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采集底栖无脊椎动物是更好地评估底栖生态系统功能的必要手段:以塞纳湾聚集种 Ophiothrix fragilis 为例。

Sampling epifauna, a necessity for a better assessment of benthic ecosystem functioning: an example of the epibenthic aggregated species Ophiothrix fragilis from the Bay of Seine.

机构信息

Université de Lille 1, Station Marine de Wimereux, UMR CNRS 8187 LOG, 28 Avenue Foch, BP 80, 62930 Wimereux, France.

出版信息

Mar Pollut Bull. 2011 Dec;62(12):2753-60. doi: 10.1016/j.marpolbul.2011.09.012. Epub 2011 Oct 2.

DOI:10.1016/j.marpolbul.2011.09.012
PMID:21967863
Abstract

Sampling the sea bottom surface remains difficult because of the surface hydraulic shock due to water flowing through the gear (i.e., the bow wave effect) and the loss of epifauna organisms due to the gear's closing mechanism. Slow-moving mobile epifauna, such as the ophiuroid Ophiothrix fragilis, form high-density patches in the English Channel, not only on pebbles like in the Dover Strait or offshore Brittany but also on gravel in the Bay of Seine (>5000 ind m(-2)). Such populations form high biomasses and control the water transfer from the water column to the sediment. Estimating their real density and biomass is essential for the assessment of benthic ecosystem functioning using trophic web modelling. In this paper, we present and discuss the patch patterns and sampling efficiency of the different methods for collecting in the dense beds of O. fragilis in the Bay of Seine. The large Hamon grab (0.25 m(-2)) highly under-estimated the ophiuroid density, while the Smith McIntyre appeared adequate among the tested sampling grabs. Nowadays, diving sampling, underwater photography and videos with remote operated vehicle appear to be the recommended alternatives to estimate the real density of such dense slow-moving mobile epifauna.

摘要

由于水流通过齿轮时产生的表面水力冲击(即船头波效应)以及齿轮关闭机制导致的附生动物的损失,海底表面采样仍然很困难。在英吉利海峡,行动缓慢的移动附生动物,如蛇尾 Ophiothrix fragilis,形成了高密度的斑块,不仅在多佛海峡或布列塔尼近海的鹅卵石上,而且在塞纳湾的砾石上(>5000 个个体 m(-2))。这些种群形成了高生物量,并控制着水柱向沉积物的水转移。利用营养级网络模型评估底栖生态系统功能时,估计其实际密度和生物量至关重要。在本文中,我们介绍并讨论了在塞纳湾 O. fragilis 密集床中收集的不同方法的斑块模式和采样效率。大型哈蒙抓斗(0.25 m(-2))严重低估了蛇尾类的密度,而在测试的采样抓斗中,史密斯-麦金太尔抓斗似乎是合适的。如今,潜水采样、水下摄影和遥控潜水器视频似乎是估计这种密集、行动缓慢的移动附生动物实际密度的推荐替代方法。

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