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首页> 外文期刊>Systematic Entomology >A phylogenetic study of the 'bombycoid complex' (Lepidoptera) using five protein-coding nuclear genes, with comments on the problem of macrolepidopteran phylogeny
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A phylogenetic study of the 'bombycoid complex' (Lepidoptera) using five protein-coding nuclear genes, with comments on the problem of macrolepidopteran phylogeny

机译:使用五个编码蛋白质的核基因对“类鳞翅目”(鳞翅目)进行系统发育研究,并评论巨鳞翅目系统发育问题

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摘要

This study had two aims. First, we tested the monophyly of and relationships within the 'bombycoid complex', an assembly of approximately 5300 species postulated by Minet to represent 12 families in three superfamilies, by sequencing five protein-coding nuclear gene regions (CAD, DDC, enolase, period, wingless; approximately 6750 bp total) in 66 representatives of most of the subfamilies and tribes. Second, we sought initial evidence on the utility of these genes for estimating relationships among Macrolepidoptera more broadly (11 superfamilies total), by adding representatives of eight families from four other superfamilies, and by assessing the phylogenetic information content of the individual genes and partitions thereof. Analysis of the combined data by likelihood and parsimony upholds monophyly for the bombycoid complex and for Bombycoidea sensu stricto (includes Anthelidae, see below), but with weak bootstrap support. Minet's assignment of Phiditiinae to Bombycoidea rather than to Noctuoidea is strongly upheld, but Anthelidae, placed in Lasiocampoidea by Minet, group securely within Bombycoidea sensu stricto. Within the latter, the basal split segregates a strongly supported 'BALE' group [Apatelodinae + (Eupterotidae + (Brahmaeidae + Lemoniidae))]. The remaining families form a consistently but weakly supported clade, within which the basal split segregates the very strongly supported 'CAPOPEM' group [Carthaeidae, Anthelidae, Phiditiinae, (Prismostictini + (Endromidae + (Obertbueriini + Mirinidae)))]. The remaining bombycoids are grouped, very weakly, as Sphingidae + (Bombycinae + Saturniidae). All multiply-sampled families are strongly recovered, in both outgroups and ingroups, except that Bombycidae sensu Minet are rendered decisively polyphyletic. All genes make important contributions to the combined data results, and there is little strong conflict among genes or between synonymous and nonsynonymous change, although two instances of inter-gene conflict were notable, one in Lasiocampidae and one in Mimallonidae. Overall, about 75% of nodes are strongly supported (i.e. bootstrap value >= 80%). Superfamilies are recovered, but not always strongly, whereas relationships among superfamilies are recovered only weakly and inconsistently; even within the reasonably well-sampled Bombycoidea sensu stricto, a (to us) surprising number of interfamily relationships remain uncertain. Thus, it seems clear that substantially more genes, plus additional taxon sampling in most superfamilies, will be required to resolve macrolepidopteran phylogeny.
机译:这项研究有两个目的。首先,我们通过对五个编码蛋白质的核基因区域(CAD,DDC,烯醇酶,时期)进行测序,测试了“ Bombycoid复合体”(由Minet假定为代表三个超家族的12个家族的约5300个物种)的单系关系和内部关系,无翅;大约6750 bp),代表大多数亚科和部落。其次,我们通过添加来自其他四个超家族的八个家族的代表,并评估单个基因及其分区的系统发育信息内容,寻求有关这些基因用于更广泛地估计巨鳞翅类之间关系的初步证据(总共11个超家族) 。按似然法和简约法对合并数据的分析在bombycoid复合体和Bombycoidea sensu stricto(包括Anthelidae,请参阅下文)方面单方面坚持,但自举支持较弱。 Minet将Phiditiinae分配给Bombycoidea而不是Noctuoidea的做法得到了强烈支持,但是由Minet放置在Lasiocampoidea中的Anthelidae安全地归类于Bombycoidea sensustricto中。在后者中,基底分裂分离出一个强烈支持的“ BALE”群[[蝶科+(Eupterotidae +(Brahmaeidae + Lemoniidae))]。其余的科系形成一贯但支配力弱的分支,其中基部分裂分离出非常有支配的“ CAPOPEM”组[Car螨科,Anthelidae,Phiditiinae,(Prismostictini +(Endromidae +(Obertbueriini + Mirinidae)))]。其余的类蝇科动物非常弱地归类为天蛾科+(类蝇科+ atur科)。除群体中的Bombycidae sensu Minet表现出决定性的多系统性外,所有的多采样家族均在组外和组内都得到了强力恢复。所有基因都对合并数据结果做出了重要贡献,尽管两个基因间冲突很明显,一个在Lasiocampidae中,一个在Mimallonidae中,但在基因之间或同义与非同义变化之间几乎没有强烈的冲突。总体而言,强烈支持约75%的节点(即,引导程序值> = 80%)。超家族可以被恢复,但并非总是很强,而超家族之间的关系只能被弱和不一致地恢复。即使在合理采样的严格Bombycoidea sensu范围内,(对我们而言)令人惊讶的家庭关系数量仍然不确定。因此,似乎很明显,要解决大鳞翅目的系统发育,将需要更多的基因,再加上大多数超家族中的其他分类单元采样。

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