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Novel type of linear mitochondrial genomes with dual flip-flop inversion system in apicomplexan parasites Babesia microti and Babesia rodhaini

机译:新型的线性线粒体基因组具有双触发器倒置系统可用于apicomplexan寄生虫微小巴贝斯虫和罗氏巴贝斯虫

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摘要

BackgroundMitochondrial (mt) genomes vary considerably in size, structure and gene content. The mt genomes of the phylum Apicomplexa, which includes important human pathogens such as the malaria parasite Plasmodium, also show marked diversity of structure. Plasmodium has a concatenated linear mt genome of the smallest size (6-kb); Babesia and Theileria have a linear monomeric mt genome (6.5-kb to 8.2-kb) with terminal inverted repeats; Eimeria, which is distantly related to Plasmodium and Babesia/Theileria, possesses a mt genome (6.2-kb) with a concatemeric form similar to that of Plasmodium; Cryptosporidium, the earliest branching lineage within the phylum Apicomplexa, has no mt genome. We are interested in the evolutionary origin of linear mt genomes of Babesia/Theileria, and have investigated mt genome structures in members of archaeopiroplasmid, a lineage branched off earlier from Babesia/Theileria.
机译:背景线粒体(mt)基因组的大小,结构和基因含量差异很大。蚜虫门的mt基因组包括重要的人类病原体,例如疟原虫疟原虫,也显示出明显的结构多样性。疟原虫具有最小尺寸(6-kb)的串联线性mt基因组。巴贝斯虫和泰勒虫具有线性的单体mt基因组(6.5kb至8.2kb),末端带有反向重复序列。艾美球虫与疟原虫和巴贝斯虫/泰勒虫有很远的联系,它拥有mt基因组(6.2-kb),其连接体形式与疟原虫相似。隐孢子虫(Apicomplexa)内最早的分支谱系,没有mt基因组。我们对巴贝斯虫/泰勒虫的线性mt基因组的进化起源感兴趣,并研究了古菌质成员中的mt基因组结构,这是早于巴贝斯虫/泰勒虫的分支。

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