首页> 外文期刊>Biological Journal of the Linnean Society >Opportunistic pollinator shifts among sexually deceptive orchids indicated by a phylogeny of pollinating and non-pollinating thynnine wasps (Tiphiidae).
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Opportunistic pollinator shifts among sexually deceptive orchids indicated by a phylogeny of pollinating and non-pollinating thynnine wasps (Tiphiidae).

机译:授粉和非授粉胸腺黄蜂((科)的系统发育表明,性授粉兰花中的机会性授粉媒介转移。

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摘要

The thynnine wasp genus Neozeleboria Rohwer is the main pollinating group of the sexually deceptive Australian orchid genus, Chiloglottis R.Br. In a highly specialized interaction, Chiloglottis species attract males from a single or very few Neozeleboria species through the chemical mimicry of the female wasp's sex pheromone. An earlier study examining the historical association among Chiloglottis and Neozeleboria using DNA sequence data found matching phylogenetic patterns suggestive of cospeciation between orchids and pollinators. However, patterns of constraint in Neozeleboria emergence phenology and sex pheromones suggested that the close association among orchid and wasp clades may be due to pollinator switching among closely related wasp taxa that have similar traits. In this study, we further examine the association by incorporating a morphological phylogenetic analysis of non-pollinating as well as pollinating Neozeleboria. The morphological analysis is then compared with DNA sequence data from one nuclear and one mitochondrial gene for an increased sample of outgroup genera. The combined molecular data set finds a monophyletic Neozeleboria, although support for this was not strong in the individual data sets. A high congruence between molecular and morphological analyses was found among higher groupings of Neozeleboria. Neozeleboria species that pollinate Chiloglottis species are not found as a monophyletic group but, rather, are scattered throughout a phylogeny comprising pollinators and non-pollinators. Under the cospeciation model, the presence of related Neozeleboria non-pollinators carries the unlikely implication that the association between plant and pollinator has been repeatedly lost. Instead, we favour the alternative 'preferential pollinator switching' model that accounts for the specialization among orchid and wasp lineages in terms of similarities in traits among related Neozeleboria..
机译:胸腺黄蜂属新zeleboria Rohwer是具有性欺骗性的澳大利亚兰花属Chiloglottis R.Br的主要授粉族。在高度专业化的相互作用中,Chiloglottis物种通过化学模仿雌性黄蜂的性信息素吸引单个或极少数新泽伯氏菌中的雄性。较早的一项研究使用DNA序列数据研究了梭菌和新孢子虫之间的历史关联,发现相匹配的系统发育模式暗示了兰花和授粉媒介之间的共存。然而,新斑鸠草出现物候和性信息素的限制模式表明,兰花和黄蜂进化枝之间的紧密联系可能是由于具有相似性状的密切相关的黄蜂类群之间的授粉媒介转换所致。在这项研究中,我们通过结合非授粉和授粉新泽伯氏菌的形态系统发育分析,进一步检查了这种关联。然后将形态学分析与来自一个核和一个线粒体基因的DNA序列数据进行比较,以获取更多的外群属样品。合并后的分子数据集发现了单系新斑痣,尽管在单个数据集中对此的支持不强。在分子生物学和形态学分析之间的高度一致性被发现在较高的新泽伯氏菌属中。传粉给Chiloglottis物种的新毛孢菌属物种没有发现为单系统物种,而是散布在包括传粉媒介和非传粉媒介的整个系统发育中。在共同物种模型下,相关的新孢子虫非传粉媒介的存在不太可能暗示植物和传粉媒介之间的联系已经反复丧失。取而代之的是,我们赞成替代性的“优先传粉媒介转换”模型,该模型考虑了相关新斑鸠草的性状相似性,从而说明了兰花和黄蜂谱系之间的特化。

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