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从高分辨率比较基因组杂交推断出密切相关的链霉菌属物种天蓝链霉菌和变铅青链霉菌的代谢和进化见解。

Metabolic and evolutionary insights into the closely-related species Streptomyces coelicolor and Streptomyces lividans deduced from high-resolution comparative genomic hybridization.

机构信息

Microbial Sciences Division, Faculty of Health and Medical Sciences, University of Surrey, Guildford, UK.

出版信息

BMC Genomics. 2010 Dec 1;11:682. doi: 10.1186/1471-2164-11-682.

Abstract

BACKGROUND

Whilst being closely related to the model actinomycete Streptomyces coelicolor A3(2), S. lividans 66 differs from it in several significant and phenotypically observable ways, including antibiotic production. Previous comparative gene hybridization studies investigating such differences have used low-density (one probe per gene) PCR-based spotted arrays. Here we use new experimentally optimised 104,000 × 60-mer probe arrays to characterize in detail the genomic differences between wild-type S. lividans 66, a derivative industrial strain, TK24, and S. coelicolor M145.

RESULTS

The high coverage and specificity (detection of three nucleotide differences) of the new microarrays used has highlighted the macroscopic genomic differences between two S. lividans strains and S. coelicolor. In a series of case studies we have validated the microarray and have identified subtle changes in genomic structure which occur in the Asp-activating adenylation domains of CDA non-ribosomal peptide synthetase genes which provides evidence of gene shuffling between these domains. We also identify single nucleotide sequence inter-species differences which exist in the actinorhodin biosynthetic gene cluster. As the glyoxylate bypass is non-functional in both S. lividans strains due to the absence of the gene encoding isocitrate lyase it is likely that the ethylmalonyl-CoA pathway functions as the alternative mechanism for the assimilation of C2 compounds.

CONCLUSIONS

This study provides evidence for widespread genetic recombination, rather than it being focussed at 'hotspots', suggesting that the previously proposed 'archipelago model' of genomic differences between S. coelicolor and S. lividans is unduly simplistic. The two S. lividans strains investigated differ considerably in genetic complement, with TK24 lacking 175 more genes than its wild-type parent when compared to S. coelicolor. Additionally, we confirm the presence of bldB in S. lividans and deduce that S. lividans 66 and TK24, both deficient in the glyoxylate bypass, possess an alternative metabolic mechanism for the assimilation of C2 compounds. Given that streptomycetes generally display high genetic instability it is envisaged that these high-density arrays will find application for rapid assessment of genome content (particularly amplifications/deletions) in mutational studies of S. coelicolor and related species.

摘要

背景

尽管与模式放线菌变铅青链霉菌 A3(2)密切相关,但链霉菌 lividans 66 在几个重要的表型观察方面与其不同,包括抗生素的产生。之前使用低密度(每个基因一个探针)基于 PCR 的点杂交进行的比较基因杂交研究已经调查了这些差异。在这里,我们使用新的经过实验优化的 104,000×60-mer 探针阵列来详细描述野生型链霉菌 lividans 66、衍生工业菌株 TK24 和变铅青链霉菌 M145 之间的基因组差异。

结果

新微阵列的高覆盖率和特异性(检测到三个核苷酸差异)突出了两种链霉菌 lividans 菌株和变铅青链霉菌之间的宏观基因组差异。在一系列案例研究中,我们验证了微阵列,并确定了 CDA 非核糖体肽合成酶基因的天冬氨酸激活腺苷酸化结构域中发生的细微基因组结构变化,这为这些结构域之间的基因重排提供了证据。我们还确定了放线紫红素生物合成基因簇中存在的种间单核苷酸序列差异。由于两种链霉菌 lividans 菌株中都不存在编码异柠檬酸裂解酶的基因,因此乙醛酸旁路是无功能的,因此很可能是乙基丙二酰辅酶 A 途径作为 C2 化合物同化的替代机制。

结论

这项研究提供了广泛的遗传重组证据,而不是集中在“热点”上,这表明先前提出的变铅青链霉菌和链霉菌 lividans 之间基因组差异的“群岛模型”过于简单。所研究的两种链霉菌 lividans 菌株在遗传组成上有很大差异,与变铅青链霉菌相比,TK24 缺少 175 个以上的基因。此外,我们证实了 bldB 在链霉菌 lividans 中的存在,并推断出两种链霉菌 lividans 66 和 TK24 都缺乏乙醛酸旁路,它们具有用于同化 C2 化合物的替代代谢机制。鉴于链霉菌通常表现出高度的遗传不稳定性,可以设想这些高密度阵列将在变铅青链霉菌和相关物种的突变研究中用于快速评估基因组内容(特别是扩增/缺失)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2923/3017869/2409b164e0f4/1471-2164-11-682-1.jpg

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