桡足类在两个不同季节摄入微塑料的情况:墨西哥湾南部特米诺斯泻湖案例研究

Ana Montoya-Melgoza, Erik Coria-Monter, M. A. Monreal‐Gómez, Elizabeth Durán-Campos, D. Salas‐de‐León, J. Armstrong-Altrin, B. Quiroz-Martínez, S. Cházaro-Olvera
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引用次数: 0

摘要

本研究评估了墨西哥湾南部被列入《拉姆萨尔公约》的特尔米诺斯泻湖(TL)中桡足类动物摄入微塑料(MP)的情况。评估在 2022 年的两个不同季节进行:旱季(4 月)和雨季(10 月)。使用锥形浮游生物网(网眼尺寸为 200 μm)收集桡足类。在实验室中,对所有浮游成体桡足类群进行挑选,使用传统的光学显微镜和扫描电子显微镜对生物体内的 MP 进行提取、分类和拍照。共从桡足类体内提取了268个MP颗粒,其中149个和119个分别对应旱季和雨季。旱季的摄取率为 0.14,雨季为 0.11。此外,还检测到不同颜色(蓝色、红色、黑色、绿色、透明和多色)、大小、形状(角形、圆形、三角形和扭曲形)和质地的纤维、塑料碎片和微球。纤维是最常见的 MP,所占比例超过 85%。此外,在一些采样点,还发现了相对丰度值很高的微球(80%)。在某些地点,碎片占总丰度的 20%。两个季节之间存在显著差异。在最靠近 TL 附近城市地区的地点,观察到 MP 的多样性和丰度都很高。另一方面,旱季 MP 丰度较高的原因是河流排水量较低。因此,MP 颗粒积累起来,可供桡足类食用。这是首次发现桡足类摄食 TL 中 MP 的研究。此外,这项研究还为今后研究墨西哥湾地区 MP 的丰度提供了基准信息。
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Microplastics Ingestion by Copepods in Two Contrasting Seasons: A Case Study from the Terminos Lagoon, Southern Gulf of Mexico
This study evaluated the ingestion of microplastics (MP) by copepods in Terminos Lagoon (TL), a RAMSAR-listed site in the southern Gulf of Mexico. The evaluation was carried out in two contrasting seasons of 2022, as follows: the dry (April) and the rainy (October). Copepods were collected using a conical plankton net (mesh size of 200 μm). In the laboratory, a pool of all pelagic adult copepod taxa was picked, and the MP inside the organisms were extracted, classified, and photographed using traditional optical and scanning electron microscopy. A total of 268 MP particles were extracted from the interior of copepods; among them, 149 and 119 corresponded to the dry and rainy seasons, respectively. The ingestion rate in the dry season was 0.14, while in the rainy season, it was 0.11. In addition, fibers, plastic fragments, and microspheres with different colors (blue, red, black, green, transparent, and multicolored), sizes, forms (angular, round, triangular, and twisted), and textures were also detected. Fibers were the most abundant MP found in a proportion of more than 85%. In addition, in some sampling sites, microspheres were observed with high relative abundance values (80%). In some sites, fragments reach 20% of the total abundance. Significant differences were observed between the two seasons. The sites closest to the urban area adjacent to TL observed high diversity and abundance of MP. The higher abundance of MP in the dry season is due to lower river discharge, on the other hand. Thus, MP particles accumulate and become available for consumption by copepods. This is the first study that has revealed that the MP was ingested by the copepods in TL. Furthermore, this study provides a baseline information for future research on the abundance of MP in the Gulf of Mexico region.
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