Identification of Aeromonas veronii genes required for colonization of the medicinal leech, Hirudo verbana
Molecular microbiology published in J Bacteriol (2007)
Abstract
Most digestive tracts contain a complex consortium of beneficial microorganisms, making it challenging to tease apart the molecular interactions between symbiont and host. The digestive tract of Hirudo verbana, the medicinal leech, is an ideal model system because it harbors a simple microbial community in the crop, comprising the genetically amenable Aeromonas veronii and a Rikenella-like bacterium. Signature-tagged mutagenesis (STM) was used to identify genes required for digestive tract colonization. Of 3,850 transposon (Tn) mutants screened, 46 were identified as colonization mutants. Previously we determined that the complement system of the ingested blood remained active inside the crop and prevented serum-sensitive mutants from colonizing. The identification of 26 serum-sensitive mutants indicated a successful screen. The remaining 20 serum-resistant mutants are described in this study and revealed new insights into symbiont-host interactions. An in vivo competition assay compared the colonization levels of the mutants to that of a wild-type competitor. Attenuated colonization mutants were grouped into five classes: surface modification, regulatory, nutritional, host interaction, and unknown function. One STM mutant, JG736, with a Tn insertion in lpp, encoding Braun's lipoprotein, was characterized in detail. This mutant had a >25,000-fold colonization defect relative to colonization by the wild-type strain at 72 h and, in vitro, an increased sensitivity to sodium dodecyl sulfate, suggesting the presence of an additional antimicrobial property in the crop. The classes of genes identified in this study are consistent with findings from previous STM studies involving pathogenic bacteria, suggesting parallel molecular requirements for beneficial and pathogenic host colonization.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Resumen
Signature-tagged mutagenesis screen identified 46 colonization-deficient Aeromonas veronii mutants in Hirudo verbana, including a >25,000-fold defect in the lpp Braun's lipoprotein mutant.
Por qué esto importa para la hirudoterapia
Este estudio utilizó mutagénesis con etiquetas de firma para cribar 3.850 mutantes de transposón de Aeromonas veronii e identificó 46 genes necesarios para la colonización del tracto digestivo de Hirudo verbana, incluyendo genes involucrados en modificación de superficie, regulación, nutrición e interacción con el huésped. Un hallazgo notable fue que un mutante en la lipoproteína de Braun (lpp) mostró un defecto de colonización >25.000 veces mayor y una mayor sensibilidad a SDS, lo que sugiere propiedades antimicrobianas adicionales en el buche de la sanguijuela. Esto es relevante para ASH porque esclarece los mecanismos moleculares que subyacen a la relación sanguijuela-simbionte, la cual es central para la biología de las sanguijuelas medicinales. Sin embargo, el estudio no aborda directamente la hirudoterapia, no involucra componentes del secretoma de la sanguijuela, y sus hallazgos son preclínicos/de ciencia básica sin aplicación clínica inmediata.
Citación
Identification of Aeromonas veronii genes required for colonization of the medicinal leech, Hirudo verbana.
Silver AC et al. · Journal of bacteriology, 2007
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Añadido a la biblioteca ASH: May 26, 2026 · Última actualización del sitio: 18 de junio de 2026