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Colonization of benthic invertebrates in a submarine canyon in the NW Atlantic

机译:西北大西洋海底峡谷中底栖无脊椎动物的定殖

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摘要

The paucity of data on colonization of benthic invertebrates in the deep sea can severely inhibit our ability to predict the potential for recovery of these vulnerable ecosystems from anthropogenic disturbances, such as deep sea mining and trawling. In this study, we measured abundance and family richness of benthic invertebrate colonists on 2 types of substrates with the same planar area, but different levels of structural complexity, at 3 locations (655, 662 and 883 m depth) in the Middle Canyon of the Northeast Channel Coral Conservation Area, NW Atlantic, over 4 yr. The complex substrate allowed colonization in the third dimension, while the simpler substrate allowed colonization in only 2 dimensions. Anthozoan and bivalve colonists were present at a higher frequency on simple substrates, and maxillopods, nematodes, gastropods and ostracods on complex ones. Abundance of colonists varied among locations, but not consistently for all taxa and substrate types. Family richness of the colonizing assemblages was greater on complex than on simple substrates and also varied among locations in the canyon. Colonization on simple substrates was low and similar to those few values previously recorded in deep-sea, non-chemosynthetic habitats. Colonization on complex substrates was higher, in some cases by an order of magnitude, and similar to other studies that have used complex substrates. Overall, the low rates of colonization in the deep sea indicate the vulnerability of these ecosystems to anthropogenic disturbances.
机译:缺乏有关深海底栖无脊椎动物定殖的数据会严重抑制我们预测这些脆弱生态系统从人为干扰(如深海采矿和拖网)中恢复的潜力的能力。在这项研究中,我们在中峡谷的三个峡谷(655、662和883 m深度)的两个相同平面面积但结构复杂程度不同的基质上测量了底栖无脊椎动物殖民者的丰富度和家庭丰富度。大西洋西北部东北海峡珊瑚保护区,历时4年。复杂的底物允许在第三维进行定居,而简单的底物仅允许在二维进行定居。在简单的底物上,虫族和双壳类殖民者的出现频率较高,而在复杂的底物上,上颌足类,线虫,腹足类和成虫类的出现频率更高。殖民者的丰富程度因地点而异,但并非在所有分类单元和底物类型上都一致。复杂的殖民群体的家庭财富要比简单的衬底大,并且在峡谷中的位置之间也存在差异。简单底物上的定殖率很低,与先前在深海,非化学合成栖息地中记录的极少数值相似。在某些情况下,在复杂基质上的定殖率更高,与使用复杂基质的其他研究相似。总体而言,深海定殖率低表明这些生态系统易受人为干扰。

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