate the identification of B. cenocepacia genes essential for its growth and viability. A transposon mutant pool consisting of approximately 500,000 mutants was successfully constructed, with more than 400,000 unique transposon insertion sites identified by computational analysis of TraDIS datasets. The saturated library allowed for the identification of 383 genes that were predicted to be essential in B. cenocepacia. We extended the application of TraDIS to identify conditionally essential genes required for in vitro growth and revealed an additional repertoire of 439 genes to be crucial for B. cenocepacia growth under nutrient-depleted conditions. The library of B. cenocepacia mutants can subsequently be subjected to various biologically related conditions to facilitate the discovery of genes involved in niche adaptation as well as pathogenicity and virulence.
机译:Burkholderia cenocepacia感染通常会在囊性纤维化患者中导致致命性cepacia综合征。然而,由于抗生素对许多临床可用抗生素的内在抗性,抗生素疗法很少导致病原体的完全根除。最近的注意力转向了鉴定必需基因,因为由这些基因编码的蛋白质可能充当新型抗菌素开发的潜在靶标。在这项研究中,我们利用TraDIS(转座子定向插入位点测序)作为全基因组筛选工具,以方便鉴定其新芽孢杆菌基因的生长和生存能力。成功构建了由大约500,000个突变体组成的转座子突变体库,并通过TraDIS数据集的计算分析确定了超过40万个独特的转座子插入位点。饱和文库可用于鉴定383个基因,这些基因预计在新细菌双歧杆菌中必不可少。我们扩展了TraDIS的应用,以鉴定体外生长所需的条件必需基因,并揭示了439个基因的额外组成部分,对营养缺乏条件下的葡萄球菌的生长至关重要。随后可将新酒双歧杆菌突变体的文库置于各种生物学相关条件下,以促进发现与生态位适应以及致病性和毒力有关的基因。

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