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首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Feeding behavior and oxygen consumption of Octopus ocellatus preying on the short-neck clam Ruditapes philippinarum
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Feeding behavior and oxygen consumption of Octopus ocellatus preying on the short-neck clam Ruditapes philippinarum

机译:捕食短颈蛤仔菲律宾八达通的摄食行为和耗氧量

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We examined the feeding behavior and energy consumption of Octopus ocellatus preying on short-neck clams under experimental conditions. Observed feeding patterns of individual octopuses of 7.0-52.1 g in wet weight were classified as "pulling", "pulling-drilling-pulling" or variations of pulling and drilling. Octopuses used pulling for clams with shell lengths (SL) of 0.9-2.9 cm and a combination of pulling and drilling for clams with SL of 0.8-3.6 cm. Pulling alone resulted in a mean time for opening a clam (handling time) of 3.1 min and energy consumption of 8.0 μgO2 g-1. Pulling plus drilling involved longer handling times. Prior to drilling, octopuses showed one of two pulling strategies, "low-energy pulling" or "high-energy pulling". The latter was more similar to the type of pulling behavior seen when drilling was not used. The high-energy strategy resulted in a mean handling time of 55.4 min and an energy cost of 78.9 (μgO2 g-1. Low-energy pulling plus drilling resulted in a shorter handling time (29.5 min) and a lower energy cost (26.4 μgO2 g-1 )• We calculated the profitability (yield of energy gain per unit handling time) and energy efficiency (yield of energy gain per unit energy cost) of these feeding strategies. Pulling alone was the most efficient method in terms of profitability, whereas low-energy pulling plus drilling was the most efficient in terms of energy expenditure for young octopuses eating clams.
机译:我们研究了在实验条件下捕食短颈蛤的章鱼的摄食行为和能量消耗。湿重为7.0-52.1 g的单个章鱼的观察进食模式分为“拉动”,“拉动-钻孔-拉动”或拉动和钻孔的变化。章鱼将壳长(SL)为0.9-2.9厘米的蛤pulling用于拉动,并将SL和0.8-3.6 cm的蛤pulling用于拉动和钻孔的组合。单独拉动打开蛤lam的平均时间(处理时间)为3.1分钟,能耗为8.0μgO2g-1。拉拔钻孔需要更长的处理时间。在钻孔之前,章鱼显示了两种拉动策略之一,即“低能量拉动”或“高能量拉动”。后者与不使用钻孔时看到的拉动行为更相似。高能策略的平均处理时间为55.4分钟,能源成本为78.9(μgO2g-1)。低能拉动和钻孔可缩短处理时间(29.5分钟),降低能源成本(26.4μgO2) g-1)•我们计算了这些饲喂策略的获利能力(每单位处理时间的能量获取收益)和能源效率(每单位能量成本的能量获取收益),单靠饲养是最有效的方法,而就吃蛤lam的年轻章鱼而言,低能耗的牵引加钻孔是最有效的能耗。

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