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高产莫匹罗星产生菌的高质量基因组注释和表达可视化。

High quality genome annotation and expression visualisation of a mupirocin-producing bacterium.

机构信息

School of Biosciences, University of Birmingham, Edgbaston, Birmingham, United Kingdom.

Manufacturing Science and Technology, GlaxoSmithKline, Worthing, West Sussex, United Kingdom.

出版信息

PLoS One. 2022 May 5;17(5):e0268072. doi: 10.1371/journal.pone.0268072. eCollection 2022.

Abstract

Pseudomonas strain NCIMB10586, in the P. fluorescens subgroup, produces the polyketide antibiotic mupirocin, and has potential as a host for industrial production of a range of valuable products. To underpin further studies on its genetics and physiology, we have used a combination of standard and atypical approaches to achieve a quality of the genome sequence and annotation, above current standards for automated pathways. Assembly of Illumina reads to a PacBio genome sequence created a retrospectively hybrid assembly, identifying and fixing 415 sequencing errors which would otherwise affect almost 5% of annotated coding regions. Our annotation pipeline combined automation based on related well-annotated genomes and stringent, partially manual, tests for functional features. The strain was close to P. synxantha and P. libaniensis and was found to be highly similar to a strain being developed as a weed-pest control agent in Canada. Since mupirocin is a secondary metabolite whose production is switched on late in exponential phase, we carried out RNAseq analysis over an 18 h growth period and have developed a method to normalise RNAseq samples as a group, rather than pair-wise. To review such data we have developed an easily interpreted way to present the expression profiles across a region, or the whole genome at a glance. At the 2-hour granularity of our time-course, the mupirocin cluster increases in expression as an essentially uniform bloc, although the mupirocin resistance gene stands out as being expressed at all the time points.

摘要

假单胞菌菌株 NCIMB10586 属于荧光假单胞菌亚群,能够产生聚酮类抗生素莫匹罗星,并且具有作为一系列有价值产品工业生产宿主的潜力。为了进一步研究其遗传学和生理学,我们结合使用了标准和非典型方法,以获得超过当前自动化途径标准的基因组序列和注释质量。Illumina 读取与 PacBio 基因组序列的组装创建了一个回溯性杂交组装,鉴定并修复了 415 个测序错误,否则这些错误将影响近 5%的注释编码区域。我们的注释管道结合了基于相关注释良好的基因组的自动化和针对功能特征的严格、部分手动测试。该菌株与 P. synxantha 和 P. libaniensis 非常接近,并且与正在加拿大开发的一种用于防治杂草害虫的菌株高度相似。由于莫匹罗星是一种次级代谢产物,其生产在指数期后期被激活,我们在 18 小时的生长周期中进行了 RNAseq 分析,并开发了一种方法将 RNAseq 样本作为一组进行归一化,而不是两两归一化。为了审查此类数据,我们开发了一种简单易读的方法,可以在一个区域或整个基因组上一目了然地呈现表达谱。在我们时间过程的 2 小时粒度下,莫匹罗星簇作为一个基本均匀的块增加表达,尽管莫匹罗星抗性基因在所有时间点都表现出表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3789/9070926/54393be92e23/pone.0268072.g001.jpg

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