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Transcriptomic Responses of Atlantic Salmon (Salmo salar) to Environmental Enrichment during Juvenile Rearing

机译:大西洋鲑(Salmo salar)在青少年饲养过程中对环境富集的转录组学响应

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摘要

Captive rearing programs (hatcheries) are often used in conservation and management efforts for at-risk salmonid fish populations. However, hatcheries typically rear juveniles in environments that contrast starkly with natural conditions, which may lead to phenotypic and/or genetic changes that adversely affect the performance of juveniles upon their release to the wild. Environmental enrichment has been proposed as a mechanism to improve the efficacy of population restoration efforts from captive-rearing programs; in this study, we examine the influence of environmental enrichment during embryo and yolk-sac larval rearing on the transcriptome of Atlantic salmon (Salmo salar). Full siblings were reared in either a hatchery environment devoid of structure or an environment enriched with gravel substrate. At the end of endogenous feeding by juveniles, we examined patterns of gene transcript abundance in head tissues using the cGRASP-designed Agilent 4×44K microarray. Significance analysis of microarrays (SAM) indicated that 808 genes were differentially transcribed between the rearing environments and a total of 184 gene ontological (GO) terms were over- or under-represented in this gene list, several associated with mitosis/cell cycle and muscle and heart development. There were also pronounced differences among families in the degree of transcriptional response to rearing environment enrichment, suggesting that gene-by-environment effects, possibly related to parental origin, could influence the efficacy of enrichment interventions.
机译:圈养计划(孵化场)通常用于高危鲑鱼种群的保护和管理工作。但是,孵化场通常会在与自然条件形成鲜明对比的环境中饲养幼鱼,这可能导致表型和/或基因变化,这些变化会在幼鱼向野外放行时对其性能产生不利影响。已经提出了环境丰富化作为提高圈养计划中人口恢复工作效力的机制;在这项研究中,我们研究了胚胎和卵黄囊幼体饲养过程中环境富集对大西洋鲑(Salmo salar)转录组的影响。在没有结构的孵化场环境或富含砾石基质的环境中饲养全兄弟姐妹。在青少年内源性喂养结束时,我们使用cGRASP设计的安捷伦4×44K微阵列检查了头部组织中基因转录本丰度的模式。微阵列(SAM)的重要性分析表明,在饲养环境之间差异转录了808个基因,该基因列表中共有184个基因本体论(GO)术语过多或不足,其中一些与有丝分裂/细胞周期和肌肉相关和心脏发育。家庭对环境养育的转录反应程度也存在明显差异,这表明逐个环境的基因效应(可能与父母亲起源有关)可能会影响富集干预措施的功效。

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