CITEacuícola pesquero Ahuashiyacu, Instituto Tecnológico de la Producción, San Martín, Peru.
Escuela Profesional de Medicina Veterinaria, Universidad Nacional de San Martín, Tarapoto, Peru.
Vet Parasitol Reg Stud Reports. 2024 Sep;54:101085. doi: 10.1016/j.vprsr.2024.101085. Epub 2024 Jul 23.
Piaractus brachypomus (Pacú) is the main native fish species cultivated in Peru and holds great potential for growth in aquaculture from the Peruvian Amazon. Between October 2021 and January 2022 in two fish producing farms in the Amazon region of San Martín in Peru, P. brachypomus individuals were examined for parasite evaluation. A total of 6366 monogeneans were isolated from the gills of 30 fish, revealing a prevalence of 100%, with an abundance and mean intensity of 212 parasites per fish. Monogeneans were morphologically identified as Mymarothecium viatorum and Anacanthorus penilabiatus. The genetic divergence in the 28S rDNA gene found among A. penilabiatus sequences was 0.1% and among Anacanthorus spp. it ranged from 0.9% to 7.5%. The genetic divergence found among the M. viatorum sequences was 0.3%. These finding represents the first molecular data of M. viatorum and A. penilabiatus in Peru using the 28S rDNA gene of these monogeneans. The new sequences obtained will contribute to future studies on the phylogenetic relationships among dactylogyrids. However, further research with a broader range of host-parasite samples and additional genetic markers is needed to clarify these relationships and provide stronger support for the phylogenetic positions.
巨脂鲤(Pacú)是秘鲁主要的本土养殖鱼类,在秘鲁亚马逊地区的水产养殖中有很大的发展潜力。2021 年 10 月至 2022 年 1 月期间,在秘鲁圣马丁地区的两个鱼类养殖场对巨脂鲤进行了寄生虫评估。从 30 条鱼的鳃中分离出了 6366 条单殖吸虫,感染率为 100%,每条鱼的丰度和平均强度为 212 条寄生虫。单殖吸虫的形态学鉴定为 Mymarothecium viatorum 和 Anacanthorus penilabiatus。在 A. penilabiatus 序列中发现的 28S rDNA 基因的遗传分化为 0.1%,在 Anacanthorus spp. 中则为 0.9%至 7.5%。在 M. viatorum 序列中发现的遗传分化为 0.3%。这些发现是使用这些单殖吸虫的 28S rDNA 基因首次在秘鲁获得的 M. viatorum 和 A. penilabiatus 的分子数据。获得的新序列将有助于未来对盘尾虫科的系统发育关系的研究。然而,需要进行更多的宿主-寄生虫样本的研究和其他遗传标记,以澄清这些关系并为系统发育位置提供更强有力的支持。