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一变五:整合分类学揭示了收获蚁“structor”中隐秘物种的复杂进化。

Turning one into five: Integrative taxonomy uncovers complex evolution of cryptic species in the harvester ant Messor "structor".

机构信息

Molecular Ecology Group, Department of Ecology, University of Innsbruck, Technikerstraße 25, 6020 Innsbruck, Austria.

MTA-ELTE-MTM, Ecology Research Group, Pázmány Péter sétány 1C, H-1117 Budapest, Hungary.

出版信息

Mol Phylogenet Evol. 2018 Oct;127:387-404. doi: 10.1016/j.ympev.2018.04.005. Epub 2018 Apr 27.

DOI:10.1016/j.ympev.2018.04.005
PMID:29709692
Abstract

Seed harvesting ants are ecosystem engineers that shape vegetation, nutrient cycles, and microclimate. Progress in ecological research is, however, slowed down by poor species delimitation. For example, it has not been resolved to date, how many species the European harvester ant Messor "structor" (Latreille, 1798) represents. Since its first description, splitting into additional taxa was often proposed but not accepted later on due to inconsistent support from morphology and ecology. Here, we took an iterative integrative-taxonomy approach - comparing multiple, independent data sets of the same sample - and used traditional morphometrics, Wolbachia symbionts, mitochondrial DNA, amplified fragment length polymorphism, and ecological niche modelling. Using the complementarity of the data sets applied, we resolved multiple, strong disagreements over the number of species, ranging from four to ten, and the allocation of individuals to species. We consider most plausible a five-species hypothesis and conclude the taxonomic odyssey by redescribing Messor structor, M. ibericus Santschi, 1925, and M. muticus (Nylander, 1849) stat.rev., and by describing two new species, M. ponticus sp.n. and M. mcarthuri sp.n. The evolutionary explanations invoked in resolving the various data conflicts include pronounced morphological crypsis, incomplete lineage-sorting or ongoing cospeciation of endosymbionts, and peripatric speciation - these ants' significance to evolutionary biology parallels that to ecology. The successful solution of this particular problem illustrates the usefulness of the integrative approach to other systematic problems of comparable complexity and the importance of understanding evolution to drawing correct conclusions on species' attributes, including their ecology and biogeography.

摘要

收获蚁是塑造植被、养分循环和小气候的生态系统工程师。然而,生态研究的进展因物种界定不佳而放缓。例如,至今尚未解决欧洲收获蚁 Messor "structor"(Latreille,1798)代表多少个物种的问题。自首次描述以来,经常提出将其分为额外的分类群,但由于形态学和生态学的支持不一致,后来并未被接受。在这里,我们采用了迭代综合分类学方法 - 比较同一样本的多个独立数据集 - 并使用传统形态计量学、沃尔巴克氏体共生菌、线粒体 DNA、扩增片段长度多态性和生态位建模。利用应用的数据集的互补性,我们解决了关于物种数量和个体分配的多个强烈分歧,范围从四个到十个。我们认为最合理的是五物种假说,并通过重新描述 Messor structor、M. ibericus Santschi,1925 和 M. muticus(Nylander,1849)stat.rev.,以及描述两个新物种 M. ponticus sp.n. 和 M. mcarthuri sp.n.,结束了分类学的探索。解决各种数据冲突所涉及的进化解释包括明显的形态学伪装、不完全谱系排序或共生菌的持续共进化以及边缘种群形成 - 这些蚂蚁对进化生物学的重要性与对生态学的重要性相当。这个特定问题的成功解决说明了综合方法对于其他具有类似复杂性的系统问题的有用性,以及理解进化对于得出关于物种属性的正确结论的重要性,包括它们的生态学和生物地理学。

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