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Rhythms and Community Dynamics of a Hydrothermal Tubeworm Assemblage at Main Endeavour Field – A Multidisciplinary Deep-Sea Observatory Approach

机译:一个主要努力领域的热液虫组合的节律和群落动力学–多学科的深海观测方法

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摘要

The NEPTUNE cabled observatory network hosts an ecological module called TEMPO-mini that focuses on hydrothermal vent ecology and time series, granting us real-time access to data originating from the deep sea. In 2011–2012, during TEMPO-mini’s first deployment on the NEPTUNE network, the module recorded high-resolution imagery, temperature, iron (Fe) and oxygen on a hydrothermal assemblage at 2186 m depth at Main Endeavour Field (North East Pacific). 23 days of continuous imagery were analysed with an hourly frequency. Community dynamics were analysed in detail for Ridgeia piscesae tubeworms, Polynoidae, Pycnogonida and Buccinidae, documenting faunal variations, natural change and biotic interactions in the filmed tubeworm assemblage as well as links with the local environment. Semi-diurnal and diurnal periods were identified both in fauna and environment, revealing the influence of tidal cycles. Species interactions were described and distribution patterns were indicative of possible microhabitat preference. The importance of high-resolution frequencies (<1 h) to fully comprehend rhythms in fauna and environment was emphasised, as well as the need for the development of automated or semi-automated imagery analysis tools.
机译:NEPTUNE有线天文台网络包含一个名为TEMPO-mini的生态模块,该模块专注于热液喷口的生态和时间序列,使我们可以实时访问来自深海的数据。在2011–2012年,TEMPO-mini首次在NEPTUNE网络上部署时,该模块在Main Endeavor Field(东北太平洋)以2186 m深度的热液组合中记录了高分辨率图像,温度,铁(Fe)和氧气。以每小时频率分析连续23天的图像。详细分析了脊突,Poly科,毕生科和棘皮科的群落动态,记录了成膜tube组合中的动物区系变化,自然变化和生物相互作用以及与当地环境的联系。在动植物和环境中都确定了半日和日期,揭示了潮汐周期的影响。描述了物种之间的相互作用,分布模式表明了可能的微生境偏好。强调了高分辨率频率(<1 h)对于充分理解动物和环境中的节律的重要性,以及开发自动或半自动图像分析工具的需要。

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