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重新审视美拉尼西亚的蚂蚁与分类群循环:热带群岛的历史及人类介导的入侵

Revisiting the ants of Melanesia and the taxon cycle: historical and human-mediated invasions of a tropical archipelago.

作者信息

Economo Evan P, Sarnat Eli M

机构信息

Michigan Society of Fellows, Department of Ecology and Evolutionary Biology, University of Michigan, Ann Arbor, MI 48409, USA.

出版信息

Am Nat. 2012 Jul;180(1):E1-16. doi: 10.1086/665996. Epub 2012 May 24.

Abstract

Understanding the historical evolution of biotas and the dynamics of contemporary human-mediated species introductions are two central tasks of biology. One hypothesis may address both-the taxon cycle. Taxon cycles are phases of range expansion and contraction coupled to ecological and evolutionary niche shifts. These historical invasion processes resemble human-mediated invasions in pattern and possibly mechanism, but both the existence of historical cycles and the roles of recent introductions are in question. We return to the system that originally inspired the taxon cycle-Melanesian ants-and perform novel tests of the hypothesis. We analyze (i) the habitat distributions of Fiji's entire ant fauna (183 species), (ii) ecological shifts associated with the in situ radiation of Fijian Pheidole in a phylogenetic context, and (iii) the ecological structure of a massive exotic ant invasion of the archipelago. Our analyses indicate lineages shift toward primary habitats, higher elevation, rarity, and ecological specialization with increasing level of endemism, consistent with taxon cycle predictions. The marginal habitats that historically formed a dispersal conduit in the Pacific are now mostly replaced by human-modified habitats dominated by a colonization pulse of exotic species. We propose this may represent the first phase of an incipient global cycle of human-mediated colonization, ecological shifts, and diversification.

摘要

了解生物群的历史演变以及当代人类介导的物种引入动态是生物学的两个核心任务。一个假说可能同时解决这两个问题——分类群循环。分类群循环是范围扩张和收缩的阶段,与生态和进化生态位转移相关联。这些历史入侵过程在模式上甚至可能在机制上类似于人类介导的入侵,但历史循环的存在以及近期引入的作用都存在疑问。我们回到最初激发分类群循环概念的系统——美拉尼西亚蚂蚁,并对该假说进行新的检验。我们分析了:(i)斐济整个蚂蚁动物区系(183种)的栖息地分布,(ii)在系统发育背景下与斐济大头蚁就地辐射相关的生态变化,以及(iii)该群岛大规模外来蚂蚁入侵的生态结构。我们的分析表明,随着特有程度的增加,谱系向主要栖息地、更高海拔、稀有性和生态专业化转变,这与分类群循环的预测一致。历史上在太平洋形成扩散通道的边缘栖息地现在大多被外来物种定殖脉冲主导的人类改造栖息地所取代。我们提出,这可能代表了人类介导的定殖、生态变化和多样化的全球初始循环的第一阶段。

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