首页> 外文期刊>eLife journal >The genome of an intranuclear parasite, Paramicrosporidium saccamoebae, reveals alternative adaptations to obligate intracellular parasitism
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The genome of an intranuclear parasite, Paramicrosporidium saccamoebae, reveals alternative adaptations to obligate intracellular parasitism

机译:核内寄生虫Sparamosporidium saccamoebae的基因组揭示了专一的适应性细胞内寄生

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Intracellular parasitism often results in gene loss, genome reduction, and dependence upon the host for cellular functioning. Rozellomycota is a clade comprising many such parasites and is related to the diverse, highly reduced, animal parasites, Microsporidia. We sequenced the nuclear and mitochondrial genomes of Paramicrosporidium saccamoebae [Rozellomycota], an intranuclear parasite of amoebae. A canonical fungal mitochondrial genome was recovered from P. saccamoebae that encodes genes necessary for the complete oxidative phosphorylation pathway including Complex I, differentiating it from most endoparasites including its sequenced relatives in Rozellomycota and Microsporidia. Comparative analysis revealed that P. saccamoebae shares more gene content with distantly related Fungi than with its closest relatives, suggesting that genome evolution in Rozellomycota and Microsporidia has been affected by repeated and independent gene losses, possibly as a result of variation in parasitic strategies (e.g. host and subcellular localization) or due to multiple transitions to parasitism.
机译:细胞内寄生通常导致基因丧失,基因组减少以及对宿主细胞功能的依赖。 Rozellomycota是包含许多此类寄生虫的进化枝,与多种高度减少的动物寄生虫微孢子虫有关。我们对拟杆菌亚种的微小核孢子虫[Rozellomycota]的核和线粒体基因组进行了测序。从沙门氏假单胞菌中回收了一个规范的真菌线粒体基因组,该基因组编码了包括复合体I在内的完整氧化磷酸化途径所必需的基因,从而使其与大多数内寄生虫(包括其在Rozellomycota和Microsporidia中的已测序亲戚)区别开来。对比分析表明,与近缘真菌相比,沙门氏菌与远缘真菌共有更多的基因含量,这表明,反复和独立的基因丢失已影响了罗氏菌和微孢子虫的基因组进化,这可能是由于寄生虫策略的变化(例如宿主和亚细胞定位)或由于多次过渡到寄生虫。

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