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光周期影响虹鳟幼鱼(Oncorhynchus mykiss)的生长速率和血浆胰岛素样生长因子-I水平。

Photoperiod influences growth rate and plasma insulin-like growth factor-I levels in juvenile rainbow trout, Oncorhynchus mykiss.

作者信息

Taylor J F, Migaud H, Porter M J R, Bromage N R

机构信息

Institute of Aquaculture, University of Stirling, Stirling, Scotland, FK9 4LA, UK.

出版信息

Gen Comp Endocrinol. 2005 May 15;142(1-2):169-85. doi: 10.1016/j.ygcen.2005.02.006.

Abstract

The effect of different photoperiod regimes and the subsequent influence of melatonin on growth and insulin-like growth factor-I (IGF-I) were assessed in juvenile rainbow trout. In Experiment 1, triplicate groups of all female underyearling rainbow trout were exposed to one of three photoperiods; simulated natural photoperiod (SNP), constant short-days (LD 8:16), or constant long-days (LD 18:6) from June to December 2000 under ambient water temperatures. Fish exposed to LD 18:6 grew to a significantly heavier mean weight than the other treatments. Regression analysis showed a strong correlation between circulating plasma IGF-I, growth rate and temperature. Furthermore, it was apparent that fish exposed to LD 18:6 expressed significantly higher circulating levels of IGF-I. In a second experiment, duplicate groups of all female yearling trout were exposed to one of three photoperiods; SNP, LD 8:16, or constant light (LL), with sub groups receiving either a slow-release melatonin implant (18 mg), sham implant or left intact (control). LL increased growth rate in controls, reaching a significantly greater weight than SNP or LD 8:16 photoperiods but did not affect circulating IGF-I levels. Melatonin implants reduced growth rate in all photoperiod treatments below that of their respective controls but again did not affect circulating IGF-I levels. No differences in growth rate were found in implanted fish between photoperiods suggesting that a diel cycle of melatonin is necessary for the perception of daylength. These results would indicate that extended photoperiods (LD 18:6) may cause direct photostimulation of growth through up-regulation of IGF-I production. In contrast, in the absence of a changing diel melatonin signal, growth appeared to be maintained by a possible underlying endogenous rhythm, which was phase advanced under LL, as such plasma IGF-I levels simply reflected growth rate rather than photostimulation of the somatotropic axis. Overall, these findings indicate that measuring plasma IGF-I may be a useful tool for studying environmental influences on growth in rainbow trout.

摘要

在幼年虹鳟鱼中评估了不同光周期模式的影响以及随后褪黑素对生长和胰岛素样生长因子-I(IGF-I)的影响。在实验1中,将所有雌性一岁以下虹鳟鱼的三个重复组暴露于三种光周期之一;在2000年6月至12月期间,在环境水温下模拟自然光周期(SNP)、恒定短日照(LD 8:16)或恒定长日照(LD 18:6)。暴露于LD 18:6的鱼生长至显著更重的平均体重,高于其他处理组。回归分析表明,循环血浆IGF-I、生长速率和温度之间存在强相关性。此外,显然暴露于LD 18:6的鱼表达出显著更高的循环IGF-I水平。在第二个实验中,将所有雌性一岁虹鳟鱼的两个重复组暴露于三种光周期之一;SNP、LD 8:16或恒定光照(LL),亚组接受缓释褪黑素植入物(18毫克)、假植入物或不做处理(对照)。LL提高了对照组的生长速率,体重显著高于SNP或LD 8:16光周期组,但不影响循环IGF-I水平。褪黑素植入物在所有光周期处理中均降低了生长速率,低于各自对照组,但同样不影响循环IGF-I水平。在植入鱼中,不同光周期之间未发现生长速率差异,这表明褪黑素的昼夜循环对于日长感知是必要的。这些结果表明,延长光周期(LD 18:6)可能通过上调IGF-I的产生直接光刺激生长。相比之下,在没有昼夜变化的褪黑素信号的情况下,生长似乎由可能潜在的内源性节律维持,在LL条件下该节律相位提前,因此血浆IGF-I水平仅反映生长速率,而非生长激素轴的光刺激。总体而言,这些发现表明,测量血浆IGF-I可能是研究环境对虹鳟鱼生长影响的有用工具。

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