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塑料摄入和营养传递在濒危顶级掠食者——长鳍金枪鱼鲨(Isurus paucus)中,来自热带西太平洋。

Plastic ingestion and trophic transfer in an endangered top predator, the longfin mako shark (Isurus paucus), from the tropical western Pacific Ocean.

机构信息

College of Marine Sciences, Shanghai Ocean University, Shanghai, China.

Key Laboratory of Sustainable Exploitation of Oceanic Fisheries Resources, Ministry of Education, Shanghai, China.

出版信息

Environ Sci Pollut Res Int. 2023 Oct;30(49):107365-107370. doi: 10.1007/s11356-023-25532-5. Epub 2023 Jan 30.

DOI:10.1007/s11356-023-25532-5
PMID:36710310
Abstract

Plastic pollution has become a global environmental problem of major concern. However, the plastic contamination in the marine top predators, particularly in endangered species, is incompletely understood because of the limited amount of data on their presence in the digestive system and prey. This study investigated the stomach contents of an endangered but poorly known shark species, the longfin mako shark (Isurus paucus), found in the tropical western Pacific Ocean. We examined the plastics in this female specimen (1.22-m fork length) and her prey to assess the potential for trophic transfer of microplastics. Polypropylene bottle cap and lollipop packaging, longnose lancetfish (Alepisaurus ferox), and squid were found in the stomach of I. paucus, while no apparent internal injuries were noted. The microplastic fragments and granules, confirmed by laser direct infrared spectroscopy, were found in the digestive system of the intact squid ingested by I. paucus, suggesting that trophic transfer may occur between shark and prey. These results indicate that I. paucus is vulnerable to plastic ingestion and provide evidence of trophic transfer of microplastics in shark species. Our study emphasizes the need to evaluate the potential ecotoxicological consequences of increasing plastic pollution to endangered marine top predators.

摘要

塑料污染已成为全球关注的主要环境问题。然而,由于海洋顶级捕食者(尤其是濒危物种)的消化系统和猎物中存在的数据有限,因此对其体内的塑料污染情况了解甚少。本研究调查了热带西太平洋中一种濒危但知之甚少的鲨鱼物种——长鳍真鲨(Isurus paucus)的胃内容物。我们检查了这只雌性标本(叉长 1.22 米)及其猎物中的塑料,以评估微塑料通过食物链传递的可能性。在 I. paucus 的胃中发现了聚丙烯瓶盖和棒棒糖包装、长吻鼻鱼(Alepisaurus ferox)和鱿鱼,并且没有发现明显的内部损伤。通过激光直接红外光谱证实,在 I. paucus 摄入的完整鱿鱼的消化系统中发现了微塑料碎片和颗粒,这表明鲨鱼和猎物之间可能发生了营养转移。这些结果表明,I. paucus 容易摄入塑料,并为鲨鱼物种中微塑料的营养转移提供了证据。我们的研究强调了需要评估不断增加的塑料污染对濒危海洋顶级捕食者的潜在生态毒理学后果。

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