Lipid biomarkers: molecular tools for illuminating the history of microbial life.

Nat Rev Microbiol

Department of Earth & Planetary Sciences, University of California Davis, Davis, CA, USA.

Published: March 2022

AI Article Synopsis

  • Fossilized lipids in sedimentary rocks give scientists important clues about Earth's ancient life and how things like air and ocean changed over time.
  • These biomolecules help us understand big events like extinctions and climate change by looking at tiny living things, but studying them has been tricky because we can't grow most of these microorganisms in labs.
  • New technology in genetics and data analysis is helping scientists learn more about these ancient lipids and how they were made, leading to better understanding of Earth's history.

Article Abstract

Fossilized lipids preserved in sedimentary rocks offer singular insights into the Earth's palaeobiology. These 'biomarkers' encode information pertaining to the oxygenation of the atmosphere and oceans, transitions in ocean plankton, the greening of continents, mass extinctions and climate change. Historically, biomarker interpretations relied on inventories of lipids present in extant microorganisms and counterparts in natural environments. However, progress has been impeded because only a small fraction of the Earth's microorganisms can be cultured, many environmentally significant microorganisms from the past no longer exist and there are gaping holes in knowledge concerning lipid biosynthesis. The revolution in genomics and bioinformatics has provided new tools to expand our understanding of lipid biomarkers, their biosynthetic pathways and distributions in nature. In this Review, we explore how preserved organic molecules provide a unique perspective on the history of the Earth's microbial life. We discuss how advances in molecular biology have helped elucidate biomarker origins and afforded more robust interpretations of fossil lipids and how the rock record provides vital calibration points for molecular clocks. Such studies are open to further exploitation with the expansion of sequenced microbial genomes in accessible databases.

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Source
http://dx.doi.org/10.1038/s41579-021-00636-2DOI Listing

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