Université de Pau et des Pays de l'Adour, E2S UPPA, CNRS, IPREM, Anglet, France.
Institut des Milieux Aquatiques, 1 Rue Donzac, 64100, Bayonne, France.
Environ Pollut. 2020 Oct;265(Pt A):115021. doi: 10.1016/j.envpol.2020.115021. Epub 2020 Jun 18.
Organisms are exposed to various stressors including parasites and micropollutants. Their combined effects are hard to predict. This study assessed the trophic relationship, micropollutants bioaccumulation and infection degree in a host-parasite couple. Carbon and nitrogen isotopic ratios were determined in hake Merluccius merluccius muscle and in its parasite Anisakis sp.. Concentrations of both priority (mercury species and polychlorinated biphenyls congeners) and emerging (musks and sunscreens) micropollutants were also measured for the parasite and its host, to detect potential transfer of contaminants between the two species. The results showed partial trophic interaction between the parasite and its host, in accordance with the Anisakis sp. life encysted in hake viscera cavity. PCB transfer between the two species may result from some lipids uptake by the parasite, while no relation occurred for the two other contaminants. Finally, a positive correlation was found between the number of Anisakis sp. larvae and the methylmercury contamination for hake, emphasizing the assumption that the contamination level in methylmercury can weaken immune system of the host enough to affect parasite infection degree.
生物体会暴露于各种压力源中,包括寄生虫和微污染物。它们的综合影响难以预测。本研究评估了宿主-寄生虫对中营养关系、微污染物的生物累积和感染程度。在牙鳕 Merluccius merluccius 的肌肉和其寄生虫 Anisakis sp. 中确定了碳和氮同位素比值。还测量了寄生虫及其宿主中优先(汞物种和多氯联苯同系物)和新兴(麝香和防晒霜)微污染物的浓度,以检测两种物种之间污染物的潜在转移。结果表明,寄生虫与其宿主之间存在部分营养相互作用,这与 Anisakis sp. 在牙鳕内脏腔中寄生的生活方式一致。两种物种之间的 PCB 转移可能是由于寄生虫吸收了一些脂质,而对于其他两种污染物则没有关系。最后,发现牙鳕体内 Anisakis sp. 幼虫数量与甲基汞污染之间存在正相关,这强调了这样一种假设,即甲基汞的污染水平足以削弱宿主的免疫系统,从而影响寄生虫的感染程度。