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分歧的滞育生活史时间驱动了 Ragoleltis 蝇适应性辐射中的异地物种形成和网状杂交。

Divergent diapause life history timing drives both allochronic speciation and reticulate hybridization in an adaptive radiation of Rhagoletis flies.

机构信息

Department of Biological Sciences, University of Notre Dame, Notre Dame, IN, USA.

Department of Biological Sciences, Binghamton University (State University of New York), Binghamton, NY, USA.

出版信息

Mol Ecol. 2022 Aug;31(15):4031-4049. doi: 10.1111/mec.15908. Epub 2021 Apr 22.

Abstract

Divergent adaptation to new ecological opportunities can be an important factor initiating speciation. However, as niches are filled during adaptive radiations, trait divergence driving reproductive isolation between sister taxa may also result in trait convergence with more distantly related taxa, increasing the potential for reticulated gene flow across the radiation. Here, we demonstrate such a scenario in a recent adaptive radiation of Rhagoletis fruit flies, specialized on different host plants. Throughout this radiation, shifts to novel hosts are associated with changes in diapause life history timing, which act as "magic traits" generating allochronic reproductive isolation and facilitating speciation-with-gene-flow. Evidence from laboratory rearing experiments measuring adult emergence timing and genome-wide DNA-sequencing surveys supported allochronic speciation between summer-fruiting Vaccinium spp.-infesting Rhagoletis mendax and its hypothesized and undescribed sister taxon infesting autumn-fruiting sparkleberries. The sparkleberry fly and R. mendax were shown to be genetically discrete sister taxa, exhibiting no detectable gene flow and allochronically isolated by a 2-month average difference in emergence time corresponding to host availability. At sympatric sites across the southern USA, the later fruiting phenology of sparkleberries overlaps with that of flowering dogwood, the host of another more distantly related and undescribed Rhagoletis taxon. Laboratory emergence data confirmed broadly overlapping life history timing and genomic evidence supported on-going gene flow between sparkleberry and flowering dogwood flies. Thus, divergent phenological adaptation can drive the initiation of reproductive isolation, while also enhancing genetic exchange across broader adaptive radiations, potentially serving as a source of novel genotypic variation and accentuating further diversification.

摘要

新生态机会的趋异适应可能是引发物种形成的重要因素。然而,随着适应辐射过程中生态位的填补,驱动姐妹类群生殖隔离的性状分歧也可能导致与更远缘类群的性状趋同,增加了整个辐射过程中基因流的网状化潜力。在这里,我们在最近的一个专门研究不同宿主植物的拟果蝇属(Rhagoletis)的适应性辐射中展示了这样一个场景。在整个辐射过程中,向新宿主的转变与休眠生活史时间的变化有关,这些变化充当了产生异时生殖隔离和促进有基因流的物种形成的“神奇特征”。来自实验室饲养实验测量成虫出现时间和全基因组 DNA 测序调查的证据支持了夏季果实杨梅属(Vaccinium spp.)寄生的拟果蝇属(Rhagoletis mendax)与其假设的和未描述的姐妹类群之间的异时物种形成,该姐妹类群寄生在秋季果实的亮莓属(Euonymus)上。亮莓属果蝇和 R. mendax 被证明是遗传上不同的姐妹类群,表现出没有可检测到的基因流,并且由于出现时间的平均差异为 2 个月,与宿主的可利用性相对应,表现出异时隔离。在整个美国南部的同域地点,亮莓属果实的晚熟物候期与开花山茱萸(Cornus florida)的物候期重叠,开花山茱萸是另一个更远缘且未描述的拟果蝇属类群的宿主。实验室出现数据证实了广泛重叠的生活史时间,基因组证据支持亮莓属和开花山茱萸果蝇之间正在进行的基因流。因此,趋异的物候适应可以驱动生殖隔离的开始,同时也增强了更广泛的适应性辐射中的遗传交换,可能成为新基因型变异的来源,并进一步强调了多样化。

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