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Spatial assemblage structure of shallow-water reef fish in Southwest Australia

机译:澳大利亚西南部浅水礁鱼的空间组合结构

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摘要

Bioregional categorisation of the Australian marine environment is essential to conserve and manage entire ecosystems, including the biota and associated habitats. It is important that these regions are optimally positioned to effectively plan for the protection of distinct assemblages. Recent climatic variation and changes to the marine environment in Southwest Australia (SWA) have resulted in shifts in species ranges and changes to the composition of marine assemblages. The goal of this study was to determine if the current bioregionalisation of SWA accurately represents the present distribution of shallow-water reef fishes across 2000 km of its subtropical and temperate coastline. Data was collected in 2015 using diver-operated underwater stereo-video surveys from 7 regions between Port Gregory (north of Geraldton) to the east of Esperance. This study indicated that (1) the shallow-water reef fish of SWA formed 4 distinct assemblages along the coast: one Midwestern, one Central and 2 Southern Assemblages; (2) differences between these fish assemblages were primarily driven by sea surface temperature, Ecklonia radiata cover, non-E. radiata (canopy) cover, understorey algae cover, reef type and reef height; and (3) each of the 4 assemblages were characterised by a high number of short-range Australian and Western Australian endemic species. The findings from this study suggest that 4, rather than the existing 3 bioregions would more effectively capture the shallow-water reef fish assemblage patterns, with boundaries having shifted southwards likely associated with ocean warming.
机译:澳大利亚海洋环境的生物分类对于保存和管理整个生态系统至关重要,包括生物系和相关栖息地。重要的是,这些区域最佳地定位,以有效地规划保护独特的组装。澳大利亚西南部(SWA)的最近气候变化和对海洋环境的变化导致物种范围的转变和海洋大会组成的变化。本研究的目的是确定SWA的目前的生物生物化是否准确地代表了2000公里的亚热带和温带海岸线的浅水礁鱼的目前分布。 2015年收集数据,使用潜水员运营的水下立体声视频调查,从7个地区(杰拉尔顿北部)到近河以东。这项研究表明,(1)SWA的浅水礁鱼沿着海岸形成了4个不同的装配:一个中西部,一个中央和2个南方组合; (2)这些鱼组合之间的差异主要由海表面温度,Ecklonia radiata覆盖,非e驱动。 radiata(树冠)覆盖,下层藻类盖,礁型和礁高; (3)4个组件中的每一个都是在澳大利亚澳大利亚和西部澳大利亚特有种类的大量短程。本研究的发现表明,4,而不是现有的3个生物导致更有效地捕获浅水礁鱼组合模式,边界可能与海洋变暖有关。

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