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The thermohaline expressway: the Southern Ocean as a centre of origin for deep-sea octopuses

机译:盐卤高速公路:南大洋作为深海章鱼的起源中心

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Understanding how environmental forcing has generated and maintained large-scale patterns of biodiversity is a key goal of evolutionary research and critical to predicting the impacts of global climate change. We suggest that the initiation of the global thermohaline circulation provided a mechanism for the radiation of Southern Ocean fauna into the deep sea. We test this hypothesis using a relaxed phylogenetic approach to coestimate phylogeny and divergence times for a lineage of octopuses with Antarctic and deep-sea representatives. We show that the deep-sea lineage had their evolutionary origins in Antarctica, and estimate that this lineage diverged around 33 million years ago (Ma) and subsequently radiated at 15 Ma. Both of these dates are critical in development of the thermohaline circulation and we suggest that this has acted as an evolutionary driver enabling the Southern Ocean to become a centre of origin for deep-sea fauna. This is the first unequivocal molecular evidence that deep-sea fauna from other ocean basins originated from Southern Ocean taxa and this is the first evidence to be dated. pb The Willi Hennig Society 2008.
机译:了解环境强迫是如何产生和维持大规模生物多样性模式的,这是进化研究的关键目标,对于预测全球气候变化的影响至关重要。我们认为,全球温盐环流的启动为南方海洋动物辐射到深海提供了一种机制。我们使用一种宽松的系统发育方法来检验这个假设,以估计章鱼的系谱和发散时间,并与南极和深海代表进行比较。我们表明,深海谱系起源于南极洲,并估计该谱系在约3300万年前(Ma)发散,并随后在15 Ma辐射。这两个日期对于热盐循环的发展都至关重要,我们建议这已成为进化驱动力,使南大洋成为深海动物的起源中心。这是第一个明确的分子证据,表明其他海洋盆地的深海动物群起源于南大洋类群,这是有史以来的第一个证据。 pb 2008年威利·亨尼格学会(Willi Hennig Society)。

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