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Origin and global diversification patterns of tropical rain forests: inferences from a complete genus-level phylogeny of palms

机译:热带雨林的起源和全球多样化模式:从完整的属级棕榈树系统发育学中推断

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Background Understanding how biodiversity is shaped through time is a fundamental question in biology. Even though tropical rain forests (TRF) represent the most diverse terrestrial biomes on the planet, the timing, location and mechanisms of their diversification remain poorly understood. Molecular phylogenies are valuable tools for exploring these issues, but to date most studies have focused only on recent time scales, which minimises their explanatory potential. In order to provide a long-term view of TRF diversification, we constructed the first complete genus-level dated phylogeny of a largely TRF-restricted plant family with a known history dating back to the Cretaceous. Palms (Arecaceae/Palmae) are one of the most characteristic and ecologically important components of TRF worldwide, and represent a model group for the investigation of TRF evolution. Results We provide evidence that diversification of extant lineages of palms started during the mid-Cretaceous period about 100 million years ago. Ancestral biome and area reconstructions for the whole family strongly support the hypothesis that palms diversified in a TRF-like environment at northern latitudes. Finally, our results suggest that palms conform to a constant diversification model (the 'museum' model or Yule process), at least until the Neogene, with no evidence for any change in diversification rates even through the Cretaceous/Paleogene mass extinction event. Conclusions Because palms are restricted to TRF and assuming biome conservatism over time, our results suggest the presence of a TRF-like biome in the mid-Cretaceous period of Laurasia , consistent with controversial fossil evidence of the earliest TRF. Throughout its history, the TRF biome is thought to have been highly dynamic and to have fluctuated greatly in extent, but it has persisted even during climatically unfavourable periods. This may have allowed old lineages to survive and contribute to the steady accumulation of diversity over time. In contrast to other plant studies, our results suggest that ancient and steady evolutionary processes dating back to the mid-Cretaceous period can contribute, at least in part, to present day species richness in TRF.
机译:背景技术了解生物多样性如何随着时间变化是生物学中的一个基本问题。尽管热带雨林(TRF)代表了地球上最多样化的陆地生物群落,但对其多样化的时间,位置和机制仍知之甚少。分子系统发育是探索这些问题的有价值的工具,但迄今为止,大多数研究仅集中在最近的时间尺度上,这使它们的解释潜力最小化。为了提供TRF多元化的长远眼光,我们构建了一个受TRF限制的植物家族的第一个完整的属水平年代系统史,其历史可以追溯到白垩纪。棕榈(菊苣科/棕榈科)是世界范围内TRF最具特征和生态上重要的组成部分,是研究TRF演变的模型组。结果我们提供的证据表明,现存的棕榈谱系多样化始于约一亿年​​前的白垩纪中期。整个家庭的祖先生物群系和区域重建强烈支持以下假设:在北纬的TRF状环境中,棕榈多样化。最后,我们的研究结果表明,至少在新近纪之前,手掌符合一个恒定的多样化模型(“博物馆”模型或尤尔过程),即使白垩纪/古生物大规模灭绝事件也没有任何多样化速率变化的证据。结论由于手掌只限于TRF并随着时间的推移假设生物群系保守性,因此我们的结果表明,在月相的白垩纪中期存在类似TRF的生物群系,这与有争议的最早TRF的化石证据一致。在其整个历史中,TRF生物群落一直被认为具有很高的动态性,并在一定程度上波动很大,但即使在气候不利的时期也一直持续存在。这可能使旧的血统得以生存,并随着时间的推移为多样性的稳定积累做出了贡献。与其他植物研究相反,我们的研究结果表明,追溯至白垩纪中期的古老而稳定的进化过程至少可以部分有助于当今TRF的物种丰富。

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