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首页> 外文期刊>Heredity: An International Journal of Genetics >Genotype-by-sex-by-diet interactions for nutritional preference, dietary consumption, and lipid deposition in a field cricket.
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Genotype-by-sex-by-diet interactions for nutritional preference, dietary consumption, and lipid deposition in a field cricket.

机译:逐饮食营养偏好,膳食消费和野生蟋蟀中的脂质沉积的基因型 - 逐饮食相互作用。

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摘要

Changes in feeding behaviour, especially the overconsumption of calories, has led to a rise in the rates of obesity, diabetes, and other associated disorders in humans and a range of animals inhabiting human-influenced environments. However, understanding the relative contribution of genes, the nutritional environment, and their interaction to dietary intake and lipid deposition in the sexes still remains a major challenge. By combining nutritional geometry with quantitative genetics, we determined the effect of genes, the nutritional environment, and their interaction on the total nutritional preference (TP), total diet eaten (TE), and lipid mass (LM) of male and female black field crickets (Teleogryllus commodus) fed one of four diet pairs (DPs) differing in the ratio of protein to carbohydrate and total nutritional content. We found abundant additive genetic variance for TP, TE, and LM in both sexes and across all four DPs, with significant genetic correlations between TE and TP and between TP and LM in males. We also found significant genotype-by-DP and genotype-by-sex-by-DP interactions for each trait and significant genotype-by-sex interactions for TE and LM. Complex interactions between genes, sex, and the nutritional environment, therefore, play an important role in nutrient regulation and lipid deposition in T. commodus. This finding may also help explain the increasing rate of obesity and the maintenance of sex differences in obesity observed across many animal species, including humans.
机译:饲养行为的变化,特别是卡路里过度公积,导致人类肥胖,糖尿病和其他相关疾病的速度和一系列居住的人类影响环境的动物。然而,了解基因,营养环境和它们与膳食摄入和性别中的脂质沉积的相对贡献仍然是一个重大挑战。通过将营养几何与定量遗传学结合,我们确定了基因,营养环境和它们对总营养偏好(TP)的相互作用,食用总饮食(TE),以及雄性和女性黑场的脂质质量(LM)的效果蟋蟀(Teleogryllus Commodus)喂食四种饮食对(DPS)中的一种,与蛋白质与碳水化合物的比例不同,并且总营养含量不同。我们发现TP,TE和LM的丰富的添加剂遗传差异,以及所有四个DPS,TE和TP之间的显着遗传相关性,以及在雄性中的TP和LM之间。我们还发现了对TE和LM的每个性状和显着基因型的逐步逐步的基因型和基因型的基因型。因此,基因,性别和营养环境之间的复杂相互作用在T. Commodus中的营养调节和脂质沉积中起重要作用。这一发现还可能有助于解释肥胖率的增加,并且在许多动物物种(包括人类)中观察到肥胖症的性别差异。

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