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Deep-reef fish assemblages of the Great Barrier Reef shelf-break (Australia)

机译:大堡礁陆架断裂带的深礁鱼群(澳大利亚)

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摘要

Tropical mesophotic and sub-mesophotic fish ecology is poorly understood despite increasing vulnerability of deeper fish assemblages. Worldwide there is greater fishing pressure on continental shelf-breaks and the effects of disturbances on deeper fish species have not yet been assessed. Difficult to access, deeper reefs host undocumented fish diversity and abundance. Baited Remote Underwater Video Stations (BRUVS) with lights were used to sample deeper habitats (54–260 m), in the Great Barrier Reef (GBR), Australia. Here we describe fish biodiversity, relative abundance and richness, assessing the prediction that depth would drive assemblage structure in the GBR. Distinct groups of fishes were found with depth whilst overall richness and abundance decreased steeply between 100 and 260 m. Commercially-valuable Lutjanidae species from Pristipomoides and Etelis genera, were absent from shallower depths. Few fish species overlapped between adjacent depth strata, indicating unique assemblages with depth. We also detected new location records and potential new species records. The high biodiversity of fish found in shelf-break environments is poorly appreciated and depth is a strong predictor of assemblage composition. This may pose a challenge for managers of commercial fisheries as distinct depth ranges of taxa may translate to more readily targeted habitats, and therefore, an inherent vulnerability to exploitation.
机译:尽管深层鱼类种群的脆弱性日益增加,但对热带中生和亚中生鱼类的生态学了解甚少。在世界范围内,大陆架断裂的捕捞压力更大,而且尚未评估干扰对更深鱼类的影响。难以进入的更深的珊瑚礁拥有无证鱼类多样性和丰富性。带灯光的诱饵远程水下视频台(BRUVS)被用来对澳大利亚大堡礁(GBR)的较深栖息地(54–260μm)进行采样。在这里,我们描述了鱼类的生物多样性,相对丰度和丰富度,并评估了深度将驱动GBR集合结构的预测。发现不同种类的鱼类深度较大,而总的丰富度和丰度在100至260μm之间急剧下降。在较浅的深度没有普里斯提莫伊德斯(Pristipomoides)和埃特里斯(Etelis)属的具有商业价值的Lutjanidae物种。很少的鱼类物种在相邻的深度层之间重叠,表明具有深度的独特组合。我们还检测到新的位置记录和潜在的新物种记录。在架子破裂的环境中发现的鱼类的高生物多样性却鲜为人知,并且深度是组合物组成的有力预测指标。这可能对商业渔业的管理者构成挑战,因为不同种类的分类单元可能转化为更容易成为目标的生境,因此,对开发具有固有的脆弱性。

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