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首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Multi-parametric study of behavioural modulation in demersal decapods at the VENUS cabled observatory in Saanich Inlet, British Columbia, Canada
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Multi-parametric study of behavioural modulation in demersal decapods at the VENUS cabled observatory in Saanich Inlet, British Columbia, Canada

机译:加拿大不列颠哥伦比亚省Saanich入口的VENUS有线天文台在水下十足动物行为调制的多参数研究

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摘要

Understanding biological rhythms in benthic ecosystems and their modulation by habitat cycles has important implications for resource and ecosystem management. The recent development of permanent, multi-sensor seafloor observatories in deep-water environments provides opportunities for the in situ investigation of the behaviour of benthic organisms in relation to habitat variability. This paper describes a multi-disciplinary investigation at the VENUS observatory platform in Saanich Inlet, an intermittently anoxic fjord (Vancouver Island, Canada). A remotely operated digital camera (103 m depth) was used to document changes in the abundance of shrimp (Spirontocaris spp.) and the squat lobster (Munida quadrispina), as well as bacterial mat coverage [Beggiatoa spp.). These data were used as proxies of diel rhythms related to day-night and internal tidal cycles. Seafloor photos were acquired hourly during consecutive days, before, during and after oxygen intrusion events in the fall of 2009. In order to relate biological fluctuations to habitat cycles, bottom water pressure, temperature, dissolved oxygen, and nitrate data were also acquired from the observatory database. Periodogram analysis showed a weak internal-tide-associated rhythmicity for Spirontocaris spp. that was absent in M. quadrispina and in bacterial mat coverage. Waveform analysis confirmed the absence of any day-night fluctuation in all tested species. However, a rapid intrusion of oxygenated water at the study site influenced visual counts of species, possibly blurring detectable activity rhythms. Temperature and nitrate fluctuations were more accentuated during spring tides but cross-correlation analysis indicated an absence of species responses to these habitat variables. Results are discussed within the context of the complex oceanographic dynamics of Saanich Inlet and with respect to understanding the ecological consequences of expanding hypoxia in the global ocean.
机译:了解底栖生态系统中的生物节律及其对生境周期的调节对资源和生态系统管理具有重要意义。在深水环境中,永久性的多传感器海底天文台的最新发展为就底栖生物的行为与栖息地可变性相关的原位研究提供了机会。本文介绍了间歇性缺氧峡湾(加拿大温哥华岛)Saanich Inlet的VENUS天文台平台的多学科研究。使用遥控数码相机(深度为103 m)记录虾(Spirontocaris spp。)和深龙虾(Munida quadrispina)的丰度以及细菌垫的覆盖率(Beggiatoa spp。)。这些数据被用作与昼夜和内部潮汐周期有关的迪尔节律的代理。在2009年秋季的氧气入侵事件之前,之中和之后的连续几天,每小时采集一次海底照片。天文台数据库。周期图分析显示Spirontocaris spp的内潮相关节奏较弱。四面体分枝杆菌和细菌垫覆盖物中都没有这种细菌。波形分析证实了所有被测物种都没有昼夜波动。但是,在研究地点快速侵入的含氧水影响了物种的视觉计数,可能会模糊可检测的活动节奏。在春季潮汐期间,温度和硝酸盐的波动更加明显,但是互相关分析表明,物种对这些生境变量没有反应。在Saanich Inlet复杂的海洋动力学背景下讨论了结果,并在理解全球海洋缺氧扩大带来的生态后果方面进行了讨论。

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    School of Earth and Ocean Sciences, University of Victoria, PO Box 3065 STN CSC, Victoria, B.C., Canada V8W3V6;

    lnstituto de Ciencias del Mar (ICM-CSIC), Paseo Maritimo de la Barceloneta, 37-49, 08003 Barcelona, Spain;

    Department of Biology, University of Victoria, PO Box 3080, Victoria, B.C., Canada V8W3N5;

    CRA-ING (Agricultural Engineering Research Unit of the Agriculture Research Council), Via delta Pascolare, 16-00015 Monterotondo (Rome), Italy;

    CRA-ING (Agricultural Engineering Research Unit of the Agriculture Research Council), Via delta Pascolare, 16-00015 Monterotondo (Rome), Italy;

    lnstituto de Ciencias del Mar (ICM-CSIC), Paseo Maritimo de la Barceloneta, 37-49, 08003 Barcelona, Spain;

    School of Earth and Ocean Sciences, University of Victoria, PO Box 3065 STN CSC, Victoria, B.C., Canada V8W3V6,Department of Biology, University of Victoria, PO Box 3080, Victoria, B.C., Canada V8W3N5;

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  • 正文语种 eng
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  • 关键词

    beggiatoa; cabled ocean observatories; hypoxia; oceanographic data acquisition; rhythmic behaviour; underwater camera;

    机译:乞gia;悬索海洋天文台;低氧;海洋学数据采集;节律性行为;水下照相机;

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