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Ecological features and swimming capabilities of deep-sea sharks from New Zealand

机译:新西兰深海鲨鱼的生态特征和游泳能力

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Currently the ecology of deep-water sharks is poorly documented, especially in situ information for these elusive species are lacking. In this study, stereo-Baited Remote Underwater Videos (stereo-BRUVs) were deployed to collect ecological data from New Zealand deep-sea sharks. The results showed differences in abundance between species, with Etmopterus granulosus (Etmopteridae) found in greatest numbers. Moreover, the known depth range increased for Scymnodon macracanthus (Centrophiridae). Deep-sea shark species were generally found to swim at slower cruise speeds (0.36 +/- 0.04 m s(-1)) than their shallow-water counterparts (0.63 +/- 0.05 m s(-1)). However, the swimming speed of deep-sea sharks was clearly not uniform, with some species displaying higher cruise swimming speeds than others. The fastest sharks (Centrophorus harrissoni, Etmopterus granulosus and Etmopterus moileri) had swimming abilities comparable to benthic shallow water sharks (0.48 +/- 0.02 m s(-1)). The higher cruise swimming speed in the family Etmopteridae could be an advantage for these luminous sharks if they follow isolumes to match their ventral light intensity with the down-welling light of their environment. This study revealed that alternative non-destructive methods can be effective for ecological studies of deep-sea marine fauna.
机译:目前,深水鲨的生态记录不足,特别是原位信息缺乏这些难题。在这项研究中,部署了立体声诱饵远程水下视频(立体声BRUV),以收集来自新西兰深海鲨鱼的生态数据。结果表明,物种之间的丰富差异,Etmopterus颗粒(Etmopteridae)以最大数量发现。此外,已知的深度范围增加了Scymnodon Macracanthus(Centrophiridae)。通常发现深海鲨鱼种以较慢的巡航速度游泳(0.36 +/- 0.04 m S(-1)),而不是其浅水对应物(0.63 +/- 0.05 m s(-1))。然而,深海鲨鱼的游泳速度显然不均匀,有些物种展示比其他人更高的巡航游泳速度。最快的鲨鱼(Centrophorus Harrissoni,Etmopterus granulosus和Etmopterus Moileri)的游泳能力可与底栖浅水鲨(0.48 +/- 0.02 m s(-1))相当。如果他们遵循孤立板以与其环境的下行光线遵循孤立线,则Etmopteridae的较高巡航游泳速度可能是这些发光鲨的优势。本研究表明,替代的非破坏性方法可以对深海海洋动物群生态研究有效。

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