马来西亚令吉
地质学
变质作用
自然发生
磷灰石
地质记录
地球化学
土(古典元素)
天体生物学
古生物学
碳同位素
带状铁形成
球粒陨石
地球科学
前寒武纪
化学
总有机碳
陨石
生物
基因组
生物化学
物理
数学物理
环境化学
基因
作者
S. J. Mojzsis,Gustaf Arrhenius,K. D. McKeegan,T. Mark Harrison,Allen P. Nutman,C. R. L. Friend
出处
期刊:Nature
[Nature Portfolio]
日期:1996-11-07
卷期号:384 (6604): 55-59
被引量:1317
摘要
IT is unknown when life first appeared on Earth. The earliest known microfossils (˜3,500 Myr before present) are structurally complex, and if it is assumed that the associated organisms required a long time to develop this degree of complexity, then the existence of life much earlier than this can be argued1,2. But the known examples of crustal rocks older than ˜3,500 Myr have experienced intense metamorphism, which would have obliterated any fragile microfossils contained therein. It is therefore necessary to search for geochemical evidence of past biotic activity that has been preserved within minerals that are resistant to metamorphism. Here we report ion-microprobe measure-ments of the carbon-isotope composition of carbonaceous inclusions within grains of apatite (basic calcium phosphate) from the oldest known sediment sequences—a ˜3,800-Myr-old banded iron formation from the Isua supracrustal belt, West Greenland35, and a similar formation from the nearby Akilia island that is possibly older than 3,850 Myr (ref. 3). The carbon in the carbonaceous inclusions is isotopically light, indicative of biological activity; no known abiotic process can explain the data. Unless some unknown abiotic process exists which is able both to create such isotopically light carbon and then selectively incorporate it into apatite grains, our results provide evidence for the emergence of life on Earth by at least 3,800 Myr before present.
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