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A Machine Learning Framework for Serogroup Classification of pathogenic species of Leptospira Based on rfb Locus Profiles

de Carvalo Ferreira Filho, E.; Melo Arruda, P.; Cabral Afonso Ferreira, L.; Venturim Cosate, M. R.; Sakamoto, T.

2026-03-05 microbiology
10.64898/2026.03.04.708288 bioRxiv
Show abstract

Leptospira is a highly diverse genus traditionally classified by serological assays into more than 30 serogroups and over 300 serovars. However, this classification system is often complex and inconsistent, as cross-reactions between antigens can lead to ambiguous results. Moreover, serological tests such as MAT and CAAT are labor-intensive, require live cultures, and are difficult to standardize across laboratories. To overcome these limitations, we compiled genomic data from 721 pathogenic Leptospira samples obtained from NCBI RefSeq and BIGSdb (Institut Pasteur) to develop a machine learning framework capable of predicting serological classification directly from genomic information. Our approach focuses on the rfb locus, a genomic region associated with lipopolysaccharide biosynthesis and antigenic diversity, and was designed to operate in two stages: the first stage assigns samples to one of four major serological classes, while the second stage classifies them into their respective serogroups. Models from both classification stages achieved high predictive performance, with perfect score in the first and a mean F1-score of 0.931 in the second stage. Feature importance analysis revealed non-random clustering of highly informative genes within the rfb locus and demonstrated that serogroup discrimination is driven by combinatorial patterns of gene presence and absence. Based on the strong genetic coherence observed at the rfb locus and shared antigenic features, we propose the term "seroclass" to designate these higher-order groupings. This approach provides a scalable and reproducible alternative to traditional serological testing and offers valuable applications for epidemiological surveillance, outbreak investigation, and vaccine development within the Leptospira genus. HighlightsO_LIGenomic data enable accurate inference of Leptospira serological classification. C_LIO_LIThe approach predicts serogroups directly from rfb locus gene composition. C_LIO_LIThe model provides a scalable alternative to labor-intensive serological assays. C_LIO_LIWe introduce the term "seroclass", a higher level of serological organization. C_LIO_LIThe proposed framework supports epidemiological surveillance and vaccine design. C_LI

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