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Stable isotopes of H, C and N in mice bone collagen as a reflection of isotopically controlled food and water intake

机译:小鼠骨胶原蛋白H,C和N的稳定同位素作为同位素控制的食物和水摄入量的反映

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H-2/H-1 ratios in animal biomass reflect isotopic input from food and water. A 10-week controlled laboratory study raised 48 mice divided in two generations (8 mothers Mus musculus and their offspring). The mice were divided into four groups based on the combination of H-2, C-13, N-15-enriched and non-enriched food and water. Glycine, the most common amino acid in bone collagen, carried the H-2, C-13, N-15-isotopic spike in food. ANOVA data analysis indicated that hydrogen in food accounted for similar to 81 % of the hydrogen isotope inventory in collagen whereas drinking water hydrogen contributed similar to 17 %. Air humidity contributed an unspecified amount. Additionally, we monitored C-13 and N-15-enrichment in bone collagen and found strong linear correlations with the H-2-enrichment. The experiments with food and water indicate two biosynthetic pathways, namely (i) de novo creation of non-essential amino acids using hydrogen from water, and (ii) the integration of essential and non-essential amino acids from food. The lower rate of isotope uptake in mothers' collagen relative to their offspring indicates incomplete bone collagen turnover after ten weeks. The variance of hydrogen stable isotope ratios within the same cohort may limit its usefulness as a single sample proxy for archaeological or palaeoenvironmental research.
机译:动物生物质中的H-2 / H-1比例反映了食物和水的同位素输入。一个10周的受控实验室研究募集了48只小鼠分为两代(8名母亲亩的Musculus及其后代)。将小鼠基于H-2,C-13,N-15富含N-15的组合分为四组,富集的食物和水。甘氨酸,骨胶原中最常见的氨基酸,携带H-2,C-13,N-15-同位素尖峰。 ANOVA数据分析表明,食品中的氢占胶原蛋白的81%的氢同位素库存,而饮用水氢含量类似于17%。空气湿度贡献了未指明的金额。此外,我们监测骨胶原蛋白的C-13和N-15富集,并与H-2富集发现强烈的线性相关性。食品和水的实验表明了两种生物合成途径,即(i)使用水的氢气的非必需氨基酸的德诺,以及(ii)来自食物的必需和非必需氨基酸的整合。相对于其后代的母亲胶原蛋白同位素摄取率较低表明十周后的骨胶原蛋白周转不完全。同一队列内氢稳定同位素比的变化可以将其用作考古或古环境研究的单个样品代理限制。

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