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日本养殖鲭鱼(Scomber japonicas)中异尖线虫幼虫的感染率以及养殖鲭鱼中异尖线虫感染强度与鱼体肥满度之间的关系。

Prevalence of Anisakis larvae in cultured mackerel Scomber japonicas in Japan and the relationship between the intensity of Anisakis infection in cultured mackerel and fish fatness.

作者信息

Kodo Yukihiro, Murata Rie, Suzuki Jun, Mori Kohji, Sadamasu Kenji

机构信息

Department of Microbiology, Tokyo Metropolitan Institute of Public Health, Japan.

Department of Microbiology, Tokyo Metropolitan Institute of Public Health, Japan.

出版信息

Int J Food Microbiol. 2023 Nov 2;404:110347. doi: 10.1016/j.ijfoodmicro.2023.110347. Epub 2023 Jul 30.

Abstract

Incidences of food poisoning caused by Anisakis have increased in Japan, and a significant number of anisakiasis cases in Tokyo attributed to the consumption of mackerel (Scomber japonicus) have been reported. There are two types of cultured mackerel in Japan: those cultured fully from controlled parent fish eggs and those cultured from wild juveniles collected from the sea. In this study, we aimed to investigate the prevalence of Anisakis larvae in cultured mackerel (184 fish) in 15 products and identified the species using molecular analysis to evaluate the risk of food poisoning. In total, 1567 Anisakis larvae were detected in 70 of 130 mackerel in 10 products; however, Anisakis larvae were not detected in 54 mackerel using artificially reared juveniles in 5 products. Moreover, 277 larvae were detected in fish muscle, and 98.6 % (273/277 larvae) were molecularly identified as Anisakis simplex sensu stricto (A. simplex). Conversely, 1043 Anisakis pegreffii larvae were identified genetically and/or morphologically but only 2 larvae were identified in the muscle. There was no significant relationship between the host coefficient of fatness and the infection intensity of Anisakis larvae in individual fish (Spearman's rank correlation coefficient test, P > 0.05). Based on the results of the analysis of the cytochrome c oxidase subunit2 (cox2) gene of A. simplex and A. pegreffii detected in this study, we attempted to estimate the catch area of the juveniles (Pacific stock and Tsushima Warm Current stock). The clusters on the phylogenetic tree of the cox2 gene of A. pegreffii from the mackerel presumed to be the two above mentioned geographic distributions were not separated and these geographic origins could not be estimated. This study revealed that mackerel cultured using wild juveniles are likely to be contaminated with Anisakis larvae, which can be detected not only in the visceral organs, but also in the muscle. Anisakis infection in cultured mackerel did not influence fish growth and evaluating the intensity of Anisakis based on the fatness level of the mackerel was complicated. To prevent anisakiasis caused by the consumption of mackerel cultured using wild juveniles, it is important to steadily control Anisakis through heating and freezing.

摘要

在日本,异尖线虫引起的食物中毒发生率有所上升,并且已有报告称东京有大量因食用鲭鱼(日本鲭)而导致的异尖线虫病病例。日本养殖的鲭鱼有两种:一种是完全由受控亲鱼卵培育而成,另一种是由从海中捕获的野生幼鱼培育而成。在本研究中,我们旨在调查15种产品中养殖鲭鱼(184条鱼)的异尖线虫幼虫感染率,并通过分子分析鉴定其种类,以评估食物中毒风险。在10种产品的130条鲭鱼中,有70条检测到了总计1567条异尖线虫幼虫;然而,在5种产品中使用人工养殖幼鱼培育的54条鲭鱼中未检测到异尖线虫幼虫。此外,在鱼肉中检测到277条幼虫,其中98.6%(273/277条幼虫)经分子鉴定为典型异尖线虫(A. simplex)。相反,通过基因和/或形态学鉴定出1043条派氏异尖线虫幼虫,但在鱼肉中仅鉴定出2条。个体鱼的肥满度系数与异尖线虫幼虫感染强度之间无显著相关性(Spearman秩相关系数检验,P>0.05)。基于本研究中检测到的典型异尖线虫和派氏异尖线虫的细胞色素c氧化酶亚基2(cox2)基因分析结果,我们试图估计幼鱼的捕捞区域(太平洋种群和对马暖流种群)。推测来自上述两种地理分布的鲭鱼中派氏异尖线虫cox2基因系统发育树上的聚类未分开,无法估计这些地理来源。本研究表明,使用野生幼鱼养殖的鲭鱼很可能被异尖线虫幼虫污染,这些幼虫不仅能在内脏器官中检测到,在鱼肉中也能检测到。养殖鲭鱼中的异尖线虫感染不影响鱼的生长,基于鲭鱼肥满度水平评估异尖线虫感染强度较为复杂。为预防因食用使用野生幼鱼养殖的鲭鱼而导致的异尖线虫病,通过加热和冷冻稳定控制异尖线虫很重要。

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