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海洋营养物质丰度对早期真核生物生态系统的影响。

The impact of marine nutrient abundance on early eukaryotic ecosystems.

机构信息

School of Earth and Atmospheric Sciences, Georgia Institute of Technology, Atlanta, Georgia.

NASA Astrobiology Institute, Alternative Earths Team, Riverside, California.

出版信息

Geobiology. 2020 Mar;18(2):139-151. doi: 10.1111/gbi.12384. Epub 2020 Feb 17.

Abstract

The rise of eukaryotes to ecological prominence represents one of the most dramatic shifts in the history of Earth's biosphere. However, there is an enigmatic temporal lag between the emergence of eukaryotic organisms in the fossil record and their much later ecological expansion. In parallel, there is evidence for a secular increase in the availability of the key macronutrient phosphorus (P) in Earth's oceans. Here, we use an Earth system model equipped with a size-structured marine ecosystem to explore relationships between plankton size, trophic complexity, and the availability of marine nutrients. We find a strong dependence of planktonic ecosystem structure on ocean nutrient abundance, with a larger ocean nutrient inventory leading to greater overall biomass, broader size spectra, and increasing abundance of large Zooplankton. If existing estimates of Proterozoic marine nutrient levels are correct, our results suggest that increases in the ecological impact of eukaryotic algae and trophic complexity in eukaryotic ecosystems were directly linked to restructuring of the global P cycle associated with the protracted rise of surface oxygen levels. Our results thus suggest an indirect but potentially important mechanism by which ocean oxygenation may have acted to shape marine ecological function during late Proterozoic time.

摘要

真核生物在生态上的崛起代表了地球生物圈历史上最显著的变化之一。然而,在化石记录中真核生物的出现与它们后来的生态扩张之间存在着神秘的时间滞后。与此同时,有证据表明地球海洋中关键的大量营养素磷(P)的可用性在不断增加。在这里,我们使用配备了大小结构海洋生态系统的地球系统模型来探索浮游生物大小、营养复杂性和海洋养分可用性之间的关系。我们发现浮游生物生态系统结构强烈依赖于海洋养分的丰度,海洋养分存量越大,整体生物量越大,大小谱越宽,大型浮游动物的丰度也越高。如果对元古代海洋养分水平的现有估计是正确的,那么我们的结果表明,真核藻类的生态影响的增加和真核生态系统中的营养复杂性与与地表氧气水平持续上升相关的全球磷循环的重构直接相关。因此,我们的结果表明,海洋富氧作用可能通过一种间接但潜在重要的机制,在晚元古代时期影响海洋生态功能。

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