Genomic signatures of host-range divergence in the generalist Beauveria bassiana and the specialist Beauveria brongniartii

Entomopathogenic fungi of the genus Beauveria are widely used biological control agents that infect diverse insect hosts and can also associate with plants as rhizosphere colonizers and endophytes. Within this genus, Beauveria bassiana is a cosmopolitan generalist, whereas Beauveria brongniartii exhibits a narrower host range, primarily targeting soil-dwelling coleopteran larvae with limited evidence of plant colonization. To explore genomic differentiation associated with this ecological divergence, the commercially exploited B. brongniartii strain BIPESCO2 and B. bassiana ATHUM 4946 were sequenced using Oxford Nanopore technology, followed by comparative genomic analyses across multiple strains. Orthology identified species-specific gene families, although overall genome architecture and core gene content were highly conserved. The CAZyme repertoires were nearly identical, indicating retention of a versatile enzymatic toolkit supporting plant association, saprotrophy, and insect pathogenicity. In contrast, biosynthetic gene clusters displayed substantial variation, including structural remodeling of Beauveria-specific virulence-associated clusters and expansion of type I polyketide synthase clusters in B. brongniartii. Effector prediction revealed a conserved core of largely uncharacterized proteins alongside species-specific orthogroups enriched in adhesion-, immunity-, and cuticle-interaction domains. Together, these findings indicate that host-range divergence in Beauveria is associated with compartmentalized genomic differentiation, particularly in secondary metabolism and a limited subset of lineage-specific virulence factors, rather than in the conserved core infection machinery.

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Publication Details

Journal
Molecular Genetics and Genomics
Published
2026-09-11
DOI
https://doi.org/10.1007/s00438-026-02506-z
Primary Topic
Entomopathogenic Microorganisms in Pest Control
Type
article
Field-Weighted Citation Impact
0.00

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article

Genomic signatures of host-range divergence in the generalist Beauveria bassiana and the specialist Beauveria brongniartii

Vassili N. Kouvelis, Alexandra M. Kortsinoglou, Hermann Strasser, J. Enkerli et al.
Molecular Genetics and Genomics
Entomopathogenic Microorganisms in Pest Control
article

Genomic signatures of host-range divergence in the generalist Beauveria bassiana and the specialist Beauveria brongniartii

Vassili N. Kouvelis, Alexandra M. Kortsinoglou, Hermann Strasser, J. Enkerli, Hannah Popp-Embleton
article en

Abstract

Entomopathogenic fungi of the genus Beauveria are widely used biological control agents that infect diverse insect hosts and can also associate with plants as rhizosphere colonizers and endophytes. Within this genus, Beauveria bassiana is a cosmopolitan generalist, whereas Beauveria brongniartii exhibits a narrower host range, primarily targeting soil-dwelling coleopteran larvae with limited evidence of plant colonization. To explore genomic differentiation associated with this ecological divergence, the commercially exploited B. brongniartii strain BIPESCO2 and B. bassiana ATHUM 4946 were sequenced using Oxford Nanopore technology, followed by comparative genomic analyses across multiple strains. Orthology identified species-specific gene families, although overall genome architecture and core gene content were highly conserved. The CAZyme repertoires were nearly identical, indicating retention of a versatile enzymatic toolkit supporting plant association, saprotrophy, and insect pathogenicity. In contrast, biosynthetic gene clusters displayed substantial variation, including structural remodeling of Beauveria-specific virulence-associated clusters and expansion of type I polyketide synthase clusters in B. brongniartii. Effector prediction revealed a conserved core of largely uncharacterized proteins alongside species-specific orthogroups enriched in adhesion-, immunity-, and cuticle-interaction domains. Together, these findings indicate that host-range divergence in Beauveria is associated with compartmentalized genomic differentiation, particularly in secondary metabolism and a limited subset of lineage-specific virulence factors, rather than in the conserved core infection machinery.

Molecular Genetics and GenomicsVol. 301(1)
National and Kapodistrian University of Athens (GR), Agroscope (CH)
Hellenic Academic Libraries Link, National and Kapodistrian University of Athens
Life in Land
Openalex Percentile: Top 12%
Entomopathogenic Microorganisms in Pest Control
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