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球形红细菌2.4.1中基因重复的进化限制与表达分析

Evolutionary constraints and expression analysis of gene duplications in Rhodobacter sphaeroides 2.4.1.

作者信息

Peters Anne E, Bavishi Anish, Cho Hyuk, Choudhary Madhusudan

机构信息

Department of Biological Sciences, Sam Houston State University, Huntsville, TX 77341, USA.

出版信息

BMC Res Notes. 2012 Apr 25;5:192. doi: 10.1186/1756-0500-5-192.

Abstract

BACKGROUND

Gene duplication is a major force that contributes to the evolution of new metabolic functions in all organisms. Rhodobacter sphaeroides 2.4.1 is a bacterium that displays a wide degree of metabolic versatility and genome complexity and therefore is a fitting model for the study of gene duplications in bacteria. A comprehensive analysis of 234 duplicate gene-pairs in R. sphaeroides was performed using structural constraint and expression analysis.

RESULTS

The results revealed that most gene-pairs in in-paralogs are maintained under negative selection (ω ≤  0.3), but the strength of selection differed among in-paralog gene-pairs. Although in-paralogs located on different replicons are maintained under purifying selection, the duplicated genes distributed between the primary chromosome (CI) and the second chromosome (CII) are relatively less selectively constrained than the gene-pairs located within each chromosome. The mRNA expression patterns of duplicate gene-pairs were examined through microarray analysis of this organism grown under seven different growth conditions. Results revealed that ~62% of paralogs have similar expression patterns (cosine ≥ 0.90) over all of these growth conditions, while only ~7% of paralogs are very different in their expression patterns (cosine < 0.50).

CONCLUSIONS

The overall findings of the study suggest that only a small proportion of paralogs contribute to the metabolic diversity and the evolution of novel metabolic functions in R. sphaeroides. In addition, the lack of relationships between structural constraints and gene-pair expression suggests that patterns of gene-pair expression are likely associated with conservation or divergence of gene-pair promoter regions and other coregulation mechanisms.

摘要

背景

基因复制是推动所有生物体新代谢功能进化的主要力量。球形红细菌2.4.1是一种具有广泛代谢多样性和基因组复杂性的细菌,因此是研究细菌基因复制的合适模型。利用结构约束和表达分析对球形红细菌中的234对重复基因进行了全面分析。

结果

结果显示,大多数旁系同源基因对处于负选择(ω≤0.3)之下,但旁系同源基因对之间的选择强度有所不同。虽然位于不同复制子上的旁系同源基因处于纯化选择之下,但分布在主染色体(CI)和第二染色体(CII)之间的重复基因比位于每条染色体内的基因对受到的选择约束相对较少。通过对在七种不同生长条件下生长的该生物体进行微阵列分析,研究了重复基因对的mRNA表达模式。结果显示,在所有这些生长条件下,约62%的旁系同源基因具有相似的表达模式(余弦≥0.90),而只有约7%的旁系同源基因在表达模式上差异很大(余弦<0.50)。

结论

该研究的总体结果表明,只有一小部分旁系同源基因对球形红细菌的代谢多样性和新代谢功能的进化有贡献。此外,结构约束与基因对表达之间缺乏关联表明,基因对表达模式可能与基因对启动子区域的保守或分歧以及其他共调控机制有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3ba/3494609/887d9216cce0/1756-0500-5-192-1.jpg

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