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几乎像鲸鱼一样——海鸟中首次出现虹吸进食的证据。

Almost like a whale - first evidence of suction feeding in a seabird.

机构信息

Centre d'Ecologie Fonctionnelle et Evolutive, UMR 5175, CNRS - Université de Montpellier - Université Paul-Valéry Montpellier - EPHE, 1919 route de Mende, 34293 Montpellier 5, France

Norwegian Polar Institute, Fram Centre, PB 6606 Langnes, 9296 Tromsø, Norway.

出版信息

J Exp Biol. 2018 Jul 1;221(Pt 13):jeb182170. doi: 10.1242/jeb.182170.

Abstract

Little auks () are one of the most numerous seabird species in the world and feed primarily on copepods in arctic waters. Their high daily energy requirements leave them vulnerable to current changes in the arctic plankton community, where a smaller, less-profitable copepod species () becomes increasingly abundant. Little auks have been estimated to require ∼60,000 copepods per day, necessitating prey capture rates of ∼6 copepods per second underwater. To achieve such performance, it has been suggested that little auks capture their prey by (non-visual) filter feeding. We tested this hypothesis by exposing little auks to varying copepod densities within a shallow experimental pool and filming their prey capture behaviour. At none of the copepod densities tested did birds filter feed. Instead, all birds captured copepods by what we identified as visually guided suction feeding, achieved through an extension of their sub-lingual pouch. Suction feeding is very common in fish and marine mammals, but to the best of our knowledge, this is the first time that it has been specifically identified in a seabird species. While presumably less efficient than filter feeding, this behaviour may allow little auks to foster higher resilience when facing the consequences of arctic climate change.

摘要

绒鸭(Little auk)是世界上数量最多的海鸟之一,主要以北极水域的桡足类动物为食。它们高的日能量需求使它们易受北极浮游生物群落变化的影响,在那里,一种更小、利润更低的桡足类动物()变得越来越丰富。据估计,绒鸭每天需要大约 60000 只桡足类动物,这就需要在水下每秒捕获大约 6 只桡足类动物。为了实现这种性能,有人认为绒鸭通过(非视觉)过滤来捕食它们的猎物。我们通过在一个浅实验池内暴露于不同的桡足类动物密度来测试这个假说,并拍摄它们的猎物捕获行为。在测试的所有桡足类动物密度下,鸟类都没有进行过滤式进食。相反,所有鸟类都通过我们识别出的视觉引导的抽吸式进食来捕获桡足类动物,这是通过它们舌下囊的伸展来实现的。抽吸式进食在鱼类和海洋哺乳动物中非常普遍,但据我们所知,这是它首次在海鸟物种中被明确识别。虽然这种行为可能不如过滤式进食有效率,但它可以使绒鸭在面对北极气候变化的后果时具有更高的恢复力。

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