首页> 外文期刊>The Journal of Eukaryotic Microbiology >Molecular Phylogeny and Ultrastructure of Caliculium glossobalani n. gen. et sp (Apicomplexa) from a Pacific Glossobalanus minutus (Hemichordata) Confounds the Relationships Between Marine and Terrestrial Gregarines
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Molecular Phylogeny and Ultrastructure of Caliculium glossobalani n. gen. et sp (Apicomplexa) from a Pacific Glossobalanus minutus (Hemichordata) Confounds the Relationships Between Marine and Terrestrial Gregarines

机译:gloss草的分子系统发育和超微结构。 gen。太平洋Glossobalanus minutus(Hemichordata)的等人(Apicomplexa)混淆了海洋和陆生人造黄油之间的关系

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Gregarines are a diverse group of apicomplexan parasites with a conspicuous extracellular feeding stage, called a "trophozoite", that infects the intestines and other body cavities of invertebrate hosts. Although the morphology of trophozoites is very diverse in gregarines as a whole, high degrees of intraspecific variation combined with relatively low degrees of interspecific variation make the delimitation of different species based on trophozoite morphology observed with light microscopy difficult. The coupling of molecular phylogenetic data with comparative morphology has shed considerable light onto the boundaries and interrelationships of different gregarine species. In this study, we isolated a novel marine gregarine from the hepatic region of a Pacific representative of the hemichordate Glossobalanus minutus, and report the first ultrastructural and molecular data from any gregarine infecting this distinctive group of hosts. Molecular phylogenetic analyses of an SSU rDNA sequence derived from two single-cell isolates of this marine gregarine demonstrated a strong and unexpected affiliation with a clade of terrestrial gregarines (e. g. Gregarina). This molecular phylogenetic data combined with a comparison of the morphological features in previous reports of gregarines collected from Atlantic representatives of G. minutus justified the establishment of a new binomial for the new isolate, namely Caliculium glossobalani n. gen. et sp. The molecular phylogenetic analyses demonstrated a clade of terrestrial gregarines associated with a sequence acquired from a marine species, which suggest that different groups of terrestrial/freshwater gregarines evolved independently from marine ancestors.
机译:牛至是多种多样的apicomplexan寄生虫,具有明显的细胞外摄食阶段,称为“滋养体”,可感染无脊椎动物宿主的肠道和其他体腔。尽管从整体上来说,在人造黄油中滋养体的形态差异很大,但是高种内变异和相对低的种间变异程度使得基于光学显微镜观察到的滋养体形态难以区分不同物种。分子系统发育数据与比较形态学的结合为不同的人造黄油物种的边界和相互关系提供了可观的认识。在这项研究中,我们从太平洋地区代表半透明的金丝桃(Glossobalanus minutus)的肝区中分离出了一种新型的海洋植物黄油,并报告了感染该独特宿主的任何植物黄油的第一批超微结构和分子数据。对源自该海洋性人造黄油的两个单细胞分离物的SSU rDNA序列的分子系统发育分析表明,其与陆生的人造黄油(例如Gregarina)进化枝有很强的和出乎意料的联系。该分子系统发育数据与以前从大西洋细齿线虫代表中收集到的牛轧糖的形态学特征的比较相结合,证明了为新分离株建立新的二项式,即格卢库拉尼牛唇菌是正确的。 gen。等。分子系统发育分析表明,与从海洋物种获得的序列相关的陆生人造黄油进化枝,表明不同组的陆生/淡水人造黄油是独立于海洋祖先进化而来的。

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