Modern terrestrial sedimentary biostructures and their fossil analogs in mesoproterozoic subaerial deposits


Por: Beraldi-Campesi, H, Farmer, JD, Garcia-Pichel, F

Publicada: 1 ene 2014
Resumen:
Microbial communities developing on modern clastic sedimentary surfaces of arid lands are dominated by phototrophic microorganisms that form a variety of characteristic "microbially induced sedimentary structures" (MISS) through their interactions with detrital sedimentary grains, aided by secretions of extracellular polymeric substances and other organic materials. In this study, we describe modern MISS from unvegetated arid topsoils and compare them with fossil MISS found within decimeter- to meter-thick sedimentary sequences of Mesoproterozoic siliciclastic outcrops of the Dripping Spring Quartzite formation of the Apache Group in central Arizona, USA. These sequences contain numerous bedding plane exposures with desiccation surfaces including polygonal cracks, curls, and chips. Repetition of these structures within stratigraphic sequences indicates recurring episodes of subaerial exposure. Some of these MISS contain cellular microfossils that exhibit morphological adaptations for surviving desiccation. The strong similarities between modern and ancient MISS in this study provide additional criteria for recognizing morphological biosignatures of terrestrial microbial communities in ancient deposits. Our results provide compelling evidence for the presence of land-based microbial communities by the Mesoproterozoic (~1200 Ma). The association of MISS features further suggests that the primary producers that had colonized Mesoproterozoic land surfaces were likely desiccation-adapted photosynthetic microbes, similar to modern desert soil crust communities. Copyright © 2014, SEPM (Society for Sedimentary Geology).

Filiaciones:
Beraldi-Campesi, H:
 Univ Nacl Autonoma Mexico, Inst Geol, Mexico City 04510, DF, Mexico
ISSN: 08831351
Editorial
SEPM-SOC SEDIMENTARY GEOLOGY, 6128 EAST 38TH ST, STE 308, TULSA, OK 74135-5814 USA, Estados Unidos America
Tipo de documento: Article
Volumen: 29 Número: 1
Páginas: 45-54
WOS Id: 000338408300005

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