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首页> 外文期刊>Estuarine Coastal and Shelf Science >Oceanographic and biological influences on recruitment of benthic invertebrates to hard substrata on the Oregon shelf
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Oceanographic and biological influences on recruitment of benthic invertebrates to hard substrata on the Oregon shelf

机译:海洋学和生物学对底栖无脊椎动物募集到俄勒冈架子上坚硬基质的影响

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摘要

The number of anthropogenic substrata in the ocean - structures like oil rigs and offshore renewable energy generators - is increasing. These structures provide hard-bottom habitat in areas previously dominated by sand or mud, so they have the potential to alter species distributions or serve as "stepping-stones" between other hard-bottom habitats. It is thus important to understand what factors influence the composition and abundance of benthic fauna recruiting at these sites. We examined recruitment to hard substrata (fouling panels) deployed on sand at various distances from a large rocky reef (similar to 60 m isobath) on the southern Oregon coast in 2014-2015. Recruitment was dominated by the acorn barnacle Hesperibalanus hesperius. For the majority of the study period in 2014, an anti-cyclonic eddy was present near the deployment sites. However, anomalously high recruitment of H. hesperius during August - early October 2014 coincided with dissipation of the eddy, slower bottom currents, and a positive convergence index, suggesting that H. hesperlus larvae from the adjacent area may have been accumulated and retained near our study sites. Other sessile species, including hydroids and bryozoans, recruited to the fouling panels in low abundances, and most of these species have long-range dispersal and fast growth. Mobile invertebrates observed on the fouling panels included gastropods and nudibranchs, most of which also have long-range dispersal and fast growth, and are predators as adults. Thus, a community with two trophic levels assembled on the fouling panels in a relatively short time period ( 12 weeks). None of the common hard-bottom species from the adjacent rocky reef recruited to the panels, suggesting that there is a specialized assemblage of species that can exploit hard-bottom habitats surrounded by sandy plains. Our results raise many questions about the influences of dispersal and oceanographic conditions on recruitment to hard substrata.
机译:海洋中人为地基的数量-诸如石油钻机和海上可再生能源发电机之类的结构-正在增加。这些结构在以前由沙子或泥浆为主的地区提供了硬底栖息地,因此它们有可能改变物种分布或充当其他硬底栖息地之间的“垫脚石”。因此,重要的是要了解哪些因素会影响这些地点招募的底栖动物的组成和数量。我们研究了2014-2015年在俄勒冈州南部海岸的一块大岩石礁石(约60 m等深处)上不同距离部署在硬质地层(结垢板)的募集情况。招聘以橡子藤壶Hesperibalanus hesperius为主。在2014年的大部分研究期间,部署地点附近均存在反气旋涡。但是,2014年8月至2014年10月上旬,异常高的H. hesperius募集与涡流消散,底部电流变慢以及正收敛指数相吻合,这表明来自附近地区的H. hesperlus幼虫可能已经积累并保留在我们附近。学习场所。其他无柄物种,包括水合体和苔藓动物,以低丰度被募集到结垢小组,这些物种大多数具有远距离分散和快速生长。在结垢板上观察到的可移动无脊椎动物包括腹足动物和裸bra科动物,其中大多数还具有长距离分散和快速生长的特点,并且是成年动物的食肉动物。因此,一个具有两个营养级别的社区在相对较短的时间段(<12周)内聚集在了污垢板上。没有一个邻近岩石礁的常见硬底物种被召集到面板上,这表明没有专门的物种组合可以利用被沙质平原包围的硬底栖息地。我们的结果提出了许多问题,这些问题涉及散布和海洋条件对招募硬地层的影响。

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