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Resolving evolutionary changes in parasite life cycle complexity: Molecular phylogeny of the trematode genus Alloglossidium indicates more than one origin of precociousness

机译:解决寄生虫生命周期复杂性的进化变化:Threatode Genus的分子系统异洛尼啶表示不止一个初始兴趣起源

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摘要

The evolutionary causes and consequences of changes in complex life cycles are of central importance in parasitology. However, data remain limited because in part, knowledge on phylogenetic relationships among species that differ in life cycle patterns remains scarce. We present a molecular phylogeny of the trematode genusAlloglossidium, which contains several species that display precocious (a.k.a., progenetic) life cycles (i.e., maturation in what is typically regarded as an intermediate host). The molecular phylogeny contrasts with previous morphological and life-history based phylogenetic hypotheses. In particular, a precocious life cycle wherein leeches are used as final hosts evolved early in the history of the genus. Among the remaining species, which are a separate clade, a three-host life cycle using ictalurid catfishes is ancestral. Furthermore, there are at least two additional independent evolutionary events that lead to a precocious life cycle where a catfish host is lost and a crustacean is used as a final host. We conclude with a discussion on how existing hypotheses on the evolution of precociousness, and parasite life cycle complexity in general, may or may not relate to the patterns observed in genusAlloglossidium.
机译:复杂寿命周期变化的进化原因和后果在寄生症中具有核心重要性。然而,数据仍然有限,因为部分地,生命周期模式不同的物种之间的系统发育关系的知识仍然稀缺。我们介绍了Threatode Genusalloglossidium的分子系统发育,其含有几种展示早熟(A.K.A.,吞咽物质)寿命循环(即,在通常被认为是中间宿主的情况下的成熟)。分子系统发生与基于先前的形态学和生命历史的系统发育假设形成对比。特别地,一种预焦生命周期,其中水蛭用作在本体历史的早期演变的最终宿主。在剩余的物种中,这是一个单独的思工,使用ictalurid鲶鱼的三个宿主生命周期是祖先的。此外,至少有两个另外的独立进化事件,导致鲶鱼宿主丢失的早熟生命周期,并且将甲壳类动物用作最终主体。我们讨论了关于预先概念的假设,以及一般的寄生虫生命周期复杂性如何存在,或者可能与Genusalloglossidium中观察到的模式有关。

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