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Bait Effects in Sampling Coral Reef Fish Assemblages with Stereo-BRUVs

机译:立体BRUV采样珊瑚鱼组合的诱饵效应

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摘要

Baited underwater video techniques are increasingly being utilised for assessing and monitoring demersal fishes because they are: 1) non extractive, 2) can be used to sample across multiple habitats and depths, 3) are cost effective, 4) sample a broader range of species than many other techniques, 5) and with greater statistical power. However, an examination of the literature demonstrates that a range of different bait types are being used. The use of different types of bait can create an additional source of variability in sampling programs. Coral reef fish assemblages at the Houtman Abrolhos Islands, Western Australia, were sampled using baited remote underwater stereo-video systems. One-hour stereo-video recordings were collected for four different bait treatments (pilchards, cat food, falafel mix and no bait (control)) from sites inside and outside a targeted fishery closure (TFC). In total, 5209 individuals from 132 fish species belonging to 41 families were recorded. There were significant differences in the fish assemblage structure and composition between baited and non-baited treatments (P<0.001), while no difference was observed with species richness. Samples baited with cat food and pilchards contained similar ingredients and were found to record similar components of the fish assemblage. There were no significant differences in the fish assemblages in areas open or closed to fishing, regardless of the bait used. Investigation of five targeted species indicated that the response to different types of bait was species-specific. For example, the relative abundance of Pagrus auratus was found to increase in areas protected from fishing, but only in samples baited with pilchards and cat food. The results indicate that the use of bait in conjunction with stereo-BRUVs is advantageous. On balance, the use of pilchards as a standardised bait for stereo-BRUVs deployments is justified for use along the mid-west coast of Western Australia.
机译:诱饵水下视频技术正越来越多地用于评估和监测海底鱼类,因为它们是:1)非提取性的,2)可用于跨多个栖息地和深度的采样,3)具有成本效益,4)采样种类广泛的鱼类比许多其他技术5)具有更大的统计能力。但是,对文献的检查表明,正在使用各种不同的诱饵类型。使用不同类型的诱饵会在采样程序中产生额外的可变性。使用诱饵式远程水下立体视频系统对西澳大利亚州霍特曼阿布罗洛斯群岛的珊瑚鱼群进行了采样。从目标渔场关闭(TFC)内外的地点收集了一个小时的立体声录像,记录了四种不同的诱饵处理方法(沙丁鱼,猫食,沙拉三明治混合物和无诱饵(对照))。总共记录了来自41个科的132种鱼类的5209个人。诱饵处理和非诱饵处理之间的鱼类组合结构和组成存在显着差异(P <0.001),而物种丰富度则未观察到差异。用猫食和沙丁鱼诱食的样品中含有相似的成分,并发现它们记录了鱼群中相似的成分。不论使用哪种诱饵,在开放或封闭捕捞区的鱼类组合都没有显着差异。对五个目标物种的调查表明,对不同类型诱饵的反应是特定于物种的。例如,发现在保护免受捕捞的区域中,Pagrus auratus的相对丰度增加了,但仅在用沙丁鱼和猫食诱饵的样品中增加了。结果表明,将诱饵与立体BRUV结合使用是有利的。总而言之,将沙丁鱼作为立体声BRUV部署的标准诱饵用于西澳大利亚中西部海岸是合理的。

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