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The Boring Billion a slingshot for Complex Life on Earth

机译:无聊的十亿地球上复杂生命的弹弓

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摘要

The period 1800 to 800 Ma (“Boring Billion”) is believed to mark a delay in the evolution of complex life, primarily due to low levels of oxygen in the atmosphere. Earlier studies highlight the remarkably flat C, Cr isotopes and low trace element trends during the so-called stasis, caused by prolonged nutrient, climatic, atmospheric and tectonic stability. In contrast, we suggest a first-order variability of bio-essential trace element availability in the oceans by combining systematic sampling of the Proterozoic rock record with sensitive geochemical analyses of marine pyrite by LA-ICP-MS technique. We also recall that several critical biological evolutionary events, such as the appearance of eukaryotes, origin of multicellularity & sexual reproduction, and the first major diversification of eukaryotes (crown group) occurred during this period. Therefore, it appears possible that the period of low nutrient trace elements (1800–1400 Ma) caused evolutionary pressures which became an essential trigger for promoting biological innovations in the eukaryotic domain. Later periods of stress-free conditions, with relatively high nutrient trace element concentration, facilitated diversification. We propose that the “Boring Billion” was a period of sequential stepwise evolution and diversification of complex eukaryotes, triggering evolutionary pathways that made possible the later rise of micro-metazoans and their macroscopic counterparts.
机译:1800至800 Ma(“无聊的十亿”)时期被认为标志着复杂生命发展的延迟,这主要是由于大气中的氧气含量较低。早期的研究强调了由于长期的养分,气候,大气和构造稳定性而导致的所谓停滞期间的C,Cr同位素显着平坦,并且微量元素含量低的趋势。相比之下,我们建议通过将元古代岩石记录的系统采样与通过LA-ICP-MS技术对海洋黄铁矿进行敏感的地球化学分析相结合,来确定海洋中生物必需微量元素的可用性的一阶可变性。我们还记得在此期间发生了一些关键的生物学进化事件,例如真核生物的出现,多细胞性和有性生殖的起源以及真核生物(冠群)的第一个主要多样化。因此,低养分微量元素(1800-1400 Ma)的时期可能引起进化压力,这成为促进真核生物创新的重要触发因素。后期无压力的条件下,营养元素的含量相对较高,促进了多样化。我们认为,“无聊的十亿”是复杂的真核生物连续循序渐进和多样化的时期,触发了进化途径,从而使后来的微metazoans及其宏观对应物的兴起成为可能。

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