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首页> 外文期刊>Aquaculture Research >Marine gammarids (Crustacea: Amphipoda): a new live prey to culture Octopus maya hatchlings
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Marine gammarids (Crustacea: Amphipoda): a new live prey to culture Octopus maya hatchlings

机译:海洋伽马鱼(甲壳纲:两栖类):养殖章鱼玛雅幼体的新活猎物

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The effects of feeding two alternative live prey Hyalella azteca (freshwater gammarids) and Hyale media (marine gammarids) to Octopus maya hatchlings were compared with feeding adult Artemia sp., traditionally used during the first weeks of the life cycle. Hatchlings were fed ad libitum these three live preys during the first 15days, and a paste elaborated with fresh squid and shrimp during the next 15days when hatchling can be fed prepared diets. Weight (g) and specific growth rates (% day(-1)) were determined every 15days. Octopus maya hatchlings fed with marine gammarids grew larger (6.9 +/- 0.2% day(-1)) compared with hatchlings fed Artemia sp. or freshwater gammarids (4.8 +/- 0.2% and 5.0 +/- 0.3% day(-1) respectively). Survival was also higher (92.2 +/- 6.8%) for hatchlings fed marine gammarids, than for those fed Artemia sp. (74.5 +/- 23.8%) or freshwater gammarids (41.2 +/- 21.2%). The content of acylglycerides, cholesterol and proteins in O. maya fed marine gammarids suggested a better nutrient assimilation by the hatchlings. Also, polyunsaturated fatty acids levels (EPA and DHA) were more abundant in marine gammarids, possibly contributing to the higher growth rates observed. This is the first study revealing a successful use of marine gammarids as alternative prey for octopus hatchlings culture.
机译:比较了向章鱼玛雅幼体喂养两种替代性活生食猎物Hyalella azteca(淡水伽马里德)和Hyale培养基(海洋伽马里德)与传统上在生命周期的最初几周内喂食成虫Artemia sp。的效果。在开始的15天内,随意喂食这三个活的猎物,然后在接下来的15天内,用新鲜的鱿鱼和虾精心制作糊状的饲料,以便喂食幼雏。每15天确定体重(g)和比增长率(%day(-1))。与以Artemia sp。喂养的孵化器相比,以海洋γ射线饲养的章鱼玛雅孵化器生长更大(6.9 +/- 0.2%天(-1))。或淡水gammarids(分别为4.8 +/- 0.2%和5.0 +/- 0.3%天(-1))。喂食海洋γ-线虫的幼体的存活率也比喂Artemia sp。的幼虫的存活率高(92.2 +/- 6.8%)。 (74.5 +/- 23.8%)或淡水gammarids(41.2 +/- 21.2%)。饲喂O. maya的海洋γ-内酰胺类中的酰基甘油酯,胆固醇和蛋白质的含量表明,幼体对养分的吸收更好。同样,海洋γ-内酰胺类中的多不饱和脂肪酸水平(EPA和DHA)更加丰富,可能有助于观察到更高的生长速率。这是第一项研究,揭示了成功利用海洋γ-内酰胺类作为章鱼幼体养殖的替代猎物。

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