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首页> 外文期刊>The Journal of Eukaryotic Microbiology >Molecular Phylogeny of Pacific Archigregarines (Apicomplexa), Including Descriptions of Veloxidium leptosynaptae n. gen., n. sp., from the Sea Cucumber Leptosynapta clarki (Echinodermata), and Two New Species of Selenidium
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Molecular Phylogeny of Pacific Archigregarines (Apicomplexa), Including Descriptions of Veloxidium leptosynaptae n. gen., n. sp., from the Sea Cucumber Leptosynapta clarki (Echinodermata), and Two New Species of Selenidium

机译:分子系统发育的太平洋群岛(Apicomplexa),包括Veloxidium leptosynaptae n。的描述。 gen。,n。 sp。,来自海参Leptosynapta clarki(Echinodermata)和两个新的硒物种

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摘要

Although archigregarines are poorly understood intestinal parasites of marine invertebrates, they are critical for understanding the earliest stages in the evolution of the Apicomplexa. Previous studies suggest that archigregarines are a paraphyletic stem group from which other lineages of gregarines, and possibly all other groups of apicomplexans, evolved. However, substantiating this inference is difficult because molecular phylogenetic data from archigregarines, in particular, and other gregarines, in general, are severely limited. In an attempt to help fill gaps in our knowledge of archigregarine diversity and phylogeny, we set out to discover and characterize novel lineages of archigregarines with high-resolution light and scanning electron microscopy and analyses of small subunit (SSU) rDNA sequences derived from single-cell (SC) PCR techniques. Here, we describe two novel species of Selenidium, namely Selenidium idanthyrsae n. sp. and S. boccardiellae n. sp., and demonstrate the surface morphology and molecular phylogenetic position of the previously reported species S. cf. mesnili. We also describe a novel genus of archigregarine, Veloxidium leptosynaptae n. gen., n. sp., which branches with an environmental sequence and, together, forms the nearest sister lineage to a diverse clade of marine eugregarines (i.e. lecudinids and urosporids). This molecular phylogenetic result is consistent with the hypothesis that archigregarines are deeply paraphyletic within apicomplexans, and suggests that convergent evolution played an important role in shaping the diversity of eugregarine trophozoites.
机译:尽管原蓟马被理解为海洋无脊椎动物的肠道寄生虫,但它们对于了解蚜虫复合体进化的最早阶段至关重要。先前的研究表明,大头孢菌素是一种副生的茎群,从中进化出了其他的人造黄油谱系,也可能进化出了其他所有的apicomplexans。但是,很难证实这一推论,因为严格限制了来自古怪兽类,尤其是其他牛至的分子的系统发育数据。为了填补空白的知识,我们着手利用高分辨率的光学和扫描电子显微镜来发现和鉴定新的原产地雷鸟的血统,并对它们进行分析,并分析衍生自单子叶植物的小亚基(SSU)rDNA序列。细胞(SC)PCR技术。在这里,我们描述了硒的两个新物种,即硒硒(Selenidium idanthyrsae)n。 sp。和葡萄球菌。 ,并证明了先前报道的物种S. cf.的表面形态和分子系统发生位置。梅斯尼利。我们还描述了一种新的古奇加林碱属,Veloxidium leptosynaptae n。 gen。,n。 sp。,以环境序列分支,并一起形成了最接近的姊妹血统,形成了多样化的海洋真核生物(lecudinids和urosporids)进化枝。这种分子系统发育的结果与假单胞菌属在apicomplexans中是高度共生的假说相符,并且表明会聚进化在塑造真人草鱼滋养体的多样性中起着重要作用。

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