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Phycoerythrin evolution and diversification of spectral phenotype in marine Synechococcus and related picocyanobacteria

机译:藻红蛋白的进化和海洋表皮球菌及相关微蓝藻的光谱表型多样性

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In marine Synechococcus there is evidence for the adaptive evolution of spectrally distinct forms of the major light harvesting pigment phycoerythrin (PE). Recent research has suggested that these spectral forms of PE have a different evolutionary history than the core genome. However, a lack of explicit statistical testing of alternative hypotheses or for selection on these genes has made it difficult to evaluate the evolutionary relationships between spectral forms of PE or the role horizontal gene transfer (HGT) may have had in the adaptive phenotypic evolution of the pigment system in marine Synechococcus. In this work, PE phylogenies of picocyanobacteria with known spectral phenotypes, including newly co-isolated strains of marine Synechococcus from the Gulf of Mexico, were constructed to explore the diversification of spectral phenotype and PE evolution in this group more completely. For the first time, statistical evaluation of competing evolutionary hypotheses and tests for positive selection on the PE locus in picocyanobacteria were performed. Genes for PEs associated with specific PE spectral phenotypes formed strongly supported monophyletic clades within the PE tree with positive directional selection driving evolution towards higher phycourobilin (PUB) content. The presence of the PUB-lacking phenotype in PE-containing marine picocyanobacteria from cyanobacterial lineages identified as Cyanobium is best explained by HGT into this group from marine Synechococcus. Taken together, these data provide strong examples of adaptive evolution of a single phenotypic trait in bacteria via mutation, positive directional selection and horizontal gene transfer.
机译:在海洋Synechococcus中,有证据表明主要采光色素藻红蛋白(PE)的光谱不同形式具有适应性。最近的研究表明,PE的这些光谱形式与核心基因组具有不同的进化历史。但是,由于缺乏对替代假设的明确统计检验或对这些基因的选择,因此很难评估PE光谱形式之间的进化关系,也难以评估水平基因转移(HGT)在人类适应性表型进化中的作用。海洋Synechococcus中的色素系统。在这项工作中,构建了具有已知光谱表型的微微蓝细菌的PE系统发育,包括新共分离的来自墨西哥湾的海洋Synechococcus菌株,以探索该组光谱表型的多样性和PE进化。首次进行了竞争性进化假设的统计评估,以及在微蓝细菌中对PE基因座进行阳性选择的检验。与特定PE谱表型相关的PEs基因在PE树内形成了强烈支持的单系进化枝,具有积极的方向选择,从而推动了向藻蓝素(PUB)含量的提高。 HGT最好地解释了来自海洋Synechococcus的这一组中来自鉴定为蓝藻的蓝细菌谱系的含PE的海洋微蓝细菌中缺少PUB表型的存在。综上所述,这些数据通过突变,正向选择和水平基因转移,为细菌中单个表型性状的适应性进化提供了强有力的实例。

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