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线粒体基因组序列和结构有助于解决梨形虫纲的系统发育问题。

Mitochondrial Genome Sequences and Structures Aid in the Resolution of Piroplasmida phylogeny.

作者信息

Schreeg Megan E, Marr Henry S, Tarigo Jaime L, Cohn Leah A, Bird David M, Scholl Elizabeth H, Levy Michael G, Wiegmann Brian M, Birkenheuer Adam J

机构信息

North Carolina State University, College of Veterinary Medicine, Raleigh, North Carolina, United States of America.

University of Georgia, College of Veterinary Medicine, Athens, Georgia, United States of America.

出版信息

PLoS One. 2016 Nov 10;11(11):e0165702. doi: 10.1371/journal.pone.0165702. eCollection 2016.

Abstract

The taxonomy of the order Piroplasmida, which includes a number of clinically and economically relevant organisms, is a hotly debated topic amongst parasitologists. Three genera (Babesia, Theileria, and Cytauxzoon) are recognized based on parasite life cycle characteristics, but molecular phylogenetic analyses of 18S sequences have suggested the presence of five or more distinct Piroplasmida lineages. Despite these important advancements, a few studies have been unable to define the taxonomic relationships of some organisms (e.g. C. felis and T. equi) with respect to other Piroplasmida. Additional evidence from mitochondrial genome sequences and synteny should aid in the inference of Piroplasmida phylogeny and resolution of taxonomic uncertainties. In this study, we have amplified, sequenced, and annotated seven previously uncharacterized mitochondrial genomes (Babesia canis, Babesia vogeli, Babesia rossi, Babesia sp. Coco, Babesia conradae, Babesia microti-like sp., and Cytauxzoon felis) and identified additional ribosomal fragments in ten previously characterized mitochondrial genomes. Phylogenetic analysis of concatenated mitochondrial and 18S sequences as well as cox1 amino acid sequence identified five distinct Piroplasmida groups, each of which possesses a unique mitochondrial genome structure. Specifically, our results confirm the existence of four previously identified clades (B. microti group, Babesia sensu stricto, Theileria equi, and a Babesia sensu latu group that includes B. conradae) while supporting the integration of Theileria and Cytauxzoon species into a single fifth taxon. Although known biological characteristics of Piroplasmida corroborate the proposed phylogeny, more investigation into parasite life cycles is warranted to further understand the evolution of the Piroplasmida. Our results provide an evolutionary framework for comparative biology of these important animal and human pathogens and help focus renewed efforts toward understanding the phylogenetic relationships within the group.

摘要

梨形虫目包含许多具有临床和经济意义的生物,其分类学是寄生虫学家们激烈争论的话题。基于寄生虫生命周期特征,该目被划分为三个属(巴贝斯虫属、泰勒虫属和嗜吞噬细胞无形体属),但对18S序列的分子系统发育分析表明存在五个或更多不同的梨形虫谱系。尽管有这些重要进展,但一些研究仍无法确定某些生物(如猫嗜吞噬细胞无形体和马泰勒虫)与其他梨形虫的分类关系。来自线粒体基因组序列和同线性的额外证据应有助于推断梨形虫的系统发育并解决分类学上的不确定性。在本研究中,我们扩增、测序并注释了七个先前未表征的线粒体基因组(犬巴贝斯虫、沃氏巴贝斯虫、罗氏巴贝斯虫、可可巴贝斯虫、康氏巴贝斯虫、微小巴贝斯虫样种和猫嗜吞噬细胞无形体),并在十个先前表征的线粒体基因组中鉴定出额外的核糖体片段。对串联的线粒体和18S序列以及细胞色素c氧化酶亚基1氨基酸序列进行系统发育分析,确定了五个不同的梨形虫组,每组都具有独特的线粒体基因组结构。具体而言,我们的结果证实了四个先前确定的进化枝(微小巴贝斯虫组、狭义巴贝斯虫、马泰勒虫和包括康氏巴贝斯虫的广义巴贝斯虫组)的存在,同时支持将泰勒虫属和嗜吞噬细胞无形体属的物种整合到第五个分类单元中。尽管梨形虫已知的生物学特征证实了所提出的系统发育,但仍需对寄生虫生命周期进行更多研究,以进一步了解梨形虫的进化。我们的结果为这些重要的动物和人类病原体的比较生物学提供了一个进化框架,并有助于集中新的努力来理解该类群内的系统发育关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfc8/5104439/3873c4b99ed5/pone.0165702.g001.jpg

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