Diamond Charles W, Lyons Timothy W
Department of Earth Sciences and the NASA Astrobiology Institute Alternative Earths Team, University of California, Riverside, CA 92521, U.S.A.
Emerg Top Life Sci. 2018 Sep 28;2(2):235-245. doi: 10.1042/ETLS20170146.
It is often assumed that rising environmental oxygen concentrations played a significant role in the timing of the first appearance of animals and the trajectory of their early proliferation and diversification. The inherent large size and complexity of animals come with large energy requirements - levels of energy that can best, if not only, be acquired through aerobic respiration. There is also abundant geochemical evidence for an increase in ocean-atmosphere O2 concentrations in temporal proximity with the emergence of the group. To adequately test this hypothesis, however, a thorough understanding of the history of environmental oxygenation in the time between the first appearance of eukaryotes and the eventual appearance of animals is necessary. In this review, we summarize the evidence for the prevailing long-term conditions of the Proterozoic Eon prior to the emergence of Metazoa and go on to highlight multiple independent geochemical proxy records that suggest at least two transient oxygenation events - at ca. 1.4 and ca. 1.1 billion years ago (Ga) - during this time. These emerging datasets open the door to an important possibility: while prevailing conditions during much of this time would likely have presented challenges for early animals, there were intervals when oxygenated conditions were more widespread and could have favored yet undetermined advances in eukaryotic innovation, including critical early steps toward animal evolution.
人们常常认为,环境中氧气浓度的上升在动物首次出现的时间以及它们早期增殖和多样化的轨迹中起到了重要作用。动物固有的大体型和复杂性伴随着巨大的能量需求,而这种能量水平最好(如果不是唯一的话)通过有氧呼吸来获取。此外,有大量地球化学证据表明,在该生物群体出现的同时,海洋 - 大气中的氧气浓度有所增加。然而,为了充分验证这一假设,有必要深入了解真核生物首次出现到动物最终出现这段时间内环境氧化的历史。在这篇综述中,我们总结了后生动物出现之前元古代长期普遍存在的条件的证据,并继续强调多个独立的地球化学替代记录,这些记录表明在这段时间内至少发生了两次短暂的氧化事件,分别约在14亿年前和11亿年前。这些新出现的数据集开启了一种重要可能性:虽然在这段时间的大部分时间里,普遍存在的条件可能给早期动物带来了挑战,但也存在一些时期,氧化条件更为广泛,可能有利于真核生物创新中尚未确定的进展,包括动物进化的关键早期步骤。