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首页> 外文期刊>Molecular phylogenetics and evolution >Mitogenome sequences stabilize the phylogenetics of weevils (Curculionoidea) and establish the monophyly of larval ectophagy
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Mitogenome sequences stabilize the phylogenetics of weevils (Curculionoidea) and establish the monophyly of larval ectophagy

机译:线粒体基因组序列稳定象鼻虫(Curculionoidea)的系统发育,并建立幼虫食道的单性

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The weevils and their relatives (superfamily Curculionoidea) constitute a huge radiation of beetles, but basal relationships in this group remain controversial, in particular within the largest family, Curculionidae. We used next-generation sequencing to generate mitochondrial genome data comprising 12 protein coding genes for 27 taxa. Together with two published ingroup sequences, (sub)family relationships were assessed with Bayesian and ML searches under various models and partitioning schemes. Forward and reverse strands of the mitochondrial genome differed in nucleotide skew. Consequently synonymous codon usage differed substantially on either strand for each amino acid, whereby codons ending in AT and GC were favored on the forward and reverse strands, respectively. Data partitioning by forward/reverse strand and codon position greatly improved likelihood scores and nodal support, whereas the tree topology was largely stable. The analysis generally supports the basal position of several 'orthocerus' lineages with straight antennae and male genitalia of an ancestral type; a paraphyletic mixed group of Heteromorphi exhibiting mixed ancestral and derived antennal and genitalic characters; and the derived 'gonathocerous' lineages with kinked antennae corresponding to the strongly supported Curculionidae. The latter did not include the wood boring Platypodinae that was recovered as sister to Dryophthoridae, while the Scolytinae and Cossoninae formed two independent lineages of wood borers within Curculionidae. A basal split in Curculionidae placed the Entiminae and Hyperinae as sister to all other subfamilies with high support, which provides a new ecological concept for structuring the Curculionidae according to the ectophagous larval life style in the former versus endophagous larvae in all others. This basal split is also supported by gene order rearrangements in a tRNA cluster. Recent studies supporting the monophyly of wood boring weevils may be attributable to long-branch attraction, as molecular rates in their mitochondrial genomes were found to be higher than in other lineages, but this did not confound tree searches under combined analysis of mitochondrial protein coding genes.
机译:象鼻虫及其亲属(超家族Curculionoidea)构成了巨大的甲虫辐射,但该群体的基础关系仍然存在争议,尤其是在最大的科Curculionidae中。我们使用了下一代测序来生成线粒体基因组数据,该数据包括27个分类单元的12个蛋白质编码基因。在两个不同的模型和分区方案下,通过贝叶斯和ML搜索,与两个已公开的小组内序列一起评估了(亚)家庭关系。线粒体基因组的正向和反向链在核苷酸偏斜方面有所不同。因此,每个氨基酸在任一链上的同义密码子使用都大不相同,从而以AT和GC结尾的密码子分别在正向和反向链上受到支持。通过正向/反向链和密码子位置进行的数据分区大大改善了可能性得分和节点支持,而树形拓扑在很大程度上是稳定的。该分析通常支持具有直角触角和祖先型雄性生殖器的多个“直角兽”血统的基础位置。表现出祖先和衍生的触角和生殖器特征的杂种的寄生虫的混合种群;以及与扭结触角相对应的强力弯刀科的衍生的“角棘”世系。后者不包括作为枯草tho科的姊妹而被回收的枯燥的侧柏科,而鞘翅目科和s科科在formed科中形成了两个独立的木of。 Curculionidae的基础分裂使Entiminae和Hyperinae成为所有其他亚科的姐妹,并得到了高水平的支持,这为根据前者的食虫幼虫与内吞性幼虫的食虫幼虫的生活方式提供了新的生态学概念。 tRNA簇中的基因顺序重排也支持这种基础分裂。支持木钻象鼻虫单亲的最新研究可能归因于长期分支吸引,因为发现其线粒体基因组中的分子速率高于其他谱系,但这在对线粒体蛋白编码基因进行综合分析后并未混淆树木搜索。

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