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首页> 外文期刊>Chemical Senses >No relationship between sequence variation in protein coding regions of the Tas1r3 gene and saccharin preference in rats
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No relationship between sequence variation in protein coding regions of the Tas1r3 gene and saccharin preference in rats

机译:Tas1r3基因蛋白编码区序列变异与糖精偏好的关系

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Nearly all mammalian species like sweet-tasting foods and drinks, but there are differences in the degree of 'sweet tooth' both between species and among individuals of the same species. Some individual differences can be explained by genetic variability. Polymorphisms in a sweet taste receptor (Tas1r3) account for a large fraction of the differences in consumption of sweet solutions among inbred mouse strains. We wondered whether mice and rats share the same Tas1r3 alleles, and whether this gene might explain the large difference in saccharin preference among rats. We conducted three experiments to test this. We examined DNA sequence differences in the Tas1r3 gene among rats that differed in their consumption of saccharin in two-bottle choice tests. The animals tested were from an outbred strain (Sprague-Dawley; experiment 1), selectively bred to be high- or low-saccharin consumers (HiS and LoS; experiment 2), or from inbred strains with established differences in saccharin preference (FH/Wjd and ACI; experiment 3). Although there was considerable variation in saccharin preference among the rats there was no variation in the protein-coding regions of theTas1r3 gene. DNA variants in intronic regions were detected in 1 (of 12) outbred rat with lower-than-average saccharin preference and in the ACI inbred strain, which also has a lower saccharin preference than the FH/Wjd inbred partner strain. Possible effects of these intronic nucleotide variants on Tas1r3 gene expression or the presence of T1R3 protein in taste papillae were evaluated in the ACI and FH/Wjd strains. Based upon the results of these studies, we conclude that polymorphisms in the protein-coding regions of the sweet receptor gene Tas1r3 are uncommon and do not account for individual differences in saccharin preference for these strains of rats. DNA variants in intron 4 and 5 are more common but appear to be innocuous.
机译:几乎所有的哺乳动物物种都喜欢品尝食物和饮料,但是在物种之间以及同一物种的个体之间,“甜食”的程度存在差异。一些个体差异可以通过遗传变异来解释。甜味受体(Tas1r3)中的多态性占近交小鼠品系甜液消耗差异的很大一部分。我们想知道小鼠和大鼠是否共享相同的Tas1r3等位基因,以及该基因是否可以解释大鼠之间糖精偏好的巨大差异。我们进行了三个实验对此进行了测试。我们在两瓶选择测试中检查了大鼠糖精消耗量不同的大鼠中Tas1r3基因的DNA序列差异。测试的动物来自近交品系(Sprague-Dawley;实验1),有选择地繁殖为高糖精或低糖精消费者(HiS和LoS;实验2),或来自糖精偏好具有确定差异的近交品系(FH / Wjd和ACI;实验3)。尽管大鼠中糖精的偏好存在很大差异,但Tas1r3基因的蛋白质编码区却没有差异。在1个(共12只)近交大鼠中检测到内含子区域的DNA变异,其糖精偏爱度低于平均水平,而在ACI近交品系中,其糖精偏爱度也低于FH / Wjd近交同伴品系。在ACI和FH / Wjd菌株中评估了这些内含子核苷酸变体对味觉乳头中Tas1r3基因表达或T1R3蛋白存在的可能影响。根据这些研究的结果,我们得出结论,甜味受体基因Tas1r3的蛋白质编码区域中的多态性并不常见,并且不能解释这些大鼠品系对糖精的偏好存在个体差异。内含子4和5中的DNA变体更常见,但看起来是无害的。

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