Morphological and molecular characterization of an African freshwater fish trypanosome, including its development in a leech vector
Research article published in Int J Parasitol (2020)
Abstract
Trypanosomes are ubiquitous blood parasites of fishes and at least 16 species were originally described infecting African freshwater fishes. This number was later reduced to six and in the late 1990s it was proposed that most records of freshwater fish trypanosomes across Africa are Trypanosoma mukasai Hoare, 1932. Recently, results from a molecular analysis of fish trypanosomes from the Okavango Delta, Botswana, reported the presence of at least two genotypic groups and concluded that the identification of T. mukasai remains problematic. The aims of the present study were thus to elucidate the life cycle of a freshwater fish trypanosome from southern Africa and to do a morphological and molecular characterization of this parasite from both the fish host and leech vector. To locate trypanosome stages, leeches were removed from fishes captured in the Phongolo River, South Africa, and fish blood films and leech squashes were Giemsa-stained and screened. To determine whether trypanosome stages in fishes and leeches were of the same genotype, DNA was extracted and fragments of the 18S rDNA gene were amplified and sequenced. Trypanosomes were detected in the fish families Cichlidae, Clariidae, Mochokidae and Schilbeidae. Sequence data showed that the trypanosome from one of the leeches, identified as Batracobdelloides tricarinata (Blanchard, 1897), was highly similar to those obtained from the plain squeaker, Synodontis zambezensis, with 0.7% difference recorded between them. From morphological and molecular data presented here, it is clear that the trypanosomes from Phongolo are closely related to those of the Okavango and should be considered as a single diverse species with genetic differentiation between 0.4-2.9%, under the 3-5% differences expected to be seen between true distinct species within the rRNA. Developmental stages of the trypanosome found in the leech B. tricarinata supports its status as the vector and the molecular evidence shows the relationship between the trypanosome in the fish and leech, but also illustrates the exceptional genetic and morphological diversity of a single species of trypanosome between host species. The work presented here provides us with clear information to take further steps in resolving the taxonomy and systematics of African freshwater fish trypanosomes.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Resumen
Trypanosoma mukasai morphological and molecular characterization in Phongolo River fishes and Batracobdelloides tricarinata leech vector; 0.7% difference between fish and leech genotypes.
Por qué esto importa para la hirudoterapia
Este estudio caracterizó morfológica y molecularmente un tripanosoma de pez de agua dulce africano, tanto a partir de hospederos peces como de sanguijuelas vectores recolectadas en el Río Phongolo, Sudáfrica, identificando a la sanguijuela Batracobdelloides tricarinata como vector de desarrollo. El trabajo empleó secuenciación del ARNr 18S y frotis sanguíneos teñidos con Giemsa, así como aplastados de sanguijuela, para establecer el ciclo de vida del parásito y la relación genética entre los tripanosomas presentes en peces y en sanguijuelas. Este estudio involucra sanguijuelas, pero resulta tangencial al ámbito de ASH, ya que se refiere a las sanguijuelas como vectores de parásitos de peces y no a la hirudoterapia, los anticoagulantes ni el secretoma terapéutico de la sanguijuela. La advertencia es que se trata de un estudio de parasitología y taxonomía sin conexión con el uso medicinal de la sanguijuela, las propiedades anticoagulantes ni las aplicaciones clínicas; la especie de sanguijuela estudiada no es una de las utilizadas en hirudoterapia.
Citación
Morphological and molecular characterization of an African freshwater fish trypanosome, including its development in a leech vector.
Smit NJ et al. · Int J Parasitol, 2020
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Añadido a la biblioteca ASH: May 27, 2026 · Última actualización del sitio: 18 de junio de 2026