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首页> 外文期刊>Molecular Biology and Evolution >A Genome-Sequence Survey for Ascogregarina taiwanensis Supports Evolutionary Affiliation but Metabolic Diversity between an Gregarine and Cryptosporidium
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A Genome-Sequence Survey for Ascogregarina taiwanensis Supports Evolutionary Affiliation but Metabolic Diversity between an Gregarine and Cryptosporidium

机译:台湾Ascogregarina的基因组序列研究支持进化联系,但在一个人造黄油和隐孢子虫之间有代谢多样性。

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We have performed a whole-genome-sequence survey for the gregarine, Ascogregarina taiwanensis and herein describe both features unique to this early diverging apicomplexan and properties that unite it with Cryptosporidium, the Coccidia, and the Apicomplexa. Phylogenetic trees inferred from a concatenated protein sequence comprised of 10,750 amino acid positions, as well as the large subunit rRNA genes, robustly support phylogenetic affinity of Ascogregarina with Cryptosporidium at the base of the apicomplexan clade. Unlike Cryptosporidium, Ascogregarina possesses numerous mitochondrion-associated pathways and proteins, including enzymes within the Krebs cycle and a cytochrome-based respiratory chain. Ascogregarina further differs in the capacity for de novo synthesis of pyrimidines and amino acids. Ascogregarina shares with Cryptosporidium a Type I fatty acid synthase and likely a polyketide synthase. Cryptosporidium and Ascogregarina possess a large repertoire of multidomain surface proteins that align it with Toxoplasma and are proposed to be involved in coccidian-like functions. Four families of retrotransposable elements were identified, and thus, retroelements are present in Ascogregarina and Eimeria but not in other apicomplexans that have been analyzed. The sum observations suggest that Ascogregarina and Cryptosporidium share numerous molecular similarities, not only including coccidian-like features to the exclusion of Haemosporidia and Piroplasmida but also differ from each other significantly in their metabolic capacity.
机译:我们已经进行了全基因组序列研究,针对的是一种人造黄油,台湾Ascogregarina taiwanensis,在此既描述了这种早期发散的apicomplexan的独特功能,又将其与隐孢子虫,球菌和Apicomplexa结合在一起。从包含10,750个氨基酸位置的连接蛋白序列以及大的亚基rRNA基因推断出的系统发育树,有力地支持了Ascogregarina与隐孢子虫进化枝底部的隐孢子虫的系统亲和力。与隐孢子虫不同,Ascogregarina具有许多与线粒体相关的途径和蛋白质,包括克雷布斯循环中的酶和基于细胞色素的呼吸链。 Ascogregarina在从头合成嘧啶和氨基酸的能力进一步不同。 Ascogregarina与隐孢子虫共享一种I型脂肪酸合酶,可能还有一种聚酮化合物合酶。隐孢子虫和Ascogregarina拥有大量的多域表面蛋白,使其与弓形虫对齐,并被提议参与类似球虫的功能。鉴定了四个家族的逆转座因子,因此,在Ascogregarina和Eimeria中存在逆转录元素,但在已分析的其他apiapiplexans中不存在。总的观察结果表明,Ascogregarina和隐孢子虫具有许多分子相似性,不仅包括类似球虫的特征,而不能将血孢和梭状芽胞杆菌排除在外,而且它们的代谢能力也有很大差异。

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