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链霉菌中 devA 样基因的复制和进化导致了不同的发育作用。

Duplication and evolution of devA-like genes in Streptomyces has resulted in distinct developmental roles.

机构信息

Strathclyde Institute of Pharmacy and Biomedical Science, University of Strathclyde, Glasgow, United Kingdom.

出版信息

PLoS One. 2011;6(10):e25049. doi: 10.1371/journal.pone.0025049. Epub 2011 Oct 5.

Abstract

Understanding morphological transformations is essential to elucidating the evolution and developmental biology of many organisms. The Gram-positive soil bacterium, Streptomyces coelicolor has a complex lifecycle which lends itself well to such studies. We recently identified a transcriptional regulator, devA, which is required for correct sporulation in this organism, with mutants forming short, mis-septate aerial hyphae. devA is highly conserved within the Streptomyces genus along with a duplicate copy, devE. Disruption of devE indicates this gene also plays a role in sporulation; however the phenotype of a devE mutant differs from a devA mutant, forming long un-septate aerial hyphae. Transcriptional analysis of devA and devE indicates that they are expressed at different stages of the lifecycle. This suggests that following duplication they have diverged in regulation and function. Analysis of fully sequenced actinomycete genomes shows that devA is found in a single copy in morphologically simpler actinobacteria, suggesting that duplication has lead to increased morphological complexity. Complementation studies with devA from Salinispora, which sporulates but does not form aerial hyphae, indicates the ancestral gene cannot complement devA or devE, suggesting neo-functionalisation has occurred. Analysis of the synonymous and non-synonymous nucleotide changes within the devA paralogues suggest subfunctionalisation has occurred as both copies have diverged from the ancestral sequences. Divergence is also asymmetric with a higher level of functional constraint observed in the DNA binding domain compared with the effector binding/oligomerisation domain, suggesting diversification in the substrate specificity of these paralogues has contributed to their evolution.

摘要

理解形态转变对于阐明许多生物体的进化和发育生物学至关重要。革兰氏阳性土壤细菌链霉菌属(Streptomyces coelicolor)具有复杂的生命周期,非常适合此类研究。我们最近鉴定出一种转录调节剂 devA,它是该生物体正确孢子形成所必需的,突变体形成短的、错误分隔的气生菌丝。devA 在链霉菌属中与重复副本 devE 高度保守。devE 的破坏表明该基因也在孢子形成中发挥作用;然而,devE 突变体的表型与 devA 突变体不同,形成长的无分隔气生菌丝。devA 和 devE 的转录分析表明它们在生命周期的不同阶段表达。这表明它们在复制后在调节和功能上已经分化。对完全测序的放线菌基因组的分析表明,devA 在形态上更简单的放线菌中仅以单拷贝形式存在,表明复制导致了形态复杂性的增加。用来自 Salinispora 的 devA 进行的互补研究表明,Salinispora 可以孢子形成但不形成气生菌丝,表明原始基因不能互补 devA 或 devE,表明发生了新功能化。对 devA 旁系同源物中的同义和非同义核苷酸变化的分析表明,亚功能化已经发生,因为两个拷贝都已经从祖先序列中分化出来。分化也是不对称的,与效应物结合/寡聚化结构域相比,DNA 结合结构域中的功能约束水平更高,这表明这些旁系同源物的底物特异性多样化促进了它们的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd09/3187754/1b3a0e1943c1/pone.0025049.g001.jpg

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