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Local coexistence and genetic isolation of three pollinator species on the same fig tree species

机译:同一无花果树上三种授粉媒介的本地共存和遗传隔离

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摘要

Molecular tools increasingly reveal cryptic lineages and species that were previously unnoticed by traditional taxonomy. The discovery of cryptic species in sympatry prompts the question of how they coexist in the apparent absence of ecological divergence. However, this assumes first that the molecular taxonomy used to identify cryptic lineages delimits species boundaries accurately. This issue is important, because many diversity studies rely heavily or solely on data from mitochondrial DNA sequences for species delimitation, and several factors may lead to poor identification of species boundaries. We used a multilocus population genetics approach to show that three mtDNA-defined cryptic lineages of the fig wasp Pleistodontes imperialis Saunders, which pollinate Port Jackson figs (Ficus rubiginosa) in north-eastern Australia, represent reproductively isolated species. These species coexist locally, with about 13% of figs (where mating occurs) containing wasps from two or three species. However, there was no evidence for gene flow between them. Confirmed cases of coexisting cryptic species provide excellent opportunities for future studies of the ecological and evolutionary forces shaping both species coexistence and fig/pollinator coevolution.
机译:分子工具越来越多地揭示了传统分类学以前未曾注意到的隐秘谱系和物种。在共生中发现隐性物种提出了一个问题,即它们在明显缺乏生态差异的情况下如何共存。但是,这首先假定用于识别隐秘谱系的分子分类法准确地界定了物种边界。这个问题很重要,因为许多多样性研究严重或仅依赖于线粒体DNA序列的数据来进行物种定界,并且一些因素可能导致对物种边界的识别不佳。我们使用多基因座种群遗传学方法显示了无花果黄蜂Pleistodontes imperialis Saunders的三个mtDNA定义的隐性谱系,它们对澳大利亚东北部的杰克逊无花果(Ficus rubiginosa)进行授粉,代表生殖分离的物种。这些物种在当地共存,大约有13%的无花果(发生交配)含有来自两个或三个物种的黄蜂。但是,没有证据表明它们之间存在基因流动。确诊的隐性物种共存案例为今后研究塑造物种共存和无花果/授粉者共同进化的生态和进化力提供了极好的机会。

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