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始新世-渐新世之交的灭绝脉冲驱动了澳大利亚两个温带植物群的多样化动态。

Extinction pulse at Eocene-Oligocene boundary drives diversification dynamics of two Australian temperate floras.

机构信息

School of Biological Sciences, Faculty of Science, The University of Adelaide, Adelaide, South Australia 5005, Australia.

State Herbarium of South Australia, PO Box 1047, Adelaide, South Australia 5001, Australia.

出版信息

Proc Biol Sci. 2020 Jan 29;287(1919):20192546. doi: 10.1098/rspb.2019.2546. Epub 2020 Jan 22.

Abstract

The diversification dynamics of the Australian temperate flora remains poorly understood. Here, we investigate whether differences in plant richness in the southwest Australian (SWA) biodiversity hotspot and southeast Australian (SEA) regions of the Australian continent can be attributed to higher net diversification, more time for species accumulation, or both. We assembled dated molecular phylogenies for the 21 most species-rich flowering plant families found across mesic temperate Australia, encompassing both SWA and SEA regions, and applied a series of diversification models to investigate responses across different groups and timescales. We show that the high richness in SWA can be attributed to a higher net rate of lineage diversification and more time for species accumulation. Different pulses of diversification were retrieved in each region. A decrease in diversification rate across major flowering plant lineages at the Eocene-Oligocene boundary ( 34 Ma) was witnessed in SEA but not in SWA. Our study demonstrates the importance of historical diversification pulses and differential responses to global events as drivers of present-day diversity. More broadly, we show that diversity within the SWA biodiversity hotspot is not only the result of recent radiations, but also reflects older events over the history of this planet.

摘要

澳大利亚温带植物区系的多样化动态仍知之甚少。在这里,我们研究了澳大利亚西南部生物多样性热点(SWA)和东南部(SEA)地区植物丰富度的差异是否归因于更高的净多样化率、更多的物种积累时间,或两者兼而有之。我们为在澳大利亚湿润温带地区发现的 21 个最丰富的开花植物科组装了经过时间校准的分子系统发育,涵盖了 SWA 和 SEA 地区,并应用了一系列多样化模型来调查不同群体和时间尺度上的反应。我们表明,SWA 的高丰富度归因于谱系多样化的更高净率和更多的物种积累时间。在每个地区都检索到了不同的多样化脉冲。在 SEA 中观察到始新世-渐新世边界(3400 万年前)主要开花植物谱系的多样化率下降,但在 SWA 中没有观察到。我们的研究表明,历史多样化脉冲和对全球事件的不同反应作为当今多样性的驱动因素的重要性。更广泛地说,我们表明,SWA 生物多样性热点内的多样性不仅是最近辐射的结果,还反映了这颗行星历史上的旧事件。

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