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首页> 外文期刊>Fish Physiology and Biochemistry >Molecular endocrine changes of Gh/Igf1 axis in gilthead sea bream (Sparus aurata L.) exposed to different environmental salinities during larvae to post-larvae stages
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Molecular endocrine changes of Gh/Igf1 axis in gilthead sea bream (Sparus aurata L.) exposed to different environmental salinities during larvae to post-larvae stages

机译:在幼虫到幼虫后阶段暴露于不同环境盐度的金头鲷(Sparus aurata L.)中Gh / Igf1轴的分子内分泌变化

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摘要

The influence of acclimation of the euryhaline gilthead sea bream (Sparus aurata) larvae/post-larvae to brackish water on growth, energetic contents, and mRNA levels of selected hormones and growth-regulating hypothalamic neurohormones was assessed. Specimens from 49 days post-hatching were acclimated during 28 days to two different environmental salinities: 38 and 20 psu (as brackish water). Both groups were then transferred to 38 psu and acclimated for an additional week. Early juveniles were sampled after 28 days of acclimation to both salinities and one week after transfer to 38 psu. Pituitary adenylate cyclase-activating peptide (adcyap1; pacap), somatostatin-I (sst1), growth hormone (gh1), insulin-like growth factor-I (igf1), and prolactin (prl) mRNA expression were all studied by QPCR. Post-larvae acclimated to 20 psu showed better growth performance and body energetic content than post-larvae maintained at 38 psu. prl, adcyap1, and igf1 mRNA expression levels increased in 20-psu-acclimated post-larvae but decreased upon transfer to 38 psu. GH1 expression did not show significant changes under both experimental conditions. Our results suggested an enhanced general performance for post-larvae in brackish water, supported by the actions of adcyap1, igf1, and prl.
机译:评估了淡水欧ha金丝鱼(Sparus aurata)幼虫/幼鱼适应微咸水对所选激素的生长,能量含量,mRNA水平和调节下丘脑神经激素的影响。孵化后49天的标本在28天内适应两种不同的盐度:38和20 psu(微咸水)。然后将两组转移至38 psu,再适应一周。在适应盐度28天后和转移到38 psu一周后,对早期幼虫进行采样。垂体腺苷酸环化酶激活肽(adcyap1; pacap),生长抑素I(sst1),生长激素(gh1),胰岛素样生长因子I(igf1)和催乳素(prl)mRNA表达均通过QPCR研究。适应于20 psu的幼虫显示出比维持38 psu的幼虫更好的生长性能和身体能量含量。 prl,adcyap1和igf1 mRNA表达水平在20 psu适应的幼虫后增加,但在转移至38 psu后降低。 GH1表达在两个实验条件下均未显示明显变化。我们的研究结果表明,在adcyap1,igf1和prl的作用下,微咸水中幼虫后的一般性能增强。

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