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从冈村藻(Ishigeales)和肋鳞藻(Dictyotales)的线粒体基因组推断出 Phaeophyceae 中线粒体基因组的进化。

Understanding the Evolution of Mitochondrial Genomes in Phaeophyceae Inferred from Mitogenomes of Ishige okamurae (Ishigeales) and Dictyopteris divaricata (Dictyotales).

机构信息

Key Laboratory of Experimental Marine Biology, Institute of Oceanology, Chinese Academy of Sciences, Qingdao, 266071, Shandong, People's Republic of China.

Laboratory for Marine Biology and Biotechnology, Qingdao National Laboratory for Marine Science and Technology, Qingdao, 266237, Shandong, People's Republic of China.

出版信息

J Mol Evol. 2019 Jan;87(1):16-26. doi: 10.1007/s00239-018-9881-5. Epub 2019 Jan 2.

Abstract

To gain further insight into the evolution of mitochondrial genomes (mtDNAs) in Phaeophyceae, the first recorded characterization of an Ishigeophycidae mtDNA from Ishige okamurae (Yendo), and only the second recorded characterization of a Dictyotophycidae mtDNA from Dictyopteris divaricata (Okamura) Okamura are presented in this study. The 35,485 bp I. okamurae mtDNA contained 36 protein-coding genes (PCGs), 22 tRNAs, three rRNAs, and four open reading frames (orfs), and the 32,021 bp D. divaricata mtDNA harbored 35 PCGs, 25 tRNAs, three rRNAs, and three orfs. The A + T content in D. divaricata (61.69%) was the lowest recorded in sequenced brown algal mtDNAs. The I. okamurae mtDNA displayed unique genome features including an elevated start-codon usage bias for GTG, while the organization of D. divaricata mtDNA was identical to that of Dictyota dichotoma. Phylogenetic analysis based on the amino acid sequence dataset of 35 PCGs indicated that I. okamurae (Ishigeophycidae) diverged early from the Fucophycidae-Dictyotophycidae complex, which was confirmed by the comparative analysis of the mitogenome structure. The novel mitogenome data made available by this study have improved our understanding of the evolution, phylogenetics, and genomics of brown algae.

摘要

为了更深入地了解 Phaeophyceae 中线粒体基因组(mtDNA)的进化,本研究首次对来自 Ishige okamurae(Yendo)的 Ishigeophycidae mtDNA 进行了记录,并仅第二次对来自 Dictyopteris divaricata(Okamura)Okamura 的 Dictyotophycidae mtDNA 进行了记录。35485bp 的 I. okamurae mtDNA 包含 36 个蛋白编码基因(PCGs)、22 个 tRNA、3 个 rRNA 和 4 个开放阅读框(orfs),而 32021bp 的 D. divaricata mtDNA 则包含 35 个 PCGs、25 个 tRNA、3 个 rRNA 和 3 个 orfs。D. divaricata 中的 A + T 含量(61.69%)是已测序褐藻 mtDNA 中最低的。I. okamurae mtDNA 显示出独特的基因组特征,包括 GTG 的起始密码子使用偏好增加,而 D. divaricata mtDNA 的组织与 Dictyota dichotoma 相同。基于 35 个 PCG 的氨基酸序列数据集的系统发育分析表明,I. okamurae(Ishigeophycidae)与 Fucophycidae-Dictyotophycidae 复合物早期分化,这一点通过对线粒体基因组结构的比较分析得到了证实。本研究提供的新的线粒体基因组数据提高了我们对褐藻进化、系统发育和基因组学的理解。

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