Stratified bacterial community in the bladder of the medicinal leech, Hirudo verbana
Symbiosis article published in Environmental Microbiology (2009)
Abstract
Most animals harbour symbiotic microorganisms inside their body, where intimate interactions occur between the partners. The medicinal leech, Hirudo verbana, possesses 17 pairs of excretory bladders that harbour a large number of intracellular and extracellular symbiotic bacteria. In this study, we characterized the bladder symbionts using molecular phylogenetic analyses, transmission electron microscopy (TEM) and fluorescence in situ hybridization (FISH). Restriction fragment length polymorphism (RFLP) and sequence analyses of 16S rRNA gene clone libraries suggested that six bacterial species co-colonize the leech bladders. Phylogenetic analyses revealed that these species belong to the alpha-Proteobacteria (Ochrobactrum symbiont), beta-Proteobacteria (Beta-1 and Beta-2 symbionts), delta-Proteobacteria (Bdellovibrio symbiont) and Bacteroidetes (Niabella and Sphingobacterium symbionts). Species-specific PCR detection and FISH confirmed the localization of the symbiotic bacteria in the bladders. The Ochrobactrum, Beta-1, Bdellovibrio and Sphingobacterium symbionts were consistently detected in 13 leeches from two populations, while infection rate of the other symbionts ranged between 20% and 100% in the two leech populations. Transmission electron microscopy observations of the bladders revealed epithelial cells harbouring a number of intracellular bacilli and an additional type of extracellular, rod-shaped bacteria in the luminal region. Fluorescence in situ hybridization with group-specific oligonucleotide probes revealed the spatial organization of the bacterial species in the bladder: the Ochrobactrum symbiont was located intracellularly inside epithelial cells; the Bacteroidetes were localized close to the epithelium in the lumen of the bladder; and the Bacteroidetes layer was covered with dense beta-proteobacterial cells. These results clearly demonstrate that a simple but organized microbial community exists in the bladder of the medicinal leech.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Summary
16S rRNA, TEM, and FISH analyses of Hirudo verbana excretory bladders reveal six bacterial species co-colonizing in spatial layers including alpha-, beta-, delta-Proteobacteria and Bacteroidetes symbionts.
Why This Matters for Hirudotherapy
This study characterized the symbiotic bacterial community in the 17 pairs of excretory bladders of Hirudo verbana using 16S rRNA gene clone libraries, transmission electron microscopy, and fluorescence in situ hybridization, identifying six co-colonizing bacterial species across alpha-, beta-, and delta-Proteobacteria and Bacteroidetes. The authors demonstrated a stratified spatial organization: Ochrobactrum intracellularly in epithelial cells, Bacteroidetes near the epithelium in the lumen, and beta-proteobacteria forming an outer layer, with some symbionts consistently detected and others variably present across two leech populations. This is relevant to ASH as it deepens understanding of the microbial ecology of the medicinal leech, which may inform considerations of symbiont-pathogen dynamics relevant to therapy. The caveat is that this is a descriptive microbiology study with no direct clinical or therapeutic data.
Citation
Stratified bacterial community in the bladder of the medicinal leech, Hirudo verbana.
Kikuchi Y, Bomar L, Graf J · Environmental microbiology, 2009
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