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交配行为受代谢燃料的急剧变化控制。

Mating behavior is controlled by acute changes in metabolic fuels.

作者信息

Temple Jennifer L, Schneider Jill E, Scott Deanna K, Korutz Alexander, Rissman Emilie F

机构信息

Program in Neuroscience and Department of Biology, University of Virginia, Charlottesville, Virginia 22903, USA.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2002 Mar;282(3):R782-90. doi: 10.1152/ajpregu.00383.2001.

Abstract

Mild food restriction for 48 h inhibits mating behavior in female musk shrews (Suncus murinus). However, mating behavior is restored after a 90-min feeding bout. In this series of experiments, we examined the role of metabolic fuels in this behavioral restoration. First, drugs reported to block glycolysis or fatty acid oxidation were given 2 h before mating. Both treatments inhibited mating in food-restricted females that were refed after treatment. Blood glucose levels were assessed in females that were fed ad libitum, food restricted, or food restricted and refed for 90 min. Food restriction significantly lowered blood glucose compared with ad libitum feeding or food restriction in combination with 90 min of refeeding. However, neither glucose nor fat alone could substitute for food and promote mating behavior in food-restricted females. In addition, analysis of ketone bodies and body composition in females demonstrated low or undetectable levels of these energy substrates. Our data suggest that musk shrews have relatively little stored energy. Therefore, female musk shrews rely on continuous food intake and monitor multiple cues acutely, including glucose availability and fatty acid oxidation. This ensures that mating does not occur when adequate energy is unavailable.

摘要

48小时的轻度食物限制会抑制雌性麝鼩(Suncus murinus)的交配行为。然而,在90分钟的进食后,交配行为会恢复。在这一系列实验中,我们研究了代谢燃料在这种行为恢复中的作用。首先,在交配前2小时给予据报道可阻断糖酵解或脂肪酸氧化的药物。两种处理均抑制了经处理后重新喂食的食物受限雌性的交配行为。对自由进食、食物受限或食物受限并重新喂食90分钟的雌性进行血糖水平评估。与自由进食或食物受限并结合90分钟重新喂食相比,食物限制显著降低了血糖。然而,单独的葡萄糖或脂肪都不能替代食物并促进食物受限雌性的交配行为。此外,对雌性酮体和身体组成的分析表明这些能量底物水平较低或无法检测到。我们的数据表明麝鼩储存的能量相对较少。因此,雌性麝鼩依赖持续的食物摄入,并敏锐地监测多种线索,包括葡萄糖可用性和脂肪酸氧化。这确保了在没有足够能量时不会发生交配。

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