Microfibers in Mytilus species(Mollusca, Bivalvia)from Southern California Harbors, Beaches, and Supermarkets

Chloe Mankin, Andrea L. Huvard
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引用次数: 5

Abstract

Plastic microfibers are an emerging threat to terrestrial and aquatic habitats worldwide. They are equivalent in size to planktonic organisms, making them available to a range of invertebrates. Bivalve mollusks can ingest and accumulate plastics via digestion and adherence to soft tissue. We determined the frequency and characteristics of microfiber pollution from wild Mytilus californianus and farmed Mytilus edulis populations that were collected from southern California harbors, beaches, and supermarkets (n=4 per site). Mussel organic matter was dissected using 30% H2O2. After adding a saline solution to separate the fibers, the liquid was filtered by vacuum filtration. The remaining fibers were examined with a magnification of 1~8x. In this short-term survey, the abundance of microfibers by sample and by shell length showed a significant difference between the harbor and beach sites. However, there was not a significant difference between the wild and farmed mussels examined. This study revealed widespread microfiber pollution and uptake by mussels in these locations and reinforces how bivalves can be used as a bioindicator of microfiber pollution. KEYWORDS: Microplastic; Microfiber; Mytilus; Biomonitoring; Bivalvia; Seafood; Human Health
来自南加州港口、海滩和超市的Mytilus物种(软体动物、双壳动物)的微纤维
塑料微纤维对世界各地的陆地和水生栖息地构成了新的威胁。它们的大小与浮游生物相当,使它们可供一系列无脊椎动物使用。双瓣软体动物可以通过消化和粘附软组织来摄入和积累塑料。我们确定了从南加州港口、海滩和超市采集的野生加利福尼亚Mytilus californians和养殖的Mytilus edulis种群(每个站点n=4)的微纤维污染频率和特征。用30%H2O2解剖贻贝的有机物。在加入盐水溶液以分离纤维后,通过真空过滤过滤液体。其余纤维用1~8倍的放大倍数进行检查。在这项短期调查中,按样本和贝壳长度划分的微纤维丰度显示,港口和海滩之间存在显著差异。然而,所检查的野生贻贝和养殖贻贝之间没有显著差异。这项研究揭示了这些地区贻贝对微纤维的广泛污染和吸收,并加强了双壳类如何被用作微纤维污染的生物指示剂。关键词:微塑料;超细纤维;Mytilus;生物监测;双瓣菌;海鲜人类健康
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