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首页> 外文期刊>Molecular biology and evolution >Progressive and Biased Divergent Evolution Underpins the Origin and Diversification of Peridinin Dinoflagellate Plastids
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Progressive and Biased Divergent Evolution Underpins the Origin and Diversification of Peridinin Dinoflagellate Plastids

机译:渐进和偏见的分歧进化是赤素蛋白丁蛋白含水体的起源和多样化

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Dinoflagellates are algae of tremendous importance to ecosystems and to public health. The cell biology and genome organization of dinoflagellate species is highly unusual. For example, the plastid genomes of peridinin-containing dinoflagellates encode only a minimal number of genes arranged on small elements termed "minicircles". Previous studies of peridinin plastid genes have found evidence for divergent sequence evolution, including extensive substitutions, novel insertions and deletions, and use of alternative translation initiation codons. Understanding the extent of this divergent evolution has been hampered by the lack of characterized peridinin plastid sequences. We have identified over 300 previously unannotated peridinin plastid mRNAs from published transcriptome projects, vastly increasing the number of sequences available. Using these data, we have produced a well-resolved phylogeny of peridinin plastid lineages, which uncovers several novel relationships within the dinoflagellates. This enables us to define changes to plastid sequences that occurred early in dinoflagellate evolution, and that have contributed to the subsequent diversification of individual dinoflagellate clades. We find that the origin of the peridinin dinoflagellates was specifically accompanied by elevations both in the overall number of substitutions that occurred on plastid sequences, and in the Ka/Ks ratio associated with plastid sequences, consistent with changes in selective pressure. These substitutions, alongside other changes, have accumulated progressively in individual peridinin plastid lineages. Throughout our entire dataset, we identify a persistent bias toward non-synonymous substitutions occurring on sequences encoding photosystem I subunits and stromal regions of peridinin plastid proteins, which may have underpinned the evolution of this unusual organelle.
机译:Dinoflagellates是对生态系统和公共卫生的重要重视藻类。 Dinoflagelate物种的细胞生物学和基因组组织非常不寻常。例如,含白蛋白的Dinoflagelate的体积基因组仅编码排列在称为“小刻录”的小元素上的最小数量的基因。前面的Peridinin Plastid基因的研究发现了发散序列演化的证据,包括广泛的取代,新的插入和缺失,以及使用替代翻译起始密码子。理解这种不同的进化的程度被缺乏表征果皮素血浆序列受到阻碍。我们已识别出300多种先前未发布的转录组项目的未被淘汰的果酒塑体MRNA,大大增加可用序列的数量。使用这些数据,我们已经产生了赤素蛋白塑性谱系的良好解析的系统发作,其揭示了甲藻蛋白内的几种新的关系。这使我们能够定义对Dinoflagelate Evolution早期发生的塑体序列的变化,并且有助于随后的单个Dinoflagellate蛹的多样化。我们发现果皮蛋白的原点在体液序列中发生的升高,并以与层状序列相关的KA / Ks比,呈上升高。与其他变化一起,这些替代品逐渐积累在单胞苷塑体血管谱系中。在我们的整个数据集中,我们识别对编码光学系统I亚基的序列中发生的非同义替换的持续偏差,并且赤素蛋白塑体蛋白的基质区域,这可能是这种不寻常的细胞器的演变。

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