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特莫诺斯托马属(双翅目:食蚜蝇科)黄蜂拟态及生物地理学的演化

The evolution of wasp mimicry and biogeography in the genus Temnostoma (Diptera: Syrphidae).

作者信息

Hadrava Jiří, Klečka Jan, Moran Kevin, Klečková Irena, Kelso Scott, Etzbauer Claudia, Skevington Jeffrey H, Mengual Ximo

机构信息

Department of Zoology Faculty of Science Charles University Viničná 7 128 43 Praha 2 Czech Republic.

Institute of Entomology, Biology Centre of the Czech Academy of Sciences, Branišovská 31 370 05 České Budějovice, Czech Republic; Department of Biology, Faculty of Science, Jan Evangelista Purkyně University, Pasteurova 3632/15 400 96 Ústí nad Labem, Czech Republic.

出版信息

Mol Phylogenet Evol. 2025 Apr;205:108298. doi: 10.1016/j.ympev.2025.108298. Epub 2025 Jan 31.

Abstract

One of the most remarkable examples of Batesian mimicry occurs in the genus Temnostoma Le Peletier & Audinet-Serville, 1828 (Diptera: Syrphidae). Adults of this genus have an overall resemblance to hymenopterans combined with behavioural mimicry (they move the fore legs in front of the head mimicking hymenopteran antennae). While some species of Temnostoma are considered highly accurate mimics of social wasps, other species have a darker colour pattern and are rather relatively poor yellowjacket mimics. Both colour phenotypes are widespread through the Holarctic. Here, we infer for the first time the evolutionary history of the genus with special focus on the evolution of mimicry and biogeography. With material covering 75 % of known species of Temnostoma and both colour phenotypes from each biogeographical region, we inferred a molecular phylogeny based on six molecular markers (mitochondrial protein-coding COI gene, nuclear 28 s rRNA gene, and four nuclear protein-coding genes: AATS, CK1, TULP, and RBP-15). Using Bayesian inference, we obtained a highly resolved phylogenetic tree supporting the monophyly of the genus Temnostoma as a sister group of genus Takaomyia Hervé-Bazin, 1914. Within Temnostoma, Te. daochus and Te. barberi (two Nearctic species with strikingly different mimicry patterns) were found to be closely related to each other and together form a lineage sister to the rest of the genus. Our results suggest that the behavioural mimicry of wasp antennae is a plesiomorphic state inherited from a common ancestor that includes the genera Temnostoma and Takaomyia. Within Temnostoma, the dark colour pattern (poor yellowjacket mimicry) appears to be an ancestral state and highly accurate social wasp mimicry has appeared two times independently within the genus. In some species inhabiting northern parts of the Holarctic, secondary darkening and consequent degradation of the yellowjacket mimicry appeared. This indicates high evolutionary plasticity and ongoing selection pressure on morphological characters related to mimicry in hover flies.

摘要

贝氏拟态最显著的例子之一出现在1828年勒佩莱蒂埃与奥迪内 - 塞尔维耶命名的坦诺斯托马属(双翅目:食蚜蝇科)。该属成虫整体上与膜翅目昆虫相似,并伴有行为拟态(它们在头部前方移动前腿,模仿膜翅目昆虫的触角)。虽然坦诺斯托马属的一些物种被认为是对社会性胡蜂的高度精确拟态,但其他物种具有较深的体色模式,相对而言是较差的黄夹克拟态。这两种颜色表型在全北区都很普遍。在这里,我们首次推断了该属的进化历史,特别关注拟态和生物地理学的进化。我们使用了涵盖坦诺斯托马属75%已知物种的材料,以及来自每个生物地理区域的两种颜色表型,基于六个分子标记(线粒体蛋白编码COI基因、核28s rRNA基因以及四个核蛋白编码基因:AATS、CK1、TULP和RBP - 15)推断了分子系统发育。使用贝叶斯推断,我们得到了一棵高度解析的系统发育树,支持坦诺斯托马属作为1914年埃尔韦 - 巴赞命名的塔科米亚属的姐妹群的单系性。在坦诺斯托马属内,道库斯坦诺斯托马和巴伯里坦诺斯托马(两种近北极物种,具有截然不同的拟态模式)被发现彼此密切相关,并共同形成一个与该属其他物种构成姐妹关系的谱系。我们的结果表明,对黄蜂触角的行为拟态是从包括坦诺斯托马属和塔科米亚属在内的共同祖先继承而来的一个原始状态。在坦诺斯托马属内,深色体色模式(较差的黄夹克拟态)似乎是一个祖先状态,而高度精确的社会性胡蜂拟态在该属内独立出现了两次。在一些栖息于全北区北部的物种中,出现了次生黑化以及随之而来的黄夹克拟态退化。这表明食蚜蝇与拟态相关的形态特征具有很高的进化可塑性和持续的选择压力。

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