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Matching Dietary Amino Acid Balance to the In Silico-Translated Exome Optimizes Growth and Reproduction without Cost to Lifespan

机译:将膳食氨基酸平衡与硅翻译的exome匹配,优化生长和繁殖,而不是寿命

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摘要

Balancing the quantity and quality of dietary protein relative to other nutrients is a key determinant of evolutionary fitness. A theoretical framework for defining a balanced diet would both reduce the enormous workload to optimize diets empirically and represent a breakthrough toward tailoring diets to the needs of consumers. Here, we report a simple and powerful in silico technique that uses the genome information of an organism to define its dietary amino acid requirements. We show for the fruit fly Drosophila melanogaster that such "exome-matched" diets are more satiating, enhance growth, and increase reproduction relative to non-matched diets. Thus, early life fitness traits can be enhanced at low levels of dietary amino acids that do not impose a cost to lifespan. Exome matching also enhanced mouse growth, indicating that it can be applied to other organisms whose genome sequence is known.
机译:平衡膳食蛋白质相对于其他营养素的数量和质量是进化适应性的关键决定因素。一个定义均衡饮食的理论框架将减少从经验上优化饮食的巨大工作量,并代表着根据消费者需求定制饮食的突破。在这里,我们报告了一种简单而强大的电子技术,该技术利用生物体的基因组信息来定义其膳食氨基酸需求。我们对果蝇黑腹果蝇的研究表明,与不匹配的饮食相比,这种“外显子组匹配”的饮食更令人满意,促进生长,增加繁殖。因此,在不影响寿命的低水平膳食氨基酸的情况下,早期的健康特征可以得到增强。外显子组匹配也增强了小鼠的生长,表明它可以应用于基因组序列已知的其他生物体。

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