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佛罗里达州河口底层海蜇(Cassiopea xamachana)体内的微塑料证据。

Evidence of microplastics from benthic jellyfish (Cassiopea xamachana) in Florida estuaries.

机构信息

Department of Ecology and Evolutionary Biology, University of Michigan, 1105 N University Ave, Ann Arbor, MI 48109, USA; Florida Atlantic University Harriet L. Wilkes Honors College, 5353 Parkside Dr., Jupiter, FL 33458, USA.

Department of Natural and Applied Sciences, Bentley University, 175 Forest St, North Waltham, MA 02452, USA.

出版信息

Mar Pollut Bull. 2020 Oct;159:111521. doi: 10.1016/j.marpolbul.2020.111521. Epub 2020 Aug 4.

Abstract

Plastic pollution is a concern in many nearshore ecosystems, and it is critical to understand how microplastics (plastics <5 mm in length) affect nearshore marine biota. Here, we report the presence of microplastics in the benthic, upside-down jellyfish (Cassiopea xamachana) across three estuaries in south Florida. Microplastics were recovered from Cassiopea using an acid digestion, then enumerated via microscopy, and identified using micro Fourier-transform interferometer (μFTIR) analysis. Out of 115 specimens analyzed, 77% contained microplastics. Bell diameter and number of plastics per individual varied significantly across locations with the highest plastic densities and bell diameter observed in individuals from Big Pine Key, followed by Jupiter, and Sarasota. μFTIR analysis confirmed that synthetic microfibers were the dominant microplastic measured at all three locations and may indicate Cassiopea as potential sinks of microplastic. Cassiopea may be used as bioindicators of microplastic contamination in the future, allowing for potential plastic pollution mitigation.

摘要

塑料污染是许多近岸生态系统关注的问题,了解微塑料(长度小于 5 毫米的塑料)如何影响近岸海洋生物群至关重要。在这里,我们报告了在佛罗里达州南部的三个河口发现的底栖、倒吊水母(Cassiopea xamachana)中存在微塑料。使用酸消化法从 Cassiopea 中回收微塑料,然后通过显微镜计数,并使用微傅里叶变换干涉仪(μFTIR)分析进行鉴定。在分析的 115 个标本中,77%的标本含有微塑料。个体的钟形直径和每只个体的塑料数量在不同地点有显著差异,其中大松礁的个体观察到最高的塑料密度和钟形直径,其次是朱庇特,然后是萨拉索塔。μFTIR 分析证实,在所有三个地点测量到的主要微塑料是合成微纤维,这可能表明 Cassiopea 是微塑料的潜在汇。Cassiopea 将来可能被用作微塑料污染的生物指标,从而有可能减轻塑料污染。

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