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The Plasmodium apicoplast genome: conserved structure and close relationship of P. ovale to rodent malaria parasites.

机译:疟原虫apicoplast基因组:保守的结构和卵圆形疟原虫与啮齿动物疟疾寄生虫的密切关系。

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摘要

Apicoplast, a nonphotosynthetic plastid derived from secondary symbiotic origin, is essential for the survival of malaria parasites of the genus Plasmodium. Elucidation of the evolution of the apicoplast genome in Plasmodium species is important to better understand the functions of the organelle. However, the complete apicoplast genome is available for only the most virulent human malaria parasite, Plasmodium falciparum. Here, we obtained the near-complete apicoplast genome sequences from eight Plasmodium species that infect a wide variety of vertebrate hosts and performed structural and phylogenetic analyses. We found that gene repertoire, gene arrangement, and other structural attributes were highly conserved. Phylogenetic reconstruction using 30 protein-coding genes of the apicoplast genome inferred, for the first time, a close relationship between P. ovale and rodent parasites. This close relatedness was robustly supported using multiple evolutionary assumptions and models. The finding suggests that an ancestral host switch occurred between rodent and human Plasmodium parasites.
机译:Apicoplast,一种非光合的质体,来自次生共生起源,对于疟原虫属疟原虫的存活至关重要。阐明疟原虫物种中的apicoplast基因组进化对于更好地了解细胞器的功能很重要。但是,仅最强毒的人类疟疾寄生虫恶性疟原虫才有完整的apicoplast基因组。在这里,我们从8种疟原虫物种中获得了近乎完整的apicoplast基因组序列,这些物种感染了各种各样的脊椎动物宿主,并进行了结构和系统发育分析。我们发现基因库,基因安排和其他结构属性是高度保守的。系统发育重建使用30个蛋白的基因编码的apicoplast基因组,首次推断卵形疟原虫和啮齿动物寄生虫之间的密切关系。使用多种进化假设和模型有力地支持了这种紧密的关联性。该发现表明,在啮齿动物和人类疟原虫寄生虫之间发生了祖先宿主转换。

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