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An integrative approach to species discrimination in the Anagrus atomus group sensu stricto (Hymenoptera: Mymaridae), with a description of a new species

机译:Anagrus Atomus Group Sensu stricto(Hymenoptera:mymaridae)中的物种歧视的一种综合方法,具有新物种的描述

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摘要

Egg parasitoids of the genus Anagrus Haliday (Hymenoptera: Mymaridae) are natural enemies of many pests around the world. We used an integrative approach to characterize some species belonging to the Anagrus atomus group, using specimens reared from leafhoppers infesting some Lamiaceae. Starting from morphological identifications based on available keys, we carried out a multi-locus genetic characterization using phylogenetic and species delimitation analyses, and integrated it with biological and morphometric evidence. This approach revealed the existence of a new species, A. nepetellae sp. nov., here described along with its phenological traits. The approach also allowed us to characterize the expected taxonomic stability of other putative species within the group. We propose two new species groups called the atomus group sensu stricto and the vilis group, with the goal of streamlining the taxonomy of the atomus group. We also present a key for the identification of females of the European species of the atomus group sensu stricto. Some specimens show heterozygosity in 28S-D2 sequences, suggesting hybridization between A. atomus and A. nepetellae, which, if it is common between other species as well, could partly explain the taxonomic problems in the genus Anagrus. DNA sequencing of specimens reared by the same biofactory at different times suggests involuntary contamination leading to the displacement of a laboratory strain of A. atomus by A. nepetellae, which may have resulted from undetected partial reproductive compatibility.
机译:Anagrus Haliday(Hymenoptera)属的蛋寄生虫(Hymenoptera:mymaridae)是世界各地许多害虫的自然敌人。我们使用了一种综合方法来表征属于Anagrus Atomus组的一些物种,使用从叶蝉侵染的叶蝉饲养的标本。从基于可用键的形态学识别开始,我们使用系统发育和物种划分分析进行多基因座遗传表征,并将其与生物和形态学证据进行整合。这种方法揭示了一种新物种,A. nepetellae sp。 11月。,这里与其酚类特征一起描述。该方法还允许我们描述本集团内其他推定物种的预期分类稳定性。我们提出了两个名为Atomus Group Sensu Sticho和Vilis Group的新物种组,其目标是简化Atomus集团的分类。我们还提出了识别欧洲艾米斯集团Sensu Sticho的欧洲物种的女性的关键。一些样品在28升-D2序列中显示出杂合性,表明A. Atomus和A. nepetellae之间的杂交,如果它在其他物种之间常见,也可以部分解释Anagrus属的分类问题。在不同时期的相同生物发作饲养的样本的DNA测序表明,非自愿污染,导致A.玉肌菌的实验室菌株的位移,这可能导致未被检测的部分生殖相容性。

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