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在角甲总科(鞘翅目:扁甲超科)中寻找自然谱系。

Searching for natural lineages within the Cerylonid Series (Coleoptera: Cucujoidea).

作者信息

Robertson James A, Whiting Michael F, McHugh Joseph V

机构信息

Department of Entomology, University of Georgia, 413 Biological Sciences Building, Athens, GA 30602-2603, USA.

出版信息

Mol Phylogenet Evol. 2008 Jan;46(1):193-205. doi: 10.1016/j.ympev.2007.09.017. Epub 2007 Oct 4.

Abstract

Phylogenetic relationships within the diverse beetle superfamily Cucujoidea are poorly known. The Cerylonid Series (C.S.) is the largest of all proposed superfamilial cucujoid groups, comprising eight families and representing most of the known cucujoid species diversity. The monophyly of the C.S., however, has never been formally tested and the higher-level relationships among and within the constituent families remain equivocal. Here we present a phylogenetic study based on 18S and 28S rDNA for 16 outgroup taxa and 61 C.S. ingroup taxa, representing seven of the eight C.S. families and 20 of 39 subfamilies. We test the monophyly of the C.S., investigate the relationships among the C.S. families, and test the monophyly of the constituent families and subfamilies. Phylogenetic reconstruction of the combined data was achieved via standard static alignment parsimony analyses, Direct Optimization using parsimony, and partitioned Bayesian analysis. All three analyses support the paraphyly of Cucujoidea with respect to Tenebrionoidea and confirm the monophyly of the C.S. The C.S. families Bothrideridae, Cerylonidae, Discolomatidae, Coccinellidae and Corylophidae are supported as monophyletic in all analyses. Only the Bayesian analysis recovers a monophyletic Latridiidae. Endomychidae is recovered as polyphyletic in all analyses. Of the 14 subfamilies with multiple terminals in this study, 11 were supported as monophyletic. The corylophid subfamily Corylophinae and the coccinellid subfamilies Chilocorinae and Scymninae are recovered as paraphyletic. A sister grouping of Anamorphinae+Corylophidae is supported in all analyses. Other taxonomic implications are discussed in light of our results.

摘要

在种类繁多的拟步甲总科内,系统发育关系鲜为人知。蜡斑甲类群(C.S.)是所有已提出的拟步甲总科类群中最大的一个,包含八个科,代表了大部分已知的拟步甲总科物种多样性。然而,蜡斑甲类群的单系性从未得到正式检验,其组成科之间以及科内的高级别关系仍不明确。在此,我们基于18S和28S核糖体DNA对16个外类群分类单元和61个蜡斑甲类群内类群分类单元进行了系统发育研究,这些内类群分类单元代表了八个蜡斑甲类群科中的七个以及39个亚科中的20个。我们检验了蜡斑甲类群的单系性,研究了蜡斑甲类群各科之间的关系,并检验了组成科和亚科的单系性。通过标准的静态比对简约分析、使用简约法的直接优化以及分区贝叶斯分析,实现了对合并数据的系统发育重建。所有这三种分析都支持拟步甲总科相对于拟步甲科的并系性,并确认了蜡斑甲类群的单系性。在所有分析中,蜡斑甲类群的扁甲科、蜡斑甲科、盘甲科、瓢虫科和隐翅虫科都被支持为单系的。只有贝叶斯分析恢复了一个单系的锯谷盗科。在所有分析中,阎甲科被恢复为多系的。在本研究中有多个终端的14个亚科中,有11个被支持为单系的。隐翅虫亚科和瓢虫亚科的 Chilocorinae 亚科和 Scymninae 亚科被恢复为并系的。在所有分析中,Anamorphinae + 隐翅虫科的姐妹群关系都得到了支持。根据我们的结果,还讨论了其他分类学意义。

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