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Rise to modern levels of ocean oxygenation coincided with the Cambrian radiation of animals

机译:上升到现代海洋氧合作用的水平同时伴随着寒武纪动物的辐射

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摘要

The early diversification of animals (∼630 Ma), and their development into both motile and macroscopic forms (∼575–565 Ma), has been linked to stepwise increases in the oxygenation of Earth's surface environment. However, establishing such a linkage between oxygen and evolution for the later Cambrian ‘explosion' (540–520 Ma) of new, energy-sapping body plans and behaviours has proved more elusive. Here we present new molybdenum isotope data, which demonstrate that the areal extent of oxygenated bottom waters increased in step with the early Cambrian bioradiation of animals and eukaryotic phytoplankton. Modern-like oxygen levels characterized the ocean at ∼521 Ma for the first time in Earth history. This marks the first establishment of a key environmental factor in modern-like ecosystems, where animals benefit from, and also contribute to, the ‘homeostasis' of marine redox conditions.
机译:动物的早期多样化(〜630 Ma),以及它们发展为运动型和宏观形态(〜575-565 Ma),都与地球表面环境的氧化作用逐步增加有关。然而,事实证明,在后来的寒武纪“爆炸”(540-520 Ma)新的,能量消耗大的人体计划和行为中,氧与析出之间建立起这样的联系已变得更加难以捉摸。在这里,我们提供了新的钼同位素数据,这些数据表明,随着动物对寒武纪的早期生物辐射和真核生物浮游生物的影响,含氧底水的面积范围逐步增大。类似氧气的氧气水平是地球历史上第一次以521 Ma为特征的海洋。这标志着在类似现代的生态系统中首次建立了关键的环境因素,动物从中受益于海洋氧化还原条件,并为海洋氧化还原条件的“稳态”做出了贡献。

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