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Effects of seawater transfer and fasting on the endocrine and biochemical growth indices in juvenile chum salmon (Oncorhynchus keta)

机译:海水转移和禁食对幼鲑的内分泌和生化生长指数的影响

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Insulin-like growth factor (IGF)-I, IGF-binding protein (IGFBP)-1 and RNA/DNA ratio are endocrine and biochemical parameters used as growth indices in fish, however, they are subjected to environmental modulation. Chum salmon (Oncorhynchus keta) migrate from freshwater (FW) to seawater (SW) at fry/juvenile stage weighing around 1 g and suffer growth-dependent mortality during the early phase of their marine life. In order to reveal environmental modulation of the IGF/IGFBP system and establish a reliable growth index for juvenile chum salmon, we examined effects of SW transfer and fasting on IGF-I, IGFBP-1 and RNA/DNA ratio, and correlated them to individual growth rate. Among serum IGF-I, liver and muscle igf-1, igfbp-1a, igfbp-1b and RNA/DNA ratio examined, muscle RNA/DNA ratio and muscle igfbp-1a responded to SW transfer. Serum IGF-I, liver igf-1 and liver RNA/DNA ratio were sensitive to nutritional change by being reduced in 1 week in both FW and SW while muscle igf-1 was reduced 2 weeks after fasting. In contrast, igfbp-1a in both tissues was increased by 2 weeks of fasting and igfbp-1b in the liver of SW fish was increased in 1 week. These results suggest that the sensitivity of igf-1 and igfbp-1s to fasting differs between tissues and subtypes, respectively. When chum salmon juveniles in SW were marked and subjected to feeding or fasting, serum IGF-I showed the highest correlation with individual growth rate. Liver igfbp-1a and -1b, and muscle igf-1 exhibited moderate correlation coefficients with growth rate. These results show that serum IGF-I is superior to the other parameters as a growth index in juvenile chum salmon in term of its stability to salinity change, high sensitivity to fasting and strong relationship with growth rate. On the one hand, when collecting blood from chum salmon fry/juveniles is not practical, measuring liver igfbp-1a and -1b, or/and muscle igf-1 is an alternative. (C) 2016 Elsevier Inc. All rights reserved.
机译:胰岛素样生长因子(IGF)-I,IGF结合蛋白(IGFBP)-1和RNA / DNA比例是鱼类的内分泌和生化参数,可作为鱼类的生长指标,但是它们受到环境的调节。鲑鱼(Oncorhynchus keta)在鱼苗/幼鱼期重约1 g时从淡水(FW)迁移到海水(SW),并在其海洋生物的早期阶段遭受依赖于生长的死亡率。为了揭示环境对IGF / IGFBP系统的调节并建立可靠的幼鲑鱼生长指数,我们研究了SW转移和禁食对IGF-I,IGFBP-1和RNA / DNA比率的影响,并将其与个体相关增长率。在血清IGF-I,肝和肌肉igf-1,igfbp-1a,igfbp-1b和RNA / DNA比率中,肌肉RNA / DNA比率和igfbp-1a对SW转移有反应。血清IGF-I,肝脏igf-1和肝脏RNA / DNA比例对营养变化敏感,因为禁食后2周FW和SW均降低,而肌肉igf-1降低2周。相反,禁食2周后,两个组织中的igfbp-1a均增加,SW鱼肝脏中的igfbp-1b则在1周内增加。这些结果表明,igf-1和igfbp-1s对禁食的敏感性分别在组织和亚型之间有所不同。当西南鲑的鲑鱼幼鱼被标记并进食或禁食时,其血清IGF-I与个体生长率的相关性最高。肝igfbp-1a和-1b,以及肌肉igf-1与生长速率呈中等相关系数。这些结果表明,就其对盐度变化的稳定性,对禁食的高敏感性以及与生长速率的强关系而言,血清IGF-I在幼稚鲑的生长指数方面优于其他参数。一方面,当从密宗鲑鱼苗/幼鱼中采集血液不切实际时,测量肝脏igfbp-1a和-1b或/和肌肉igf-1是另一种选择。 (C)2016 Elsevier Inc.保留所有权利。

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