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Published on: February 23, 2019
Carbon-to-ATP ratios across the kingdoms of life
Peyman Fahimi1, Mohammad M Amirian1, Andrew J Irwin1
1Department of Mathematics & Statistics, Dalhousie University, Halifax, NS B3H4R2, Canada.
Abstract:
Estimating biomass is essential for quantifying energy flow, nutrient cycling, and ecosystem functioning across the biosphere. For nearly 60 years, the cellular carbon-to-ATP ratio (C:ATP, g/g) has been used to estimate marine microbial biomass, often assuming a value near 250. Here we compile ∼400 measurements from more than 80 studies spanning bacteria, unicellular eukaryotes, animals, plants, and tissues, and show that C:ATP varies by five orders of magnitude across species, physiological states, and environmental conditions. We then develop a mechanistic model demonstrating this variation arises from differences in ATP production rate, ATP turnover time, and the fraction of metabolically active carbon. The model predicts that median C:ATP is within a factor of two of 250 for bacteria and unicellular marine eukaryotes, while systematically differing in other groups. These results indicate that C:ATP should be treated as a context-dependent physiological quantity in biomass estimation and metabolic modeling across organisms and environments.
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