Faculty of Biosciences, Fisheries and Economy, University of Tromsø, N-9037 Tromsø, Norway.
Gen Comp Endocrinol. 2012 Sep 1;178(2):330-7. doi: 10.1016/j.ygcen.2012.06.017. Epub 2012 Jun 23.
The aim of this study was to investigate whether the seasonal feeding cycle of the anadromous Arctic charr (Salvelinus alpinus) is regulated by a lipostatic mechanism and if leptin (Lep) might act as an endocrine signal of adiposity. Offspring of anadromous Arctic charr with a body mass of 121 g were divided into two treatment groups; one was given feed in excess from March to November, and the other was fasted between April and early June and fed in excess thereafter. In the continuously fed group there was an 8-fold increase in body mass, and a doubling of percentage body fat, from March to August, after which there was no further increase. Fish in the other group lost weight and body fat during fasting, but grew rapidly on being fed, and had partially compensated for their deficit in body mass by August. Differences in percentage body fat between treatment groups were eliminated by August, providing evidence for a lipostatic regulation of feeding and energy homeostasis in Arctic charr. Neither liver total LepA gene expression nor plasma Lep concentrations correlated positively with fish adiposity, so there was no evidence that Lep acts as a signal of adiposity in this species. On the other hand, there was a strong increase in liver LepA1 gene expression at the end of the fasting period, concomitant with fat mobilization and increased plasma glucose, indicating that LepA1 may play a role in regulating metabolic processes associated with fasting.
本研究旨在探讨洄游性北极红点鲑(Salvelinus alpinus)的季节性摄食周期是否受脂ostatic 机制调节,以及瘦素(Lep)是否可能作为肥胖的内分泌信号。121 克重的洄游性北极红点鲑幼鱼分为两组;一组从三月到十一月过量投喂,另一组四月至六月初禁食,之后过量投喂。在持续投喂组中,鱼体质量从三月到八月增加了 8 倍,体脂百分比增加了一倍,之后没有进一步增加。在禁食组中,鱼体重和体脂减少,但开始投喂后生长迅速,到八月时已部分弥补了体重不足。八月时两组间体脂百分比的差异消失,证明了北极红点鲑摄食和能量平衡的脂ostatic 调节。肝总 LepA 基因表达和血浆 Lep 浓度与鱼体肥胖均无正相关,因此没有证据表明 Lep 在此物种中作为肥胖的信号。另一方面,在禁食期末,肝 LepA1 基因表达强烈增加,伴随着脂肪动员和血糖升高,表明 LepA1 可能在调节与禁食相关的代谢过程中发挥作用。