Американское общество гирудотерапии

Identifying Two Ectoparasite Species of Mackerel Icefish based on Mitochondrial Gene and Morphology

Research article published in Microsc Microanal (2025)

Последнее обновление: June 18, 2026Рецензент: ASH Editorial Board
Research article — evidence reviewArticle reference
Evidence: Preclinical (animal)Клинические исследованияZheng Z et al. · Microsc Microanal, 2025

Abstract

As the most common ectoparasites on mackerel icefish (Champsocephalus gunnari Lönnberg 1905), which has great economic and ecological importance in the Southern Ocean, parasitic copepods and leeches can significantly affect fish health and survival and thus influence the sustainable use of this commercial fishery resource. Accurate identification of these parasites is essential for understanding their specific impacts on hosts and ecosystems, as well as for developing effective fisheries management. This study investigated 34 ectoparasites from 28 C. gunnari specimens at South Georgia in August 2023 using microscopy and mitochondrial cytochrome c oxidase I (CO I) markers. Morphological analysis tentatively identified 10 leeches as Notobdella nototheniae and 24 copepods as Eubrachiella antarctica. Microscopic examinations and morphological measurements revealed marked differences between male and female copepods. Additionally, CO I sequencing confirmed the leeches as N. nototheniae (98.81% similarity) but suggested the copepods were Parabrachiella merluccii (81.97-82.25% similarity). All sequences have been uploaded to Genbank. Maximum Likelihood phylogenetic trees were also constructed using the CO I sequence of both ectoparasites. The 10 leeches were identified as N. nototheniae, and the 24 copepods were E. antarctica in this study.

Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.

Publication typeJournal ArticleResearch Support, Non-U.S. Gov't
Indexed MeSH termsAnimalsCopepodaElectron Transport Complex IVLeechesFemaleMalePerciformesPhylogenyGenes, MitochondrialEctoparasitic InfestationsMicroscopyGeorgia

Резюме

34 ectoparasites from 28 Champsocephalus gunnari mackerel icefish at South Georgia; 10 leeches identified as Notobdella nototheniae by morphology and COI sequencing.

Почему это важно для гирудотерапии

This study investigated the identification of ectoparasites, including parasitic leeches, found on mackerel icefish in the Southern Ocean using morphological and mitochondrial DNA analysis. The researchers examined 34 ectoparasites from 28 fish specimens and successfully identified ten leeches as *Notobdella nototheniae* using COI gene sequencing. While this research accurately documents and identifies specific parasitic leeches affecting commercial fish species, it has no relevance to the American Society of Hirudotherapy. The study is strictly an exercise in marine parasitology and taxonomy, providing no insights into human medical applications, therapeutic secretomes, or clinical use of leeches.

Цитирование

Identifying Two Ectoparasite Species of Mackerel Icefish based on Mitochondrial Gene and Morphology.

Zheng Z et al. · Microsc Microanal, 2025

Связанный клинический контекст

Узнайте, как это исследование связано с клинической практикой

Добавлено в библиотеку ASH: May 27, 2026 · Последнее обновление сайта: June 18, 2026

Этот сайт предоставляет образовательную информацию и не является медицинской консультацией, диагнозом или рекомендацией по лечению. Гирудотерапия сопряжена с клинически значимыми рисками и должна проводиться только квалифицированными клиницистами в рамках институционально утверждённых протоколов. Разрешение FDA 510(k) для медицинских пиявок ограничено определёнными показаниями; обсуждения исследовательского и нелицензионного применения отмечены соответствующим образом. Для индивидуальных медицинских рекомендаций обратитесь к квалифицированному медицинскому специалисту.