元古代
生物圈
真核生物
生物多样性
生态学
共同进化
物种丰富度
多样性(政治)
生物
古生物学
进化生物学
地球科学
地质学
生物化学
构造学
基因
人类学
基因组
社会学
作者
Qing Tang,Wentao Zheng,Shuhan Zhang,Junxuan Fan,Leigh Anne Riedman,Xudong Hou,A.D. Muscente,Natalia Bykova,Peter M. Sadler,Xiangdong Wang,Feifei Zhang,Xunlai Yuan,Chuanming Zhou,Bin Wan,Ke Pang,Qing Ouyang,N. Ryan McKenzie,Guochun Zhao,Shu‐zhong Shen,Shuhai Xiao
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2024-12-19
卷期号:386 (6728): eadm9137-eadm9137
被引量:24
标识
DOI:10.1126/science.adm9137
摘要
The global diversity of Proterozoic eukaryote fossils is poorly quantified despite its fundamental importance to the understanding of macroevolutionary patterns and dynamics on the early Earth. Here we report a new construction of fossil eukaryote diversity from the Paleoproterozoic to early Cambrian based on a comprehensive data compilation and quantitative analyses. The resulting taxonomic richness curve verifies Cryogenian glaciations as a major divide that separates the “Boring Billion” and Ediacaran periods, with the former characterized by a prolonged stasis, and the latter by greater diversity, more-rapid turnover, and multiple radiations and extinctions. These contrasting evolutionary patterns and dynamics provide a framework to test competing hypotheses on biosphere and geosphere coevolution in the Proterozoic Eon.
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