Marine vampires: Persistent, internal associations between bacteria and blood-feeding marine annelids and crustaceans
Basic science published in Front Microbiol (2023)
Abstract
Persistent bacterial presence is believed to play an important role in host adaptation to specific niches that would otherwise be unavailable, including the exclusive consumption of blood by invertebrate parasites. Nearly all blood-feeding animals examined so far host internal bacterial symbionts that aid in some essential aspect of their nutrition. Obligate blood-feeding (OBF) invertebrates exist in the oceans, yet symbiotic associations between them and beneficial bacteria have not yet been explored. This study describes the microbiome of 6 phylogenetically-diverse species of marine obligate blood-feeders, including leeches (both fish and elasmobranch specialists; e.g., Pterobdella, Ostreobdella, and Branchellion), isopods (e.g., Elthusa and Nerocila), and a copepod (e.g., Lernanthropus). Amplicon sequencing analysis revealed the blood-feeding invertebrate microbiomes to be low in diversity, compared to host fish skin surfaces, seawater, and non-blood-feeding relatives, and dominated by only a few bacterial genera, including Vibrio (100% prevalence and comprising 39%-81% of the average total recovered 16S rRNA gene sequences per OBF taxa). Vibrio cells were localized to the digestive lumen in and among the blood meal for all taxa examined via fluorescence microscopy. For Elthusa and Branchellion, Vibrio cells also appeared intracellularly within possible hemocytes, suggesting an interaction with the immune system. Additionally, Vibrio cultivated from four of the obligate blood-feeding marine taxa matched the dominant amplicons recovered, and all but one was able to effectively lyse vertebrate blood cells. Bacteria from 2 additional phyla and 3 families were also regularly recovered, albeit in much lower abundances, including members of the Oceanospirillaceae, Flavobacteriacea, Porticoccaceae, and unidentified members of the gamma-and betaproteobacteria, depending on the invertebrate host. For the leech Pterobdella, the Oceanospirillaceae were also detected in the esophageal diverticula. For two crustacean taxa, Elthusa and Lernanthropus, the microbial communities associated with brooded eggs were very similar to the adults, indicating possible direct transmission. Virtually nothing is known about the influence of internal bacteria on the success of marine blood-feeders, but this evidence suggests their regular presence in marine parasites from several prominent groups.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Zusammenfassung
16S rRNA microbiome analysis of 6 obligate blood-feeding marine invertebrates including marine leeches reveals Vibrio dominance (39-81%) and hemocyte intracellular presence indicating immune-system interaction.
Warum dies für die Hirudotherapie relevant ist
Diese Studie verwendete Amplicon-Sequenzierung und Fluoreszenzmikroskopie, um die Mikrobiome von sechs marinen obligat blutsaugenden wirbellosen Arten zu charakterisieren – einschließlich Blutegeln (Pterobdella, Ostreobdella, Branchellion), Isopoden und eines Copepoden – und fand artenarme Gemeinschaften, die von Vibrio dominiert wurden (100 % Prävalenz, 39 %–81 % der gewonnenen 16S-Sequenzen pro Taxon), lokalisiert im Verdauungslumen. Für ASH und Hirudotherapie bietet diese Arbeit vergleichenden Kontext zum Verständnis der Interaktion blutsaugender Blutegel mit bakteriellen Symbionten und wirft Fragen zu möglichen Symbiontenrollen bei der Verdauung und ihrem umfassenderen Beitrag zur Blutegelbiologie auf, die für das Sekretom relevant sind. Bemerkenswerterweise konnten aus vier der blutsaugenden Taxa kultivierte Vibrio Vertebraten-Blutzellen lysieren, was auf eine mögliche Beteiligung an der Verarbeitung der Blutmahlzeit hindeutet. Allerdings untersucht diese Studie marine Blutegel und nicht das klinisch verwendete Hirudo medicinalis, und die deskriptive Erhebung stellt keine funktionellen Rollen oder therapeutische Implikationen fest.
Zitation
Marine vampires: Persistent, internal associations between bacteria and blood-feeding marine annelids and crustaceans.
Goffredi SK et al. · Frontiers in microbiology, 2023
Verwandter klinischer Kontext
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