Deciphering the Genome Evolution and Cryptic Biosynthetic Potential in Rare Lentzea spp.

Background/Objectives: Rare actinomycetes are considered underexplored reservoirs of bioactive natural products, yet genus-level evolutionary processes underlying diversity and novelty in specialized metabolite biosynthetic potential remain poorly understood. Methods: We analyzed 652 high-quality, non-redundant Pseudonocardiaceae genomes, including 59 Lentzea genomes, using phylogenomics, pangenome analysis, antiSMASH, BiG-SCAPE/MIBiG comparisons, orthogroup-informed BGC conservation analysis, and five genomic context criteria for MGE association. Results: Phylogenomics confirmed the monophyly of Lentzea spp. and resolved six intrageneric clades. Pangenome analysis revealed an open architecture with core–accessory functional differentiation. Comparative genome mining revealed a rich BGC repertoire in Lentzea spp., with no significant correlation between BGC abundance and genome size. Family-scale BiG-SCAPE clustering identified numerous Lentzea-specific, putatively novel GCFs in RiPP, terpene, and NRPS classes. Six lineage-associated BGC groups retained conserved biosynthetic backbones alongside local gene content and domain architecture variation, whereas MGE-associated BGCs were enriched among lower-prevalence GCFs. Sensitivity analyses supported conservation and mobility association patterns. Conclusions: Findings support a dual-pattern model of BGC conservation and mobility-associated diversification in Lentzea, providing complementary criteria for prioritizing biosynthetic candidates and a practical framework for genome-guided natural product discovery in rare actinomycetes.

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Publication Details

Journal
Antibiotics
Published
2026-09-30
DOI
https://doi.org/10.3390/antibiotics15100967
Primary Topic
Microbial Natural Products and Biosynthesis
Type
article
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article

Deciphering the Genome Evolution and Cryptic Biosynthetic Potential in Rare Lentzea spp.

Linquan Bai, Qianjin Kang, Wenjing Niu, Wei Sun et al.
Antibiotics
Microbial Natural Products and Biosynthesis
article

Deciphering the Genome Evolution and Cryptic Biosynthetic Potential in Rare Lentzea spp.

Linquan Bai, Qianjin Kang, Wenjing Niu, Wei Sun, Lin Zhou, Xing Fan, L. S. Hua, Xiaoxia Luo, Chuanxing Wan, Jie Xu, Xingzhi Jiao, Wei Huang
article en

Abstract

Background/Objectives: Rare actinomycetes are considered underexplored reservoirs of bioactive natural products, yet genus-level evolutionary processes underlying diversity and novelty in specialized metabolite biosynthetic potential remain poorly understood. Methods: We analyzed 652 high-quality, non-redundant Pseudonocardiaceae genomes, including 59 Lentzea genomes, using phylogenomics, pangenome analysis, antiSMASH, BiG-SCAPE/MIBiG comparisons, orthogroup-informed BGC conservation analysis, and five genomic context criteria for MGE association. Results: Phylogenomics confirmed the monophyly of Lentzea spp. and resolved six intrageneric clades. Pangenome analysis revealed an open architecture with core–accessory functional differentiation. Comparative genome mining revealed a rich BGC repertoire in Lentzea spp., with no significant correlation between BGC abundance and genome size. Family-scale BiG-SCAPE clustering identified numerous Lentzea-specific, putatively novel GCFs in RiPP, terpene, and NRPS classes. Six lineage-associated BGC groups retained conserved biosynthetic backbones alongside local gene content and domain architecture variation, whereas MGE-associated BGCs were enriched among lower-prevalence GCFs. Sensitivity analyses supported conservation and mobility association patterns. Conclusions: Findings support a dual-pattern model of BGC conservation and mobility-associated diversification in Lentzea, providing complementary criteria for prioritizing biosynthetic candidates and a practical framework for genome-guided natural product discovery in rare actinomycetes.

AntibioticsVol. 15(10)
Shanghai Jiao Tong University (CN), Xinjiang Production and Construction Corps (CN), Tarim University (CN), State Key Laboratory of Microbial Metabolism
Life in Land
Openalex Percentile: Top 13%
Microbial Natural Products and Biosynthesis
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