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November 17, 2025MicrobiologyOpen Access

The Serine Variant of the Redox Glycine CO2 Assimilation Pathway in an Anaerobic Thermophile Parvivirga hydrogeniphila

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Authors

NCN. A. ChernyhIRI. I. RusanovVPV. A. Pikhtereva

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Overview

Genomic analysis reveals unique carbon assimilation mechanisms in Parvivirga hydrogeniphila, suggesting distinct metabolic pathways among anaerobic microorganisms.

Key Points

  • To explore the carbon assimilation mechanisms in Parvivirga hydrogeniphila and characterize the serine variant of the reductive glycine pathway.
  • Conducted genomic analysis to identify relevant genes.
  • Performed proteomic studies to examine enzyme expression levels.
  • Measured the rate of autotrophic carbon assimilation.
  • Identified the serine branch of the reductive glycine pathway.
  • Found increased expression of formate dehydrogenase and serine hydroxymethyl transferase.
  • Measured a carbon assimilation rate of 0.357 fmol C/(cell day).

Cite This Study

Chernyh et al. (2025) studied this question.

synapsesocial.com/papers/692509eec0ce034ddc352ac8https://doi.org/10.1134/s0026261725602623
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