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May 13, 2026Applied and Environmental Microbiology1 citationsOpen Access

Physiology, functional genomics, and proteomics of Verruconatronum alginivorum gen. nov. , sp. nov. , the first isolated haloalkaliphile within Verrucomicrobiota, representing a new family, Verruconatronumaceae fam. nov.

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DSDimitry Y. SorokinVKVarada KhotAMAlexander Y. Merkel

Key Points

  • Investigate the enzymatic mechanisms of alginate degradation by a newly identified haloalkaliphile species.
  • Characterization of enzymatic activity for alginate breakdown
  • Analysis of environmental abundance in alkaline conditions
  • Functional genomic and proteomic approaches to identify key enzymes
  • Identified high-pH tolerant enzymes for effective alginate degradation
  • Demonstrated potential industrial applications in cleaning products and waste recycling
  • Established Verruconatronum as a significant taxon in alkaline environments, with no known alginate producers present

Abstract

specializing in the degradation of alginate and related polysaccharides. We present the key enzymatic machinery for alginate breakdown. These enzymes are high-pH tolerant and have potential for industry applications, for example, in washing powders and biomass waste recycling. Furthermore, the new family is one of the most abundant taxa in alkaline environments, and these environments are not known to harbor signature alginate producing biota, such as brown algae. This way, our study opens a new window on polysaccharide turnover in alkaline environments.

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Cite This Study

Sorokin et al. (2026) studied this question.

synapsesocial.com/papers/6a04153d79e20c90b4444fd8https://doi.org/10.1128/aem.00475-26
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