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首页> 外文期刊>Aquaculture >The effect of the addition of algae feeding stimulants to artificial diets for the sea urchin Tripneustes gratilla
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The effect of the addition of algae feeding stimulants to artificial diets for the sea urchin Tripneustes gratilla

机译:在海胆中的藻类中添加藻类刺激物到人工饮食中的效果

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A key concern when developing artificial aquaculture diets is their palatability. This study investigated whether the palatability of artificial diets could be improved by incorporating a small quantity of highly preferred natural foods as feeding stimulants. The preference of Tripneustes gratilla for marine plants with which it co-occurs naturally in New South Wales, Australia, was assessed in a laboratory choice feeding experiment. T. gratilla displayed significant preference for the brown alga Ecklonia radiata over five other algae and one seagrass when they were offered simultaneously. Total protein or energy in the plants was not found to account for this preference. However, T. gratilla showed no preference among E. radiata, Sargassum linearifolium and Ulva lactuca when they were dried. Three artificial diets were made by incorporating one of each of these dried seaweeds at 5% dry weight. Although not statistically significant, T. gratilla ate more than twice as much the artificial diet containing S. linearifolium compared to the control diet containing no algae in a choice feeding experiment. In a no-choice feeding experiment, T. gratilla consumed significantly more of the Ecklonia and the Sargassum diets than the control diet despite eachof the diets containing approximately the same protein and energy levels. T. gratilla consumed 49 and 43% more protein, and 37 and 44% more energy, respectively, when fed with the Ecklonia and the Sargassum diets compared to the control diet. Juvenile T.gratilla grew significantly faster on a wet weight basis on the Sargassum diet than the control diet at an average increase of 2.4% per day. These results indicate that the small amounts of palatable seaweed added to the artificial diets act as feedingstimulants, increasing the acceptability of artificial sea urchin diets, boosting the protein and energy consumption, and significantly increasing the growth of T. gratilla. Moreover, the fast growth of T. gratilla achieved in this study also indicates that this species would be a good candidate for commercial aquaculture.
机译:发展人工水产养殖饲料时,主要关注的是它们的适口性。这项研究调查了通过掺入少量高度优选的天然食品作为饲料兴奋剂是否可以改善人工饮食的适口性。在实验室选择饲养实验中评估了Tripleneustes gratilla在澳大利亚新南威尔士自然共生的海洋植物的偏爱。当同时提供时,T。gratilla表现出对褐藻Ecklonia radiata的明显偏爱,而不是其他五种藻类和一种海草。没有发现植物中的总蛋白质或能量可以解释这种偏好。然而,当干燥时,T。gratilla在辐射的E. radiata,Sargassum linearifolium和Ulva lactuca中没有偏爱。通过掺入这些干紫菜中的每一种干重为5%的方式制成三种人造饲料。尽管在统计学上不显着,但在选择喂养实验中,格拉索螺旋杆菌的含日粮链球菌人工饲料的日粮比不含藻类的对照日粮多​​两倍。在一项非选择喂养实验中,尽管每一种日粮中的蛋白质和能量水平都大致相同,但黑麦草的日粮中食用的埃克洛尼亚和羊栖菜却比对照多得多。与对照饮食相比,饲以Ecklonia和Sargassum饮食喂养的T. gratilla分别消耗49%和43%的蛋白质,以及37和44%的更多能量。羊栖菜日粮中的湿润重生幼小卷心菜的生长明显快于对照日粮,平均每天增长2.4%。这些结果表明,添加到人工饲料中的少量可口海藻可作为饲料的刺激物,增加了人工海胆饲料的可接受性,促进了蛋白质和能量的消耗,并显着提高了草菇的生长。此外,在这项研究中实现的T. gratilla快速生长还表明该物种将是商业水产养殖的良好候选者。

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