Laboratoire d'Ecologie Alpine, Unité Mixte de Recherche 5533 CNRS-Université de Grenoble, Grenoble, France.
Am Nat. 2014 May;183(5):573-84. doi: 10.1086/675506. Epub 2014 Mar 19.
Recent debate on whether climatic niches are conserved through time has focused on how phylogenetic niche conservatism can be measured by deviations from a Brownian motion model of evolutionary change. However, there has been no evaluation of this methodological approach. In particular, the fact that climatic niches are usually obtained from distribution data and are thus heavily influenced by biogeographic factors has largely been overlooked. Our main objective here was to test whether patterns of climatic niche evolution that are frequently observed might arise from neutral dynamics rather than from adaptive scenarios. We developed a model inspired by neutral biodiversity theory, where individuals disperse, compete, and undergo speciation independently of climate. We then sampled the climatic niches of species according to their geographic position and showed that even when species evolve independently of climate, their niches can nonetheless exhibit evolutionary patterns strongly differing from Brownian motion. Indeed, climatic niche evolution is better captured by a model of punctuated evolution with constraints due to landscape boundaries, two features that are traditionally interpreted as evidence for selective processes acting on the niche. We therefore suggest that deviation from Brownian motion alone should not be used as evidence for phylogenetic niche conservatism but that information on phenotypic traits directly linked to physiology is required to demonstrate that climatic niches have been conserved through time.
近期有关气候生态位是否随时间推移而保守的争论焦点集中在如何通过偏离进化变化的布朗运动模型来衡量系统发育生态位保守性。然而,尚未对这种方法进行评估。特别是,气候生态位通常是从分布数据中获得的,因此受到生物地理因素的强烈影响,这在很大程度上被忽视了。我们的主要目的是检验经常观察到的气候生态位进化模式是否可能是由中性动态而不是适应性情景引起的。我们开发了一个受中性生物多样性理论启发的模型,其中个体独立于气候进行扩散、竞争和物种形成。然后,我们根据物种的地理位置对其气候生态位进行采样,并表明即使物种独立于气候进化,其生态位仍然可能表现出与布朗运动强烈不同的进化模式。实际上,由于景观边界的限制,气候生态位进化可以更好地通过具有约束的间断平衡模型来捕捉,这两个特征通常被解释为选择过程对生态位起作用的证据。因此,我们建议仅偏离布朗运动不应作为系统发育生态位保守性的证据,而是需要与生理学直接相关的表型特征的信息来证明气候生态位随时间推移而保守。