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Increased diversification rates are coupled with higher rates of climate space exploration in Australian Acacia (Caesalpinioideae)

机译:增加的多元化率加上澳大利亚金合欢(Caesalpinioideae)的气候空间勘探率更高

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摘要

Australia is an excellent setting to explore relationships between climate change and diversification dynamics. Aridification since the Eocene has resulted in spectacular radiations within one or more Australian biomes. Acacia is the largest plant genus on the Australian continent, with around 1000 species, and is present in all biomes. We investigated the macroevolutionary dynamics of Acacia within climate space. We analysed phylogenetic and climatic data for 503 Acacia species to estimate a time-calibrated phylogeny and central climatic tendencies for BioClim layers from 132 000 herbarium specimens. Diversification rate heterogeneity and rates of climate space exploration were tested. We inferred two diversification rate increases, both associated with significantly higher rates of climate space exploration. Observed spikes in climate disparity within the Pleistocene correspond with onset of Pleistocene glacial-interglacial cycling. Positive time dependency in environmental disparity applies in the basal grade of Acacia, though climate space exploration rates were lower. Incongruence between rates of climate space exploration and disparity suggests different Acacia lineages have experienced different macroevolutionary processes. The second diversification rate increase is associated with a south-east Australian mesic lineage, suggesting adaptations to progressively aridifying environments and ability to transition into mesic environments contributed to Acacia's dominance across Australia.
机译:澳大利亚是探索气候变化与多元化动态之间的关系的绝佳环境。由于群岛在一个或多个澳大利亚生物群体中导致了壮观的辐射,因此充满了。金合欢是澳大利亚大陆最大的植物属,约1000种物种,并存在于所有生物群体中。我们调查了气候空间内金合欢的宏观调度动力学。我们分析了503种合欢物种的系统发育和气候数据,以估计从132 000个植物标目标本的生物加米层的时间校准的系统校准和中央气候倾向。测试了多样化率异质性和气候空间勘探率。我们推断出两种多样化率,这两种多样化率增加,气候空间勘探率明显提高。观察到普利科酮内的气候差异中的尖峰对应于冰肾上腺间循环的发病。虽然气候空间空间勘探率较低,但环境差距对环境差异的阳性时间依赖性适用于金合欢。气候空间勘探和差距率之间的不一致表明不同的金合欢谱系经历了不同的宏观调度过程。第二个多样化率增加与东南澳大利亚浅线谱系有关,建议适应逐步充实的环境和转变为浅景观环境的能力,导致澳大利亚的金合欢的统治。

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