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January 24, 2026Environmental Microbiology Reports1 citationsOpen Access

The Factors Involved in Plant–Insect–Microbe Interactions Expanded: Genome Analysis and Description of Frigoribacterium adelgis sp. nov.

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GTGustė TamošiūnaitėVilnius UniversityJHJekaterina HavelkaVilnius UniversityRBRaimonda BaranauskienėVilnius University

Key Points

  • The study aims to identify the factors involved in interactions among Frigoribacterium strains, adelgids, and conifers.
  • Isolated Frigoribacterium from adelgids collected from Korean fir trees.
  • Conducted genomic analyses to identify enzyme encoding and gene clusters.
  • Investigated the degradation potential of insect cuticles and predicted chitinase presence.
  • Compared genomes of Frigoribacterium strains to identify unique features and gene clusters.
  • Identified secreted carbohydrate-active enzymes for degrading plant polysaccharides.
  • Predicted chitinases in genomes, but no chitinolytic activity was observed.
  • Uncovered unique orthologous gene clusters specific to the Frigoribacterium strains.
  • Identified ten genomic islands containing genes for environmental adaptation and resistance.

Abstract

ABSTRACT Actinobacteria of the genus Frigoribacterium were isolated from adelgid Adelges (Aphrastasia) pectinatae collected from a Korean fir tree. Genomic analyses revealed that these bacteria encode a range of factors that may be involved in the interactions among Frigoribacterium strains, adelgids and/or conifers. Secreted carbohydrate‐active enzymes were identified in the genomes, which allow these bacteria to degrade plant polysaccharides such as cellulose, xylan, pectin and mannan, the main hemicellulose component of softwood. The degradation potential of insect cuticles was investigated, and secreted chitinases belonging to the GH18 family were predicted to be present in the genomes. However, no phenotypic chitinolytic activity was detected. The potential interactions between these bacterial strains and either plants or insects were assessed, resulting in a few high‐scoring hits. The related Frigoribacterium genomes were compared, revealing several unique features, such as numerous orthologous gene clusters specific to these strains and five biosynthetic gene clusters. Ten genomic islands were predicted in the genomes of the adelgid‐associated strains, which contained genes responsible for adapting to environmental changes, resisting heavy metals and expanding metabolic capabilities. We propose a new species, Frigoribacterium adelgis , belonging to the genus Frigoribacterium , based on these results.

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Cite This Study

Tamošiūnaitė et al. (2026) studied this question.

synapsesocial.com/papers/6974616cbb9d90c67120b419https://doi.org/10.1111/1758-2229.70283
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