Genetic variation in Whitmania pigra, Hirudo nipponica and Poecilobdella manillensis, three endemic and endangered species in China using SSR and TRAP markers
Basic science / population genetics published in Gene (2016)
Abstract
Leeches are not only important medicinal animals worldwide but also are endangered. We aimed to (i) explore the level of genetic diversity within/among populations of three leeches, (ii) assess genetic differentiation among these three leeches, and (iii) discuss an appropriate strategy for conserving leech germplasm. A total of 315 individuals of Whitmania pigra, Hirudo nipponica and Poecilobdella manillensis from 21 populations were collected in China and Vietnam. The genetic structure and genetic diversity among and within the 21 populations were evaluated using target region amplified polymorphism (TRAP) and simple sequence repeat (SSR) markers. Sixteen pairs of TRAP primers generated a total of 398 fragments, of which 396 (99.50%) were polymorphic; fourteen pairs of SSR primers generated a total of 60 fragments, of which 59 (98.33%) were polymorphic. Shannon's index (I) and Nei's gene diversity index (H) for the three leeches were high at the species level (I=0.4980 and H=0.3323 for TRAPs, I=0.4487 and H=0.2969 for SSRs in W. pigra; I=0.4147/0.3769, H=0.2788/0.2566 for H. nipponica; and I=0.4616/0.4717, H=0.3099/0.3203 for P. manillensis). However, low genetic diversity was determined at the population level; the average genetic diversity measures within populations were H=0.1767/0.1376, I=0.2589/0.2043 for W. pigra, H=0.2149/0.2021, I=0.3184/0.3000 for H. nipponica and H=0.2850/0.2724, I=0.4152/0.3967 for P. manillensis. We conclude that there was limited gene exchange within/among populations and species, as the gene flow number (Nm) was 0.5493/0.5807. However, for all three species, the genetic diversity was different at the population level. Gene differentiation (Gst) and Nm were 0.4682 /0.5364 and 0.5678/0.4321 for W. pigra, 0.2294/0.2127 and 1.6797/1.8512 for H. nipponica and 0.1214/0.1496 and 3.6202/2.8412 for P. manillensis. STRUCTURE analysis, Unweighted Pair-Group Method with Arithmetic means (UPGMA) cluster analysis and Principal Coordinates Analysis (PCOA) all yielded similar results. The isolation-by-distance pattern was not significant for any of the three species by the Mantel test. These data emphasize the need for management, conservation, and rehabilitation of this animal species. Finally, an appropriate strategy for conserving leech is proposed.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Resumen
Population-genetics study of 315 individuals from 21 populations of three endangered medicinal-leech species in China and Vietnam using SSR and TRAP markers. Documents high species-level diversity but low population-level diversity, supporting conservation needs.
Por qué esto importa para la hirudoterapia
Este estudio evaluó la diversidad genética y la estructura poblacional de tres especies de sanguijuelas descritas como animales medicinales importantes—Whitmania pigra, Hirudo nipponica y Poecilobdella manillensis—utilizando marcadores SSR y TRAP en 315 individuos de 21 poblaciones recolectadas en China y Vietnam. Se encontró una alta diversidad genética a nivel de especie pero baja a nivel poblacional, con intercambio génico limitado dentro y entre poblaciones y especies, lo que llevó a los autores a proponer estrategias de conservación y gestión de germoplasma. La relevancia con el dominio de la ASH es indirecta, ya que el resumen presenta estas sanguijuelas como animales medicinales pero no aporta datos sobre hirudoterapia, contenido de anticoagulantes, composición del secretoma ni propiedades terapéuticas; el estudio es puramente de genética poblacional y taxonomía.
Citación
Genetic variation in Whitmania pigra, Hirudo nipponica and Poecilobdella manillensis, three endemic and endangered species in China using SSR and TRAP markers.
Liu F et al. · Gene, 2016
Contexto clínico relacionado
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Añadido a la biblioteca ASH: May 27, 2026 · Última actualización del sitio: 18 de junio de 2026