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牛分枝杆菌谱系的全基因组分析揭示了单核苷酸多态性和反义转录在差异基因表达中的作用。

Genome-level analyses of Mycobacterium bovis lineages reveal the role of SNPs and antisense transcription in differential gene expression.

作者信息

Golby Paul, Nunez Javier, Witney Adam, Hinds Jason, Quail Michael A, Bentley Stephen, Harris Simon, Smith Noel, Hewinson R Glyn, Gordon Stephen V

机构信息

Animal Health and Veterinary Laboratories Agency, Woodham Lane, New Haw Addlestone, Surrey KT15 3NB, UK.

出版信息

BMC Genomics. 2013 Oct 17;14:710. doi: 10.1186/1471-2164-14-710.

Abstract

BACKGROUND

Bovine tuberculosis (bTB) is a disease with major implications for animal welfare and productivity, as well as having the potential for zoonotic transmission. In Great Britain (GB) alone, controlling bTB costs in the region of £ 100 million annually, with the current control scheme seemingly unable to stop the inexorable spread of infection. One aspect that may be driving the epidemic is evolution of the causative pathogen, Mycobacterium bovis. To understand the underlying genetic changes that may be responsible for this evolution, we performed a comprehensive genome-level analyses of 4 M. bovis strains that encompass the main molecular types of the pathogen circulating in GB.

RESULTS

We have used a combination of genome sequencing, transcriptome analyses, and recombinant DNA technology to define genetic differences across the major M. bovis lineages circulating in GB that may give rise to phenotypic differences of practical importance. The genomes of three M. bovis field isolates were sequenced using Illumina sequencing technology and strain specific differences in gene expression were measured during in vitro growth and in ex vivo bovine alveolar macrophages using a whole genome amplicon microarray and a whole genome tiled oligonucleotide microarray. SNP/small base pair insertion and deletions and gene expression data were overlaid onto the genomic sequence of the fully sequenced strain of M. bovis 2122/97 to link observed strain specific genomic differences with differences in RNA expression.

CONCLUSIONS

We show that while these strains show extensive similarities in their genetic make-up and gene expression profiles, they exhibit distinct expression of a subset of genes. We provide genomic, transcriptomic and functional data to show that synonymous point mutations (sSNPs) on the coding strand can lead to the expression of antisense transcripts on the opposing strand, a finding with implications for how we define a 'silent' nucleotide change. Furthermore, we show that transcriptomic data based solely on amplicon arrays can generate spurious results in terms of gene expression profiles due to hybridisation of antisense transcripts. Overall our data suggest that subtle genetic differences, such as sSNPS, may have important consequences for gene expression and subsequent phenotype.

摘要

背景

牛结核病(bTB)是一种对动物福利和生产力有重大影响的疾病,并且具有人畜共患病传播的可能性。仅在英国(GB),控制牛结核病每年的花费就在1亿英镑左右,而当前的控制方案似乎无法阻止感染的无情蔓延。可能推动这种流行病传播的一个因素是致病病原体牛分枝杆菌的进化。为了了解可能导致这种进化的潜在基因变化,我们对4株牛分枝杆菌菌株进行了全面的基因组水平分析,这些菌株涵盖了在英国传播的该病原体的主要分子类型。

结果

我们结合了基因组测序、转录组分析和重组DNA技术,以确定在英国传播的主要牛分枝杆菌谱系之间的基因差异,这些差异可能导致具有实际重要性的表型差异。使用Illumina测序技术对三株牛分枝杆菌野外分离株的基因组进行了测序,并使用全基因组扩增子微阵列和全基因组平铺寡核苷酸微阵列,在体外生长期间以及在体外牛肺泡巨噬细胞中测量了基因表达的菌株特异性差异。单核苷酸多态性/小碱基对插入和缺失以及基因表达数据被叠加到完全测序的牛分枝杆菌菌株2122/97的基因组序列上,以将观察到的菌株特异性基因组差异与RNA表达差异联系起来。

结论

我们表明,虽然这些菌株在基因组成和基因表达谱方面表现出广泛的相似性,但它们在一部分基因的表达上表现出明显差异。我们提供了基因组、转录组和功能数据,以表明编码链上的同义点突变(sSNP)可导致相反链上反义转录本的表达,这一发现对我们如何定义“沉默”核苷酸变化具有启示意义。此外,我们表明,由于反义转录本的杂交,仅基于扩增子阵列的转录组数据在基因表达谱方面可能产生虚假结果。总体而言,我们的数据表明,诸如sSNP等细微的基因差异可能对基因表达和随后的表型产生重要影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb6b/3856593/5a43d6c44e6a/1471-2164-14-710-1.jpg

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