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首页> 外文期刊>Molecular phylogenetics and evolution >Molecular phylogenetics of Oestroidea (Diptera: Calyptratae) with emphasis on Calliphoridae: Insights into the inter-familial relationships and additional evidence for paraphyly among blowflies
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Molecular phylogenetics of Oestroidea (Diptera: Calyptratae) with emphasis on Calliphoridae: Insights into the inter-familial relationships and additional evidence for paraphyly among blowflies

机译:Oestroidea(Diptera:Calyptratae)的分子系统发育学,重点是Calliphoridae:洞悉家族间的关系以及蝇blow间副生的其他证据

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摘要

The superfamily Oestroidea, comprising ~15,000 species, is a large and ecologically diverse clade within the order Diptera. Among its six commonly recognized families, Calliphoridae seems to be crucial for understanding evolutionary relationships in the group, as it is recognized as a controversial paraphyletic grouping. To further investigate this matter, the ITS2, 28S, COI and 16S regions were used to infer phylogenetic relationships in Oestroidea with maximum-parsimony (MP), maximum-likelihood (ML) and Bayesian inference (BI) methods. For the BI analyses, a deep evaluation of different data partitioning strategies was conducted, including consideration of structural conformation (ITS2 and 16S) and codon position (COI) information. Results suggest the existence of two main clades in Oestroidea: (Tachinidae + Mesembrinellinae) and (Rhiniinae, (Sarcophagidae + Calliphoridae sensu stricto)). Oestridae was recovered as sister group of the remaining Oestroidea in the MP trees while it was placed closer to the (Rhiniinae + Sarcophagidae + Calliphoridae sensu stricto) group in the ML and BI trees. A paraphyletic Calliphoridae was recovered, confirming the exclusion of Rhiniinae, a clade recently promoted to family status and therefore already excluded. Mesembrinellinae could also be considered a distinct group apart from Calliphoridae, although further studies are required. Consideration of structural and codon position information led to a significant increase in the log-likelihoods of the analyses, which were accompanied by small changes in the inferred topologies, branch lengths and posterior probability support values. However, as model complexity increases, so does uncertainty across the estimated parameters, including tree topologies, and phylogenies inferred under very parameter-rich models may be less reliable even when possessing higher log-likelihoods.
机译:est科的超大家庭包括约15,000种,是双翅目内的一个大型且生态多样的进化枝。在其六个公认的家族中,Calliphoridae似乎对于理解该群体中的进化关系至关重要,因为它被认为是一个有争议的共生群体。为了进一步研究此问题,使用ITS2、28S,COI和16S区域通过最大简约(MP),最大似然(ML)和贝叶斯推断(BI)方法来推断大洋蟹的系统发育关系。对于BI分析,对不同的数据分区策略进行了深入评估,其中包括对结构构象(ITS2和16S)和密码子位置(COI)信息的考虑。结果表明,雌蕊中存在两个主要进化枝:(Ta科+ Mesembrinellinae)和(and科(Sarcophagidae + Calliphoridae sensu stricto))。 Oestridae被恢复为MP树中其余Oestroidea的姐妹组,而在ML和BI树中更靠近(Rhiniinae + Sarcophagidae + Calliphoridae sensu stricto)组。恢复了一种寄生虫的i科,证实排除了Rhiniinae,这是最近被提升为家庭身份的进化枝,因此已经被排除在外。尽管需要进一步的研究,但除ese科以外,菌科也可以被认为是一个独立的群体。对结构和密码子位置信息的考虑导致分析的对数似然性显着增加,同时伴随着推断的拓扑,分支长度和后验概率支持值的微小变化。但是,随着模型复杂度的增加,估计参数的不确定性(包括树形拓扑)也将随之增加,即使拥有较高的对数似然性,在参数非常丰富的模型下推断出的系统发育也可能不太可靠。

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