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Controls on development and diversity of Early Archean stromatolites

机译:早期太古代叠层岩发育和多样性的控制

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摘要

The ≈3,450-million-year-old Strelley Pool Formation in Western Australia contains a reef-like assembly of laminated sedimentary accretion structures (stromatolites) that have macroscale characteristics suggestive of biological influence. However, direct microscale evidence of biology—namely, organic microbial remains or biosedimentary fabrics—has to date eluded discovery in the extensively-recrystallized rocks. Recently-identified outcrops with relatively good textural preservation record microscale evidence of primary sedimentary processes, including some that indicate probable microbial mat formation. Furthermore, we find relict fabrics and organic layers that covary with stromatolite morphology, linking morphologic diversity to changes in sedimentation, seafloor mineral precipitation, and inferred microbial mat development. Thus, the most direct and compelling signatures of life in the Strelley Pool Formation are those observed at the microscopic scale. By examining spatiotemporal changes in microscale characteristics it is possible not only to recognize the presence of probable microbial mats during stromatolite development, but also to infer aspects of the biological inputs to stromatolite morphogenesis. The persistence of an inferred biological signal through changing environmental circumstances and stromatolite types indicates that benthic microbial populations adapted to shifting environmental conditions in early oceans.
机译:西澳大利亚州拥有约34.5亿年历史的斯特雷利池组包含礁石状的层状沉积物吸积结构(叠层石)组装体,这些结构具有暗示生物学影响的宏观特征。然而,迄今为止,在广泛重结晶的岩石中还没有发现生物学的直接微观证据,即有机微生物残留物或生物沉积的织物。新近发现的露头具有相对较好的质地保存性,记录了初步沉积过程的微观证据,包括一些表明可能形成微生物垫的证据。此外,我们发现了与层间岩形态共存的遗迹织物和有机层,将形态多样性与沉积,海底矿物沉淀和微生物垫发育的变化联系起来。因此,在Strelley Pool组中生命最直接,最引人注目的特征是在微观尺度上观察到的特征。通过检查微观尺度特征的时空变化,不仅有可能认识到叠层石发育过程中可能存在的微生物垫,而且还可以推断出叠层石形态发生的生物学输入方面。通过不断变化的环境条件和叠层石类型推断出的生物信号的持久性表明,底栖微生物种群适应了早期海洋中不断变化的环境条件。

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