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Agent of Whirling Disease Meets Orphan Worm: Phylogenomic Analyses Firmly Place Myxozoa in Cnidaria

机译:旋转疾病的病原体遇见孤儿蠕虫:系统学分析牢固地将粘虫放在鞭ni中

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摘要

Myxozoa are microscopic obligate endoparasites with complex live cycles. Representatives are Myxobolus cerebralis, the causative agent of whirling disease in salmonids, and the enigmatic “orphan worm” Buddenbrockia plumatellae parasitizing in Bryozoa. Originally, Myxozoa were classified as protists, but later several metazoan characteristics were reported. However, their phylogenetic relationships remained doubtful. Some molecular phylogenetic analyses placed them as sister group to or even within Bilateria, whereas the possession of polar capsules that are similar to nematocysts of Cnidaria and of minicollagen genes suggest a close relationship between Myxozoa and Cnidaria. EST data of Buddenbrockia also indicated a cnidarian origin of Myxozoa, but were not sufficient to reject a closer relationship to bilaterians. Phylogenomic analyses of new genomic sequences of Myxobolus cerebralis firmly place Myxozoa as sister group to Medusozoa within Cnidaria. Based on the new dataset, the alternative hypothesis that Myxozoa form a clade with Bilateria can be rejected using topology tests. Sensitivity analyses indicate that this result is not affected by long branch attraction artifacts or compositional bias.
机译:Myxozoa是微小的专性内寄生物,具有复杂的生命周期。代表性的有脑粘液,鲑鱼中旋转疾病的病原体,以及在布氏巨蜥中寄生的神秘的“孤儿蠕虫” Buddenbrockia plumatellae。最初,Myxozoa被归类为原生生物,但后来报道了几种后生动物特征。但是,它们的系统发育关系仍然值得怀疑。一些分子系统发育分析将它们作为Bilateria或什至在Bilateria内部的姊妹组,而拥有与Cndaria和微型胶原基因的线虫囊相似的极地胶囊表明Myxozoa和Cndaria之间的密切关系。 EST的Buddenbrockia数据也表明了Myxozoa的刺胞起源,但不足以拒绝与Bilaterians的亲密关系。新的脑粘液菌基因组序列的系统生物学分析牢固地将粘液菌作为鞭毛纲中的Medusozoa的姐妹群。基于新的数据集,可以使用拓扑测试来拒绝Myxozoa与Bilateria形成分支的另一种假设。敏感性分析表明,该结果不受长分支吸引伪影或成分偏差的影响。

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