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VacuSIP, an Improved InEx Method for In Situ Measurement of Particulate and Dissolved Compounds Processed by Active Suspension Feeders

机译:VacuSIP,一种改进的InEx方法,用于主动悬浮喂料机处理的颗粒和溶解化合物的原位测量

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摘要

Benthic suspension feeders play essential roles in the functioning of marine ecosystems. By filtering large volumes of water, removing plankton and detritus, and excreting particulate and dissolved compounds, they serve as important agents for benthic-pelagic coupling. Accurately measuring the compounds removed and excreted by suspension feeders (such as sponges, ascidians, polychaetes, bivalves) is crucial for the study of their physiology, metabolism, and feeding ecology, and is fundamental to determine the ecological relevance of the nutrient fluxes mediated by these organisms. However, the assessment of the rate by which suspension feeders process particulate and dissolved compounds in nature is restricted by the limitations of the currently available methodologies. Our goal was to develop a simple, reliable, and non-intrusive method that would allow clean and controlled water sampling from a specific point, such as the excurrent aperture of benthic suspension feeders, in situ. Our method allows simultaneous sampling of inhaled and exhaled water of the studied organism by using minute tubes installed on a custom-built manipulator device and carefully positioned inside the exhalant orifice of the sampled organism. Piercing a septum on the collecting vessel with a syringe needle attached to the distal end of each tube allows the external pressure to slowly force the sampled water into the vessel through the sampling tube. The slow and controlled sampling rate allows integrating the inherent patchiness in the water while ensuring contamination free sampling. We provide recommendations for the most suitable filtering devices, collection vessel, and storing procedures for the analyses of different particulate and dissolved compounds. The VacuSIP system offers a reliable method for the quantification of undisturbed suspension feeder metabolism in natural conditions that is cheap and easy to learn and apply to assess the physiology and functional role of filter feeders in different ecosystems.
机译:底栖悬浮饲养者在海洋生态系统的功能中起着至关重要的作用。通过过滤大量水,去除浮游生物和碎屑以及排出颗粒和溶解的化合物,它们成为底栖-上层耦合的重要媒介。准确测量悬浮饲料(例如海绵,海鞘,多毛类动物,双壳类动物)去除和排泄的化合物,对于研究其生理学,新陈代谢和进食生态至关重要,并且对于确定由微生物介导的养分通量的生态相关性至关重要这些生物。但是,悬浮喂食器自然处理颗粒和溶解化合物的速率的评估受到当前可用方法的限制。我们的目标是开发一种简单,可靠且非侵入式的方法,该方法可从特定点(例如,底栖悬架进料器的外部孔)现场进行清洁且受控的水采样。我们的方法允许通过使用安装在定制操纵器设备上的细管同时仔细地放置在被采样生物的呼气孔内的方式来对被采样生物的吸入和呼出水进行采样。用连接到每个管远端的注射器针头刺穿收集容器上的隔膜,使外部压力可以缓慢地将采样水通过采样管推入容器。缓慢而受控的采样率可以整合水中固有的斑点,同时确保无污染采样。我们为最适合的过滤设备,收集容器以及用于分析不同颗粒和溶解化合物的存储程序提供建议。 VacuSIP系统提供了一种可靠的方法来定量自然条件下未扰动的悬浮喂食器代谢,该方法便宜且易于学习,可用于评估滤嘴喂食器在不同生态系统中的生理和功能作用。

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