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Article

Genomic-Driven Identification of Conserved Biosynthetic Gene Clusters in Cladosporium limoniforme: The Case of the DHN-Melanin Pathway

by
Angela Rojas-Coll
1,†,
José-Ignacio Valencia
1,†,
Javier Tognarelli
2 and
Guillermo Fernández-Bunster
1,*
1
Laboratorio de Biotecnología (BioTecLab), Escuela de Tecnología Médica, Facultad de Medicina, Campus San Felipe, Universidad de Valparaíso, Valparaíso 2100000, Chile
2
Genómica UV, Escuela de Medicina, Facultad de Medicina, Universidad de Valparaíso, Valparaíso 2340000, Chile
*
Author to whom correspondence should be addressed.
These authors contributed equally to this work.
Metabolites 2026, 16(1), 77; https://doi.org/10.3390/metabo16010077
Submission received: 30 December 2025 / Revised: 13 January 2026 / Accepted: 15 January 2026 / Published: 16 January 2026

Abstract

Background: Endolichenic fungi represent an emerging source of bioactive secondary metabolites; however, the genomic basis of their chemical diversity remains largely poorly characterized. Specifically, the metabolic capabilities of Cladosporium limoniforme have not been explored at the genomic level. Objectives: This study aimed to characterize the biosynthetic potential of C. limoniforme by presenting its first whole-genome sequence and conducting a comparative analysis of its biosynthetic gene clusters (BGCs), with a specific focus on the evolutionary conservation of the DHN-melanin pathway. Methods: Genome mining was performed using antiSMASH and fungiSMASH tools. Comparative genomics involved heatmap-based distribution analysis across the Cladosporium genus, synteny profiling using Clinker to assess gene order conservation, and Maximum Likelihood phylogenetic analysis of the polyketide synthase (T1PKS) domain. Results: We identified 26 putative BGCs, revealing a largely untapped metabolic repertoire. Comparative analysis demonstrated a high degree of conservation for the metachelin C (siderophore) and 1,3,6,8-tetrahydroxynaphthalene (T4HN) clusters across the genus. Notably, synteny and phylogenetic analyses showed that while C. limoniforme retains a conserved, ancestral T1PKS core essential for stress survival, it exhibits a significant reduction in accessory genes compared to plant-pathogenic congeners. Conclusions: These findings support a “metabolic streamlining” hypothesis driven by the endolichenic lifestyle, where the fungus retains essential protective machinery while shedding costly accessory genes unnecessary in the buffered lichen niche. This study establishes C. limoniforme as a valuable genomic resource for future biotechnological research.
Keywords: genome mining; secondary metabolites; gene cluster; endolichenic fungi; Cladosporium limoniforme genome mining; secondary metabolites; gene cluster; endolichenic fungi; Cladosporium limoniforme
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MDPI and ACS Style

Rojas-Coll, A.; Valencia, J.-I.; Tognarelli, J.; Fernández-Bunster, G. Genomic-Driven Identification of Conserved Biosynthetic Gene Clusters in Cladosporium limoniforme: The Case of the DHN-Melanin Pathway. Metabolites 2026, 16, 77. https://doi.org/10.3390/metabo16010077

AMA Style

Rojas-Coll A, Valencia J-I, Tognarelli J, Fernández-Bunster G. Genomic-Driven Identification of Conserved Biosynthetic Gene Clusters in Cladosporium limoniforme: The Case of the DHN-Melanin Pathway. Metabolites. 2026; 16(1):77. https://doi.org/10.3390/metabo16010077

Chicago/Turabian Style

Rojas-Coll, Angela, José-Ignacio Valencia, Javier Tognarelli, and Guillermo Fernández-Bunster. 2026. "Genomic-Driven Identification of Conserved Biosynthetic Gene Clusters in Cladosporium limoniforme: The Case of the DHN-Melanin Pathway" Metabolites 16, no. 1: 77. https://doi.org/10.3390/metabo16010077

APA Style

Rojas-Coll, A., Valencia, J.-I., Tognarelli, J., & Fernández-Bunster, G. (2026). Genomic-Driven Identification of Conserved Biosynthetic Gene Clusters in Cladosporium limoniforme: The Case of the DHN-Melanin Pathway. Metabolites, 16(1), 77. https://doi.org/10.3390/metabo16010077

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