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首页> 外文期刊>Aquaculture >Trade-offs between timing of metamorphosis and grow-out performance of a marine caridean shrimp juveniles and its relevance for aquaculture
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Trade-offs between timing of metamorphosis and grow-out performance of a marine caridean shrimp juveniles and its relevance for aquaculture

机译:狂欢虾青少年变态及成长性能与越来越慢的权衡及其对水产养殖的相关性

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Information on the aquaculture performance of marine caridean shrimp is still scarce when compared with that of freshwater species (e.g. Macrobrachium spp.) or penaeids. Moreover, most studies addressing shrimp aquaculture focus either larval performance or juvenile grow-out, with the vast majority overlooking the potential existence of carry-over effects from one life stage to the next. Such effects in phenotypic traits may be expressed when species undergo dramatic shifts, such as at metamorphosis. The present study evaluated the existence of potential trade-offs between the timing of metamorphosis and the grow-out performance displayed by juvenile marine caridean shrimp using Lysmata seticaudata, a marine ornamental species, as model. Larvae that delayed metamorphosis for longer periods (termed as late settlers -LS) gave origin to significantly larger sized postlarvae (7.37 +/- 0.25mm total length), than that displayed by early or middle settlers (ES and MS, 6.95 +/- 0.28mm and 7.02 +/- 0.24 mm, respectively). However, at the end of the grow-out period juvenile shrimp originating from LS postlarvae displayed a significantly smaller TL (10.38 +/- 0.82 mm) than that displayed from conspecifics originating from ES and MS (11.20 +/- 1.02 and 11.22 +/- 0.62 mm, respectively). The larger size attained by L. seticaudata post-larvae originating from specimens that delayed metamorphosis (LS) is likely achieved by trading-off endogenous energetic reserves that, once allocated to delay the transition to benthic life will no longer be available to help fueling early juvenile growth. The present work suggests that a detailed record on the timing of metamorphosis can be a more reliable proxy to access the grow-out performance of juvenile marine caridean shrimp than postlarval size at metamorphosis. An optimal aquaculture of organisms with complex life-cycles, such as decapod crustaceans, relies on the detailed knowledge of each life stage performance, as the exposure to suboptimal conditions during early life stages may give origin to phenotypic traits that are carried-over and only displayed later in the life cycle (e.g. post-metamorphosis).
机译:与淡水种类(例如大鼠SPP)或penaeids相比,有关海洋胸草虾的水产养殖表现的信息仍然稀缺。此外,大多数研究致力于虾水产养殖的研究重点尊重幼虫或少年成长,绝大多数忽略了从一个人寿期到下一个生命阶段的随持续影响的潜在存在。当物种经历戏剧性偏移时,可以表达表型性状的这种效果,例如在变态下。本研究评估了使用Lysmata Seticaudata,海洋装饰物种作为模型的少年海洋狡猾的虾的定时和少年海洋讽刺虾所显示的潜在权衡的存在。幼虫,延迟变态的时间较长时期(被称为晚期定居者-LS)使原点呈现出明显更大的Postlarvae(7.37 +/- 0.25mm),而不是早期或中间定居者显示(ES和MS,6.95 +/- 0.28mm和7.02 +/- 0.24 mm)。然而,在繁殖时期的末端,源自LS Postlarvae的少年虾显示出明显较小的T1(10.38 +/- 0.82mm),其来自源自ES和MS的Conspecifics(11.20 +/- 1.02和11.22 + / - 分别为0.62毫米)。 L. Seticaudata患者源于延迟变态(LS)的标本达到的较大尺寸可能是通过交易的内源性能量储备来实现,其中一旦分配延迟向终身生活的过渡将不再可用于提前加油少年增长。目前的作品表明,在变态的时序上的详细记录可以是更可靠的代理,以便在变态下的比较大小的少年海洋讽刺虾的成长性能方面是更可靠的代理。具有复杂生命周期的有机体的最佳养殖,例如甲板甲壳类动物,依赖于每个寿命阶段性能的详细知识,因为早期生命阶段的暴露于次优病症可能会产生源于携带的表型特征稍后在生命周期(例如,变态后)。

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