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评估太平洋牡蛎 D 幼虫(巨蛎)在暴露于模型污染物后的游泳行为。

Assessment of swimming behavior of the Pacific oyster D-larvae (Crassostrea gigas) following exposure to model pollutants.

机构信息

Univ. Bordeaux, EPOC, UMR 5805, 33600, Pessac, France.

IRSTEA, UR EABX (Water Research Unit), 50 avenue de Verdun, Gazinet, 33612, Cestas Cedex, France.

出版信息

Environ Sci Pollut Res Int. 2020 Feb;27(4):3675-3685. doi: 10.1007/s11356-019-04156-8. Epub 2019 Jan 31.

Abstract

This study describes an image analysis method that has been used to analyze the swimming behavior of native oyster D-larvae (Crassostrea gigas) from the Arcachon Bay (SW, France). In a second time, this study evaluated the impact of copper and S-metolachlor pollutants on D-larvae swimming activity and the possible relationship between developmental malformations and abnormal swimming behavior. Analyses in wild and cultivated oyster D-larvae were investigated during two breeding-seasons (2014 and 2015) at different sampling sites and dates. In controlled conditions, the average speed of larvae was 144 μm s and the maximum speed was 297 μm s while the trajectory is mainly rectilinear. In the presence of environmental concentration of copper or S-metolachlor, no significant difference in maximum or average larval speed was observed compared to the control condition but the percentage of circular trajectory increased significantly while the rectilinear swimming larvae significantly declined. The current study demonstrates that rectilinear trajectories are positively correlated to normal larvae while larvae with shell anomalies are positively correlated to circular trajectories. This abnormal behavior could affect the survival and spread of larvae, and consequently, the recruitment and colonization of new habitats.

摘要

本研究描述了一种图像分析方法,用于分析来自法国阿卡雄湾(西南部)的本地牡蛎 D 幼虫(太平洋牡蛎)的游泳行为。在第二部分,本研究评估了铜和 S-甲草氯污染物对 D 幼虫游泳活动的影响,以及发育畸形与异常游泳行为之间的可能关系。在两个繁殖季节(2014 年和 2015 年),在不同的采样地点和日期,对野生和养殖牡蛎 D 幼虫进行了分析。在受控条件下,幼虫的平均速度为 144μm/s,最大速度为 297μm/s,轨迹主要是直线。在铜或 S-甲草氯的环境浓度存在下,与对照条件相比,最大或平均幼虫速度没有显著差异,但圆形轨迹的百分比显著增加,而直线游泳幼虫显著减少。本研究表明,直线轨迹与正常幼虫呈正相关,而壳异常的幼虫与圆形轨迹呈正相关。这种异常行为可能会影响幼虫的生存和扩散,从而影响新栖息地的繁殖和定居。

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