Key Laboratory of Animal Physiology, Biochemistry and Molecular Biology of Hebei Province, College of Life Science, Hebei Normal University, 050024 Shijiazhuang, Hebei Province, PR China.
Key Laboratory of Animal Physiology, Biochemistry and Molecular Biology of Hebei Province, College of Life Science, Hebei Normal University, 050024 Shijiazhuang, Hebei Province, PR China.
Infect Genet Evol. 2020 Nov;85:104562. doi: 10.1016/j.meegid.2020.104562. Epub 2020 Sep 19.
The Japanese threadfin bream N. japonicus (Bloch) (Perciformes: Nemipteridae) is an important marine food fish in Asia. However, our present knowledge of the occurrence of its nematode parasites is still limited. In the present study, the species composition and infection rate of ascaridoid nematodes in N. japonicus from the South China Sea, were studied for the first time. Five ascaridoid species, namely Anisakis typica (L3), Hysterothylacium amoyense (L3), Hysterothylacium sp. IV-A (L3), adult of H. thalassini and Raphidascaris lophii (L3), were identified using integrative taxonomy. Hysterothylacium amoyense was the most prevalent species (prevalence 47.2%, mean intensity 14.9 ± 17.1). Hysterothylacium thalassini and R. lophii were reported in the Japanese threadfin bream for the first time. Two different genotypes of A. typica (overall prevalence of 3.4%; mean intensity 1.7 ± 0.9) were found in the South China Sea for the first time. The unique restriction polymorphism patterns of three species of Hysterothylacium are provided for rapid diagnosis. Our present results indicate that RFLP analysis of ITS region, using the restriction enzymes HhaI and RsaI, represents a simple and practical method for large-scale surveys of Hysterothylacium for seafood industry.
日本金线鱼(Nemipterus japonicus)(鲈形目:金线鱼科)是亚洲重要的海洋食用鱼类。然而,我们目前对其寄生线虫的发生情况的了解仍然有限。本研究首次对南海日本金线鱼中线虫的种类组成和感染率进行了研究。使用综合分类学方法鉴定了 5 种似蛔线虫,即典型异尖线虫(L3)、厦门异尖线虫(L3)、异尖线虫 IV-A 种(L3)、斜带海鲢成体和罗氏海盘车(L3)。厦门异尖线虫是最流行的物种(流行率为 47.2%,平均强度为 14.9±17.1)。斜带海鲢和罗氏海盘车首次在日本金线鱼中报道。南海首次发现两种不同基因型的典型异尖线虫(总流行率为 3.4%;平均强度为 1.7±0.9)。为快速诊断提供了三种异尖线虫独特的限制多态性模式。我们目前的结果表明,使用限制性内切酶 HhaI 和 RsaI 对 ITS 区进行 RFLP 分析,代表了一种用于海鲜工业中大规模调查异尖线虫的简单实用方法。