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首页> 外文期刊>The European Journal of Neuroscience >Neurogenetics of food anticipation.
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Neurogenetics of food anticipation.

机译:食物预期的神经遗传学。

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摘要

Circadian clocks enable the organisms to anticipate predictable cycling events in the environment. The mechanisms of the main circadian clock, localized in the suprachiasmatic nuclei of the hypothalamus, involve intracellular autoregulatory transcriptional loops of specific genes, called clock genes. In the suprachiasmatic clock, circadian oscillations of clock genes are primarily reset by light, thus allowing the organisms to be in phase with the light-dark cycle. Another circadian timing system is dedicated to preparing the organisms for the ongoing meal or food availability: the so-called food-entrainable system, characterized by food-anticipatory processes depending on a circadian clock whose location in the brain is not yet identified with certainty. Here we review the current knowledge on food anticipation in mice lacking clock genes or feeding-related genes. The food-entrainable clockwork in the brain is currently thought to be made of transcriptional loops partly divergent from those described in the light-entrainable suprachiasmatic nuclei. Possible confounding effects associated with behavioral screening of meal anticipation in mutant mice are also discussed.
机译:昼夜节律使生物能够预测环境中可预测的循环事件。昼夜节律的主要机制位于下丘脑上眼睑上核,涉及特定基因的细胞内自调节转录环,称为时钟基因。在视交叉上时钟中,时钟基因的昼夜节律振荡主要由光复位,因此使生物体与明暗循环同相。另一种昼夜节律计时系统专用于为持续的进餐或食物供应准备生物体:所谓的食物可携带系统,其特征在于取决于昼夜节律的食物预期过程,该昼夜节律在大脑中的位置尚未确定。在这里,我们回顾了缺乏时钟基因或与喂养有关的基因的小鼠对食物预期的最新知识。目前认为,食物中可携带食物的发条是由转录环构成的,该转录环与光携带性视交叉上核中描述的转录环部分不同。还讨论了与突变小鼠进食预期行为筛选有关的可能的混杂效应。

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