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The ancestor of the Paulinella chromatophore obtained a carboxysomal operon by horizontal gene transfer from a Nitrococcus-like γ-proteobacterium

机译:保林氏菌染色体的祖先通过水平基因转移从类似Nitrococcus的γ-变形杆菌中获得了羧基体操纵子。

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Background Paulinella chromatophora is a freshwater filose amoeba with photosynthetic endosymbionts (chromatophores) of cyanobacterial origin that are closely related to free-living Prochlorococcus and Synechococcus species (PS-clade). Members of the PS-clade of cyanobacteria contain a proteobacterial form 1A RubisCO (ribulose-1,5-bisphosphate carboxylase/oxygenase) that was acquired by horizontal gene transfer (HGT) of a carboxysomal operon. In rDNA-phylogenies, the Paulinella chromatophore diverged basal to the PS-clade, raising the question whether the HGT occurred before or after the split of the chromatophore ancestor. Results Phylogenetic analyses of the almost complete rDNA operon with an improved taxon sampling containing most known cyanobacterial lineages recovered the Paulinella chromatophore as sister to the complete PS-clade. The sequence of the complete carboxysomal operon of Paulinella was determined. Analysis of RubisCO large subunit (rbcL) sequences revealed that Paulinella shares the proteobacterial form 1A RubisCO with the PS-clade. The γ-proteobacterium Nitrococcus mobilis was identified as sister of the Paulinella chromatophore and the PS-clade in the RubisCO phylogeny. Gene content and order in the carboxysomal operon correlates well with the RubisCO phylogeny demonstrating that the complete carboxysomal operon was acquired by the common ancestor of the Paulinella chromatophore and the PS-clade through HGT. The carboxysomal operon shows a significantly elevated AT content in Paulinella, which in the rbcL gene is confined to third codon positions. Combined phylogenies using rbcL and the rDNA-operon resulted in a nearly fully resolved tree of the PS-clade. Conclusion The HGT of the carboxysomal operon predated the divergence of the chromatophore ancestor from the PS-clade. Following HGT and divergence of the chromatophore ancestor, diversification of the PS-clade into at least three subclades occurred. The γ-proteobacterium Nitrococcus mobilis represents the closest known relative to the donor of the carboxysomal operon. The isolated position of the Paulinella chromatophore in molecular phylogenies as well as its elevated AT content suggests that the Paulinella chromatophore has already undergone typical steps in the reductive evolution of an endosymbiont.
机译:背景Paulinella chromatophora是一种淡水的丝状变形虫,其具有蓝细菌来源的光合内共生体(色谱),与自由生活的原球菌和Synechococcus种类(PS-clade)密切相关。蓝细菌PS进化枝的成员包含一种蛋白细菌形式1A RubisCO(核糖1,,5-双磷酸羧化酶/加氧酶),它是通过羧基体操纵子的水平基因转移(HGT)获得的。在rDNA系统发生中,波林氏菌属的色谱基团向PS进化枝的基部发散,这引发了一个问题:HGT是否发生在色谱祖先的分裂之前或之后。结果用改良的分类单元采样对几乎完整的rDNA操纵子进行系统进化分析,其中包含最知名的蓝细菌谱系,从而使保利氏菌染色体成为了完整PS进化枝的姐妹。确定了波氏菌的完整羧基体操纵子的序列。对RubisCO大亚基(rbcL)序列的分析显示,Paulinella与PS进化枝共享蛋白菌形式1A RubisCO。 γ-变形菌Nitrococcus mobilis被鉴定为Rubinsco系统发育中Paulinella色谱和PS进化枝的姊妹。羧基体操纵子中的基因含量和顺序与RubisCO系统发育关系密切,这表明完整的羧基体操纵子是由Paulinella色谱的共同祖先和PS进化枝通过HGT获得的。羧基体操纵子在Paulinella中显示出明显升高的AT含量,在rbcL基因中,AT含量被限制在第三个密码子位置。使用rbcL和rDNA-操纵子的系统发育相结合,形成了几乎完全分辨的PS进化树。结论羧基体操纵子的HGT早于PS包层的色谱祖先的发散。在进行HGT和色谱祖先发散后,PS包囊发生了至少三个子包囊的多样化。相对于羧基体操纵子的供体,γ-变形杆菌运动发酵菌代表。保氏菌属色谱在分子系统发育中的孤立位置以及其较高的AT含量表明,保氏菌属色谱已经在共生共生体的还原性进化中经历了典型的步骤。

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