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首页> 外文期刊>Frontiers in Microbiology >Analyzing AbrB-Knockout Effects through Genome and Transcriptome Sequencing of Bacillus licheniformis DW2
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Analyzing AbrB-Knockout Effects through Genome and Transcriptome Sequencing of Bacillus licheniformis DW2

机译:通过地衣芽孢杆菌 DW2基因组和转录组测序分析AbrB基因敲除效应

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As an industrial bacterium, Bacillus licheniformis DW2 produces bacitracin which is an important antibiotic for many pathogenic microorganisms. Our previous study showed AbrB-knockout could significantly increase the production of bacitracin. Accordingly, it was meaningful to understand its genome features, expression differences between wild and AbrB-knockout (ΔAbrB) strains, and the regulation of bacitracin biosynthesis. Here, we sequenced, de novo assembled and annotated its genome, and also sequenced the transcriptomes in three growth phases. The genome of DW2 contained a DNA molecule of 4,468,952 bp with 45.93% GC content and 4,717 protein coding genes. The transcriptome reads were mapped to the assembled genome, and obtained 4,102~4,536 expressed genes from different samples. We investigated transcription changes in B. licheniformis DW2 and showed that ΔAbrB caused hundreds of genes up-regulation and down-regulation in different growth phases. We identified a complete bacitracin synthetase gene cluster, including the location and length of bacABC, bcrABC , and bacT , as well as their arrangement. The gene cluster bcrABC were significantly up-regulated in ΔAbrB strain, which supported the hypothesis in previous study of bcrABC transporting bacitracin out of the cell to avoid self-intoxication, and was consistent with the previous experimental result that ΔAbrB could yield more bacitracin. This study provided a high quality reference genome for B. licheniformis DW2, and the transcriptome data depicted global alterations across two strains and three phases offered an understanding of AbrB regulation and bacitracin biosynthesis through gene expression.
机译:作为一种工业细菌,地衣芽孢杆菌DW2产生杆菌肽,杆菌肽是许多致病微生物的重要抗生素。我们先前的研究表明,敲除AbrB可以显着增加杆菌肽的产量。因此,了解其基因组特征,野生和AbrB基因敲除(ΔAbrB)菌株之间的表达差异以及杆菌肽生物合成的调控意义重大。在这里,我们测序,重新组装并注释了其基因组,并在三个生长阶段对转录组进行了测序。 DW2的基因组包含一个4,468,952 bp的DNA分子,具有45.93%的GC含量和4,717个蛋白质编码基因。将转录组读段定位到组装的基因组上,并从不同样品中获得4,102〜4,536个表达基因。我们调查了地衣芽孢杆菌DW2中的转录变化,结果表明ΔAbrB导致数百个基因在不同的生长阶段上调和下调。我们确定了一个完整的杆菌肽合成酶基因簇,包括bacABC,bcrABC和bacT的位置和长度,以及它们的排列方式。 ΔAbrB菌株中的bcrABC基因簇明显上调,这支持了先前bcrABC将杆菌肽转运到细胞外以避免自身中毒的研究假说,并且与先前的实验结果一致,即ΔAbrB可以产生更多杆菌肽。这项研究为地衣芽孢杆菌DW2提供了高质量的参考基因组,并且转录组数据描述了两个菌株和三个阶段之间的全局变化,从而通过基因表达了解AbrB调控和杆菌肽的生物合成。

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