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Antiquity of the biological sulphur cycle: evidence from sulphur and carbon isotopes in 2700 million-year-old rocks of the Belingwe Belt, Zimbabwe

机译:生物硫循环的古代:来自津巴布韦Belingwe带2700百万年历史岩石中硫和碳同位素的证据

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摘要

Sulphur and carbon isotopic analyses on small samples of kerogens and sulphide minerals from biogenic and non-biogenic sediments of the 2.7x10(9) years(Ga)-old Belingwe Greenstone Belt (Zimbabwe) imply that a complex biological sulphur cycle was in operation. Sulphur isotopic compositions display a wider range of biological fractionation than hitherto reported from the Archaean. Carbon isotopic values in kerogen record fractionations characteristic of rubisco activity, methanogenesis and methylotrophy, and possibly anoxygenic photosynthesis. Carbon and sulphur isotopic fractionations have been interpreted in terms of metabolic processes in 2.7 Ga prokaryote mat communities, and indicate the operation of a diverse array of metabolic processes. The results are consistent with models of early molecular evolution derived from ribosomal RNA.
机译:对2.7x10(9)年(Ga)岁的Belingwe绿岩带(津巴布韦)的生物和非生物沉积物中的少量干酪根和硫化物矿物进行硫和碳同位素分析,表明存在一个复杂的生物硫循环。硫同位素组成显示出比迄今为止从古生界报道的更广泛的生物分离范围。干酪根中的碳同位素值记录了Rubisco活性,甲烷生成和甲基营养的分馏特征,以及可能的无氧光合作用。碳和硫同位素分馏已根据2.7 Ga原核生物垫群落的代谢过程进行了解释,并表明了各​​种代谢过程的运行。结果与从核糖体RNA衍生的早期分子进化模型一致。

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