The parasitic wasp genera Skiapus, Hellwigia, Nonnus, Chriodes, and Klutiana (Hymenoptera, Ichneumonidae): Recognition of the Nesomesochorinae stat. rev. and Nonninae stat. nov. and transfer of Skiapus and Hellwigia to the Ophioninae

The parasitic wasp genera Skiapus, Hellwigia, Nonnus, Chriodes, and Klutiana (Hymenoptera, Ichneumonidae): Recognition of the Nesomesochorinae stat. rev. and Nonninae stat. nov. and transfer of Skiapus and Hellwigia to the Ophioninae
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寄生黄蜂属 Skiapus、Hellwigia、Nonnus、Chriodes 和 Klutiana(膜翅目、Ichneumonidae):Nesomesochorinae stat 的识别。

DOI:
10.1080/00222930500102546
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发表时间:
2005
影响因子:
0.8
通讯作者:
M. Ismail Miah
M. Ismail Miah
中科院分区:
生物学4区
文献类型:
--
作者:
D. Quicke;M. Fitton;G. Broad;Barnaby Crocker;N. Laurenne;M. Ismail Miah

文献摘要

被引文献

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基于形态学、分子学和使用PAUP* 和优化比对程序POY的同步分析,将Skiapus莫利、Hellwigia Gravenhorst、Nonnus Cresson、Chriodes Förster和Klutiana Betrem等属的姬蜂分别从Campopleginae中正式删除。Skiapus和Hellwigia被证明与它们被转移到的Ophioninae形成一个单系群。Nonnus被视为包含Nonninae stat。nov.和Chriodes和Klutiana(有时被视为Chriodes的初级同义词)被视为包括Nesomesocholinae stat。Nesomesochorinae和Nonninae的地位没有完全解决,因为它们没有一致地作为单独的群体恢复,在一些分析中形成了一个单一的分支。因为这种不确定性,我们把它们分开。28 S rDNA基因D2-3扩展区域内的分子突触形态显示了该基因区域在确定高等蛇尾目中亚科水平位置方面的实用性。
The ichneumonid wasp genera Skiapus Morley, Hellwigia Gravenhorst, Nonnus Cresson, Chriodes Förster, and Klutiana Betrem are each formally removed from the Campopleginae on the basis of morphological, molecular, and simultaneous analyses using PAUP* and the optimization alignment program POY. Skiapus and Hellwigia are shown to form a monophyletic group with the Ophioninae to which they are transferred. Nonnus is treated as comprising the Nonninae stat. nov. and Chriodes and Klutiana (sometimes treated as a junior synonym of Chriodes) are treated as comprising the Nesomesochorinae stat. rev. The status of Nesomesochorinae and Nonninae is not fully resolved as they are not consistently recovered as separate groups, forming a single clade in some analyses. We keep them separate because of this uncertainty. Molecular synapomorphies within the D2–3 expansion region of the 28S rDNA gene show the utility of this gene region in determining subfamily‐level placement within the higher Ophioniformes.