Integrative Biology, University of South Florida, Tampa, FL, USA.
Atmospheric and Oceanic Sciences, Princeton University, Princeton, NJ, USA.
Sci Rep. 2023 Feb 9;13(1):2292. doi: 10.1038/s41598-023-27955-z.
Oceanic ctenophores are widespread predators on pelagic zooplankton. While data on coastal ctenophores often show strong top-down predatory impacts in their ecosystems, differing morphologies, prey capture mechanisms and behaviors of oceanic species preclude the use of coastal data to draw conclusion on oceanic species. We used high-resolution imaging methods both in situ and in the laboratory to quantify interactions of Ocyropsis spp. with natural copepod prey. We confirmed that Ocyropsis spp. uses muscular lobe contraction and a prehensile mouth to capture prey, which is unique amongst ctenophores. This feeding mechanism results in high overall capture success whether encountering single or multiple prey between the lobes (71 and 81% respectively). However, multiple prey require several attempts for successful capture whereas single prey are often captured on the first attempt. Digestion of adult copepods takes 44 min at 25 °C and does not vary with ctenophore size. At high natural densities, we estimate that Ocyropsis spp. consume up to 40% of the daily copepod standing stock. This suggests that, when numerous, Ocyropsis spp. can exert strong top-down control on oceanic copepod populations. At more common densities, these animals consume only a small proportion of the daily copepod standing stock. However, compared to data from pelagic fishes and oceanic medusae, Ocyropsis spp. appears to be the dominant copepod predator in this habitat.
大洋栉水母是浮游动物的广泛捕食者。虽然关于沿海栉水母的数据通常显示出它们在生态系统中强烈的自上而下的捕食影响,但由于海洋物种的形态、猎物捕获机制和行为不同,不能用沿海数据来推断海洋物种。我们使用高分辨率的原位和实验室成像方法来量化 Ocyropsis spp. 与天然桡足类猎物的相互作用。我们证实,Ocyropsis spp. 使用肌肉瓣收缩和可抓握的口来捕获猎物,这在栉水母中是独特的。这种摄食机制导致整体捕获成功率很高,无论是在瓣间遇到单个还是多个猎物(分别为 71%和 81%)。然而,多个猎物需要几次尝试才能成功捕获,而单个猎物通常在第一次尝试时就被捕获。在 25°C 下,成年桡足类的消化时间为 44 分钟,与栉水母的大小无关。在自然高密度下,我们估计 Ocyropsis spp. 每天最多可消耗 40%的桡足类现存量。这表明,当数量众多时,Ocyropsis spp. 可以对海洋桡足类种群施加强烈的自上而下的控制。在更常见的密度下,这些动物只消耗桡足类现存量的一小部分。然而,与来自浮游鱼类和海洋水母的数据相比,Ocyropsis spp. 似乎是这种生境中桡足类的主要捕食者。