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Metal-induced malformations in early Palaeozoic plankton are harbingers of mass extinction

机译:古生代普拉克顿早期的金属诱导的畸形是大规模灭绝的先兆

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Glacial episodes have been linked to Ordovician-Silurian extinction events, but cooling itself may not be solely responsible for these extinctions. Teratological (malformed) assemblages of fossil plankton that correlate precisely with the extinction events can help identify alternate drivers of extinction. Here we show that metal poisoning may have caused these aberrant morphologies during a late Silurian (Pridoli) event. Malformations coincide with a dramatic increase of metals (Fe, Mo, Pb, Mn and As) in the fossils and their host rocks. Metallic toxins are known to cause a teratological response in modern organisms, which is now routinely used as a proxy to assess oceanic metal contamination. Similarly, our study identifies metal-induced teratology as a deep-time, palaeobiological monitor of palaeo-ocean chemistry. The redox-sensitive character of enriched metals supports emerging 'oceanic anoxic event' models. Our data suggest that spreading anoxia and redox cycling of harmful metals was a contributing kill mechanism during these devastating Ordovician-Silurian palaeobiological events.
机译:冰川剧集已与ordovician-silurian灭绝事件有关,但冷却本身可能不对这些灭绝同时负责。遗传学(畸形)的化石浮游生物的组装,精确地与消灭事件相关联,可以帮助识别灭绝的交替驱动因素。在这里,我们表明金属中毒可能在晚期硅兰(Pridoli)事件中导致这些异常形态。畸形始于化石和宿主岩石中的金属(Fe,Mo,Pb,Mn和As)的剧烈增加。已知金属毒素在现代生物中引起畸形反应,现在通常用作评估海洋金属污染的代理。同样,我们的研究将金属诱导的Teratology鉴定为古海洋化学的深度古生物监测系统。丰富金属的氧化还原性敏感特征支持新兴的“海洋缺氧事件”模型。我们的数据表明,在这些毁灭性奥莫官员 - 硅藻土学事件中,有害金属的蔓延缺氧和氧化还原循环是一个有助于杀戮机制。

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