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The case for a Neoproterozoic Oxygenation Event: Geochemical evidence and biological consequences

机译:新元古代氧化事件的案例:地球化学证据和生物学后果

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The Neoproterozoic era marked a turning point in the development of the modern earth system. The irreversible environmental changes of that time were rooted in tectonic upheavals that drove chain reactions between the oceans, atmosphere, climate, and life. Key biological innovations took place amid carbon cycle instability that pushed climate to unprecedented extremes and resulted in the ventilation of the deep ocean. Despite a dearth of supporting evidence, it is commonly presumed that a rise in oxygen triggered the evolution of animals. Although geochemical evidence for oxygenation is now convincing, our understanding of the Neoproterozoic earth system and of early animal evolution has changed apace, revealing an altogether more complicated picture in which the spread of anoxia played an important role. The challenge to future researchers lies in unraveling the complex entanglement of earth system changes during this pivotal episode in Earth?s history.
机译:新元古代时代标志着现代地球系统发展的转折点。当时不可逆转的环境变化源于构造动荡,它推动了海洋,大气,气候和生命之间的连锁反应。关键的生物创新发生在碳循环的不稳定之中,这种不稳定将气候推向了前所未有的极端,并导致了深海的通风。尽管缺乏支持证据,但通常认为氧气的增加会触发动物的进化。尽管目前关于氧合作用的地球化学证据令人信服,但我们对新元古代地球系统和早期动物进化的理解已迅速改变,揭示了一个更加复杂的情况,其中缺氧的扩散起着重要作用。未来研究人员面临的挑战在于揭开地球历史上这一关键时刻中地球系统变化的复杂纠缠。

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