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New technology reveals the role of giant larvaceans in oceanic carbon cycling

机译:新技术揭示了巨型幼虫在海洋碳循环中的作用

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To accurately assess the impacts of climate change on our planet, modeling of oceanic systems and understanding how atmospheric carbon is transported from surface waters to the deep benthos are required. The biological pump drives the transport of carbon through the ocean’s depths, and the rates at which carbon is removed and sequestered are often dependent on the grazing abilities of surface and midwater organisms. Some of the most effective and abundant midwater grazers are filter-feeding invertebrates. Although the impact of smaller, near-surface filter feeders is generally known, efforts to quantify the impact of deeper filter feeders, such as giant larvaceans, have been unsuccessful. Giant larvaceans occupy the upper 400 m of the water column, where they build complex mucus filtering structures that reach diameters greater than 1 m. Because of the fragility of these structures, direct measurements of filtration rates require in situ methods. Hence, we developed DeepPIV, an instrument deployed from a remotely operated vehicle that enables the direct measurement of in situ filtration rates. The rates measured for giant larvaceans exceed those of any other zooplankton filter feeder. Given these filtration rates and abundance data from a 22-year time series, the grazing impact of giant larvaceans far exceeds previous estimates, with the potential for processing their 200-m principal depth range in Monterey Bay in as little as 13 days. Technologies such as DeepPIV will enable more accurate assessments of the long-term removal of atmospheric carbon by deep-water biota.
机译:为了准确评估气候变化对我们星球的影响,需要对海洋系统进行建模并了解大气中的碳如何从地表水输送到深层底栖生物。生物泵驱动碳在海洋深处的运输,碳的去除和隔离速率通常取决于地表和中层生物的掠食能力。一些最有效和最丰富的中水放牧者是饲养过滤器的无脊椎动物。尽管通常已知较小的近地表面过滤器进料器的影响,但是定量量化更深的过滤器进料器(例如巨型幼虫)的影响的努力尚未成功。巨型幼虫占据了水柱的上部400 m,在那里它们建立了直径超过1 m的复杂的粘液过滤结构。由于这些结构的脆弱性,直接测量过滤速率需要就地方法。因此,我们开发了DeepPIV,这是一种从远程操作车辆上部署的仪器,可直接测量原位过滤速率。巨型幼虫的测量速率超过任何其他浮游动物滤食器。考虑到这些过滤率和22年时间序列的丰度数据,巨型幼虫的放牧影响远远超出了先前的估计,有可能在短短13天内处理它们在蒙特利湾200米主要深度范围。 DeepPIV等技术将使人们能够更准确地评估深水生物群对大气中碳的长期清除。

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