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实地测量揭示了滤食性大型动物摄入微塑料的暴露风险。

Field measurements reveal exposure risk to microplastic ingestion by filter-feeding megafauna.

机构信息

California State University, Fullerton, Fullerton, CA, USA.

Hopkins Marine Station, Stanford University, Pacific Grove, CA, USA.

出版信息

Nat Commun. 2022 Nov 1;13(1):6327. doi: 10.1038/s41467-022-33334-5.

Abstract

Microparticles, such as microplastics and microfibers, are ubiquitous in marine food webs. Filter-feeding megafauna may be at extreme risk of exposure to microplastics, but neither the amount nor pathway of microplastic ingestion are well understood. Here, we combine depth-integrated microplastic data from the California Current Ecosystem with high-resolution foraging measurements from 191 tag deployments on blue, fin, and humpback whales to quantify plastic ingestion rates and routes of exposure. We find that baleen whales predominantly feed at depths of 50-250 m, coinciding with the highest measured microplastic concentrations in the pelagic ecosystem. Nearly all (99%) microplastic ingestion is predicted to occur via trophic transfer. We predict that fish-feeding whales are less exposed to microplastic ingestion than krill-feeding whales. Per day, a krill-obligate blue whale may ingest 10 million pieces of microplastic, while a fish-feeding humpback whale likely ingests 200,000 pieces of microplastic. For species struggling to recover from historical whaling alongside other anthropogenic pressures, our findings suggest that the cumulative impacts of multiple stressors require further attention.

摘要

微颗粒,如微塑料和微纤维,在海洋食物网中无处不在。滤食性大型动物可能面临暴露于微塑料的极端风险,但微塑料的摄入数量和途径都还没有被很好地理解。在这里,我们结合加利福尼亚海流生态系统的深度综合微塑料数据和 191 次对蓝鳍、长须和座头鲸的高分辨率觅食测量,来量化塑料的摄入率和暴露途径。我们发现须鲸主要在 50-250 米的深度觅食,这与浮游生态系统中测量到的最高微塑料浓度相吻合。几乎所有(99%)的微塑料摄入都预计是通过食物链传递发生的。我们预测,以鱼为食的鲸鱼比以磷虾为食的鲸鱼暴露在微塑料摄入的风险下更小。每天,一只须鲸可能会摄入 1000 万片微塑料,而一只以鱼为食的座头鲸可能会摄入 20 万片微塑料。对于那些在历史捕鲸和其他人为压力下努力恢复的物种来说,我们的发现表明,多种压力源的累积影响需要进一步关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e45d/9626449/23f64006e999/41467_2022_33334_Fig1_HTML.jpg

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