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光周期调节年轻发育中的 Fischer 344 大鼠的饮食偏好和能量代谢,但对同年龄的 Wistar 大鼠则没有影响。

Photoperiod regulates dietary preferences and energy metabolism in young developing Fischer 344 rats but not in same-age Wistar rats.

机构信息

Laboratory of Regulation in Metabolism and Behavior, Faculty of Agriculture, Kyushu University, Hakozaki 6-10-1, Higashi-ku, Fukuoka 812-8581, Japan.

出版信息

Am J Physiol Endocrinol Metab. 2012 Sep 15;303(6):E777-86. doi: 10.1152/ajpendo.00209.2012. Epub 2012 Jul 17.

Abstract

The effects of photoperiod on dietary preference were examined using young growing Fischer 344 and Wistar rats, which are seasonal and nonseasonal breeders, respectively. Rats were provided a low-fat, high-carbohydrate diet (LFD: 66/10/24% energy as carbohydrate/fat/protein) and high-fat, low-carbohydrate diet (HFD: 21/55/24% energy as carbohydrate/fat/protein) simultaneously under long- (LD: 16 h light/day) and short-day (SD: 8 h light/day) conditions for 3 wk. Fischer 344 rats preferred the LFD to the HFD under the LD condition, whereas preference for both diets was equivalent under the SD condition. Consequently, their body weight and total energy intake exhibited 11-15 and 10-13% increases, respectively, under the LD condition. Calculation of energy intake from macronutrients revealed that rats under the LD condition consumed 20-24 and 9-13% higher energy of carbohydrates and proteins, respectively, than those under the SD condition. In contrast, Wistar rats preferred the LFD to the HFD irrespective of photoperiod and exhibited no photoperiodic changes in any parameters examined. Next, Fischer 344 rats were provided either the LFD or HFD for 3 wk under LD or SD conditions. Calorie intake was 10% higher in the rats fed the LFD than those fed the HFD under SD condition. However, rats under LD condition exhibited 5-10, 14, and 64% increases in body weight, epididymal fat mass, and plasma leptin levels, respectively, compared with those under the SD condition irrespective of dietary composition. In conclusion, photoperiod regulates feeding and energy metabolism in young growing Fischer 344 rats via the interactions with dietary macronutrient composition.

摘要

光周期对摄食偏好的影响通过分别为季节性和非季节性繁殖的年轻生长 Fischer 344 和 Wistar 大鼠进行了研究。大鼠同时提供低脂、高碳水化合物饮食(LFD:66/10/24%能量作为碳水化合物/脂肪/蛋白质)和高脂肪、低碳水化合物饮食(HFD:21/55/24%能量作为碳水化合物/脂肪/蛋白质),在长(LD:16 小时光照/天)和短(SD:8 小时光照/天)条件下持续 3 周。在 LD 条件下,Fischer 344 大鼠更喜欢 LFD 而不是 HFD,而在 SD 条件下,两种饮食的偏好是相等的。因此,它们的体重和总能量摄入分别增加了 11-15%和 10-13%。从宏量营养素计算能量摄入表明,在 LD 条件下,大鼠消耗的碳水化合物和蛋白质的能量分别比在 SD 条件下多 20-24%和 9-13%。相比之下,无论光周期如何,Wistar 大鼠都更喜欢 LFD 而不是 HFD,并且在所检查的任何参数中都没有表现出光周期变化。接下来,Fischer 344 大鼠在 LD 或 SD 条件下分别接受 LFD 或 HFD 喂养 3 周。在 SD 条件下,喂食 LFD 的大鼠的热量摄入量比喂食 HFD 的大鼠高 10%。然而,与 SD 条件下相比,无论饮食组成如何,LD 条件下的大鼠体重、附睾脂肪质量和血浆瘦素水平分别增加了 5-10%、14%和 64%。总之,光周期通过与饮食中宏量营养素组成的相互作用来调节年轻生长 Fischer 344 大鼠的摄食和能量代谢。

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