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首页> 外文期刊>Aquaculture >Effects of light regime on larvae survival, growth and settling behavior of hatchery reared American lobster (Homarus americanus)
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Effects of light regime on larvae survival, growth and settling behavior of hatchery reared American lobster (Homarus americanus)

机译:光照对孵化场饲养的美国龙虾幼体存活,生长和沉降行为的影响

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摘要

Throughout the world, several efforts currently exist for restocking clawed lobster (Homarus sp.) by releasing mass amounts of postlarvae in the wild. Therefore, optimization of hatchery techniques and evaluation of their influence on lobster postlarvae behavior at release time are of interest. This study looked at the effects of light regime (photoperiod and light intensity) on growth, survival, and behavior of American lobster postlarvae (stage IV) at release time. Results showed that photophase length did not induce any significant differences in growth and survival at 100 lx. Light intensity did not affect larval development at 16 h photophase. Results showed a significant interaction between the two factors (photoperiod and light intensity) on larval survival, but not on growth. When compared to other studies, our results indicate that the feeding time (night vs. day) may be of importance for optimizing growth and survival of early larvae. Behavior results clearly demonstrated that the age of the lobster at postlarvae stage IV had more influence than the day length or light intensity, and that the light intensity induced more variability than the day length. The results suggest that a light regime of 16 h photophase at 1000 lx light intensity, both survival and settling behavior at release time. (C) 2015 Elsevier B.V. All rights reserved.
机译:在世界范围内,目前存在一些通过在野外释放大量幼体来补充螯龙虾(Homarus sp。)的努力。因此,孵化场技术的优化及其在放养时对龙虾幼体行为的影响的评估是令人关注的。这项研究研究了光照状态(光周期和光照强度)对释放时美国龙虾后期幼体(IV期)的生长,存活和行为的影响。结果表明,光相长度在100 lx时未引起生长和存活的任何显着差异。在16 h的光期,光强度不影响幼虫的发育。结果表明,两个因素(光周期和光照强度)之间的显着相互作用对幼虫的存活率,但对生长没有影响。与其他研究相比,我们的结果表明,喂食时间(夜晚与白天)可能对优化早期幼虫的生长和存活至关重要。行为结果清楚地表明,在IV幼虫期后,龙虾的年龄比日长或光照强度具有更大的影响力,并且光照强度比日长诱导的变异性更大。结果表明,在1000 lx的光照强度下,光照时间为16 h的光态,在释放时的存活和沉降行为均如此。 (C)2015 Elsevier B.V.保留所有权利。

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