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Nucleotide substitution rates of diatom plastid encoded protein genes are positively correlated with genome architecture

机译:硅藻体系编码蛋白基因的核苷酸取代率与基因组结构正相关

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Diatoms are the largest group of heterokont algae with more than 100,000 species. As one of the single-celled photosynthetic organisms that inhabit marine, aquatic and terrestrial ecosystems, diatoms contribute?~?45% of global primary production. Despite their ubiquity and environmental significance, very few diatom plastid genomes (plastomes) have been sequenced and studied. This study explored patterns of nucleotide substitution rates of diatom plastids across the entire suite of plastome protein-coding genes for 40 taxa representing the major clades. The highest substitution rate was lineage-specific within the araphid 2 taxon Astrosyne radiata and radial 2 taxon Proboscia sp. Rate heterogeneity was also evident in different functional classes and individual genes. Similar to land plants, proteins genes involved in photosynthetic metabolism have lower synonymous and nonsynonymous substitutions rates than those involved in transcription and translation. Significant positive correlations were identified between substitution rates and measures of genomic rearrangements, including indels and inversions, which is a similar result to what was found in legume plants. This work advances the understanding of the molecular evolution of diatom plastomes and provides a foundation for future studies.
机译:硅藻是最大的杂耳藻类藻类,藻类超过100,000种。作为居住海洋,水生和陆地生态系统的单细胞光合生物之一,硅藻贡献?〜?45%的全球初级生产。尽管他们无处不在和环境意义,但非常少量的硅藻体积基因组(塑料)已经测序和研究。本研究探讨了整个塑性蛋白编码基因的整个塑性蛋白编码基因的硅藻体替代率的模式,用于占主要植物的40个分类群。最高的替代率是特定于Araphat 2分类夏季radiata和径向2个分类概率的谱系。在不同的功能类别和单个基因中也显而易见的速率异质性。类似于土地植物,涉及光合代谢的蛋白质基因具有比参与转录和翻译的替代率较低的同义词和非唯一的替换率。在替代速率和基因组重排的措施之间确定了显着的正相关性,包括诱导和反转,这与豆科植物中发现的结果类似。这项工作推进了对硅藻塑料的分子演变的理解,为未来的研究提供了基础。

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