Life Resists Chemistry Not Conditions

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ID: 322335
2026
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Abstract
Abstract Extremophiles are used to study both the limits of life and its potential elsewhere. Categories are commonly employed to describe extreme conditions, however, changing the focus to the underlying chemical alterations of cellular biomolecules permits a clearer delineation of the limits of life. This also provides a common basis for interdisciplinary studies of life in extreme environments intersecting biology, chemistry, geology, environmental and planetary sciences. Using this perspective, four general principles can be drawn from the past decades of research into extremophiles: 1-Microbial survival after exposure to environmental stressors is challenged by damage incurred at the molecular level, 2-Damage-susceptibility of cellular (macro)molecules vary by structure, chemical composition, and surrounding molecules, 3-Local physicochemical states alter the chemistry underpinning microbial survival, and 4-Different stressors that produce the same macromolecular chemical and/or structural damages can be resisted by the same cellular mechanisms. These general principles provide a common basis for interdisciplinary studies of the limits of life. This chemistry-focused approach has implications for defining the limits of life, paleoenvironment reconstruction, site selection for sampling, and choice of appropriate model systems for development of detection methods for microbial cells and extraction of molecules. This approach also contributes to the field of astrobiology, constraining the concept of habitability in the solar system and exoplanets. Descriptive terms are useful in science, but for extremophile microbiology and astrobiology, it is useful to recognize that life resists chemistry, not conditions.
Reference Key
openalex_W7170181924 Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors Adrienne Kish
Journal FEMS Microbes
Year 2026
DOI
10.1093/femsmc/xtag041
URL
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