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宏观和微观塑料会影响冷水珊瑚的生长、摄食和行为。

Macro- and microplastics affect cold-water corals growth, feeding and behaviour.

机构信息

Sorbonne Université, CNRS, Laboratoire d'Ecogéochimie des Environnements Benthiques, LECOB, F-66650, Banyuls-sur-Mer, France.

Sorbonne Université, CNRS, Laboratoire d'Océanographie Microbienne, LOMIC, F-66650, Banyuls-sur-Mer, France.

出版信息

Sci Rep. 2018 Oct 17;8(1):15299. doi: 10.1038/s41598-018-33683-6.

Abstract

Plastic contamination is now recognized as one of the most serious environmental issues for oceans. Both macro- and microplastic debris are accumulating in surface and deep waters. However, little is known about their impact on deep marine ecosystems and especially on the deep-sea reefs built by emblematic cold-water corals. The aim of this study was to investigate whether plastics affected the growth, feeding and behaviour of the main engineer species, Lophelia pertusa. Our experiments showed that both micro- and macroplastics significantly reduced skeletal growth rates. Macroplastics induced an increased polyp activity but decreased prey capture rates. They acted as physical barriers for food supply, likely affecting energy acquisition and allocation. Inversely, microplastics did not impact polyp behaviour or prey capture rates, but calcification was still reduced compared to control and in situ conditions. The exact causes are still unclear but they might involve possible physical damages or energy storage alteration. Considering the high local accumulation of macroplastics reported and the widespread distribution of microplastics in the world ocean, our results suggest that plastics may constitute a major threat for reef aggradation by inhibiting coral growth, and thus jeopardise the resilience of cold-water coral reefs and their associated biodiversity.

摘要

塑料污染现已被公认为海洋面临的最严重环境问题之一。无论是大型塑料还是微型塑料碎片都在地表水和深海中不断积聚。然而,人们对其对深海生态系统的影响,特别是对标志性冷水珊瑚所构建的深海珊瑚礁的影响知之甚少。本研究旨在调查塑料是否会影响主要工程物种——盔形珊瑚的生长、摄食和行为。我们的实验表明,微塑料和大塑料都显著降低了骨骼生长速度。大塑料增加了珊瑚虫的活动,但降低了捕食率。它们充当了食物供应的物理障碍,可能影响了能量的获取和分配。相反,微塑料对珊瑚虫的行为或捕食率没有影响,但与对照和原位条件相比,钙化仍然减少。确切原因尚不清楚,但可能涉及可能的物理损伤或能量储存改变。考虑到报告的局部大量积累的大型塑料和世界海洋中广泛分布的微型塑料,我们的结果表明,塑料可能通过抑制珊瑚生长而对珊瑚礁的堆积构成重大威胁,从而危及冷水珊瑚礁及其相关生物多样性的恢复力。

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