Adaptive radiation plays a fundamental role in our understanding of the evolutionary process. However, the concept has provoked strong and differing opinions concerning its definition and nature among researchers studying a wide diversity of systems. Here, we take a broad view of what constitutes an adaptive radiation, and seek to find commonalities among disparate examples, ranging from plants to invertebrate and vertebrate animals, and remote islands to lakes and continents, to better understand processes shared across adaptive radiations. We surveyed many groups to evaluate factors considered important in a large variety of species radiations. In each of these studies, ecological opportunity of some form is identified as a prerequisite for adaptive radiation. However, evolvability, which can be enhanced by hybridization between distantly related species, may play a role in seeding entire radiations. Within radiations, the processes that lead to speciation depend largely on (1) whether the primary drivers of ecological shifts are (a) external to the membership of the radiation itself (mostly divergent or disruptive ecological selection) or (b) due to competition within the radiation membership (interactions among members) subsequent to reproductive isolation in similar environments, and (2) the extent and timing of admixture. These differences translate into different patterns of species accumulation and subsequent patterns of diversity across an adaptive radiation. Adaptive radiations occur in an extraordinary diversity of different ways, and continue to provide rich data for a better understanding of the diversification of life.

译文

适应性辐射在我们对进化过程的理解中起着至关重要的作用。但是,在研究广泛的系统多样性的研究人员中,该概念在其定义和性质方面引起了强烈而不同的意见。在这里,我们从广义上了解什么是适应性辐射,并寻求在不同的例子中找到共同点,从植物到无脊椎动物和脊椎动物,从偏远岛屿到湖泊和大陆,以更好地理解适应性辐射共享的过程。我们对许多小组进行了调查,以评估被认为在多种物种辐射中重要的因素。在这些研究中的每一项中,都将某种形式的生态机会确定为适应性辐射的先决条件。但是,可以通过远缘物种之间的杂交来增强进化能力,可能在播种整个辐射中起作用。在辐射范围内,导致物种形成的过程在很大程度上取决于 (1) 生态变化的主要驱动因素是 (a) 辐射本身的成员资格 (主要是发散的或破坏性的生态选择) 还是 (b) 由于辐射成员资格内的竞争 (成员之间的相互作用) 类似的环境,(2) 混合的程度和时间。这些差异转化为不同的物种积累模式以及随后的适应性辐射多样性模式。自适应辐射以不同方式的非凡多样性发生,并继续提供丰富的数据,以更好地了解生活的多样化。

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