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Correlates of hyperdiversity in southern African ice plants (Aizoaceae)

机译:与南部非洲冰厂(菊科)过度多样性的相关性

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摘要

The exceptionally high plant diversity of the Greater Cape Floristic Region (GCFR) comprises a combination of ancient lineages and young radiations. A previous phylogenetic study of Aizoaceae subfamily Ruschioideae dated the radiation of this clade of > 1500 species in the GCFR to 3.8–8.7 Mya, establishing it as a flagship example of a diversification event triggered by the onset of a summer-arid climate in the region. However, a more recent analysis found an older age for the Ruschioideae lineage (17 Mya), suggesting that the group may in fact have originated much before the aridification of the region 10–15 Mya. Here, we reassess the tempo of radiation of ice plants by using the most complete generic-level phylogenetic tree for Aizoaceae to date, a revised calibration age and a new dating method. Our estimates of the age of the clade are even younger than initially thought (stem age 1.13–6.49 Mya), supporting the hypothesis that the radiation post-dates the establishment of an arid environment in the GCFR and firmly placing the radiation among the fastest in angiosperms (diversification rate of 4.4 species per million years). We also statistically examine environmental and morphological correlates of richness in ice plants and find that diversity is strongly linked with precipitation, temperature, topographic complexity and the evolution of highly succulent leaves and wide-band tracheids.
机译:大开普植物区(GCFR)的植物多样性极高,包括古老的血统和年轻的辐射。先前对菊科亚科Ruschioideae进行的系统发育研究表明,GCFR中1500种以上的进化枝辐射到3.8-8.7 Mya,确立了该地区夏季干旱气候引发的多样化事件的旗舰实例。 。然而,最近的一项分析发现,该科的血吸虫年龄较大(17 Mya),这表明该群体实际上可能起源于干旱地区10-15 Mya之前。在这里,我们通过使用迄今为止最完整的菊科植物的通用系统发育树,修订的校正年龄和新的测年方法来重新评估冰植物的辐射速度。我们对进化枝年龄的估计甚至比最初认为的还要年轻(茎龄为1.13–6.49 Mya),这支持了以下假设:辐射在GCFR中建立了干旱环境,并将辐射牢牢地置于最快的被子植物(每百万年4.4种)。我们还从统计学上检查了冰厂中丰富度与环境和形态的相关性,发现多样性与降水,温度,地形复杂性以及高度多汁的叶片和宽阔水管的演变密切相关。

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