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Selective disappearance of individuals with high levels of glycated haemoglobin in a free-living bird

机译:自由生活鸟类中糖基化血红蛋白含量高的个体的选择性消失

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摘要

Although disruption of glucose homeostasis is a hallmark of ageing in humans and laboratory model organisms, we have little information on the importance of this process in free-living animals. Poor control of blood glucose levels leads to irreversible protein glycation. Hence, levels of protein glycation are hypothesized to increase with age and to be associated with a decline in survival. We tested these predictions by measuring blood glycated haemoglobin in 274 adult collared flycatchers of known age and estimating individual probability of recapture in the following 2 years. Results show a strong decrease in glycated haemoglobin from age 1 to 5 years and an increase thereafter. Individuals with high levels of glycated haemoglobin had a lower probability of recapture, even after controlling for effects of age and dispersal. Altogether, our findings suggest that poor control of glucose homoeostasis is associated with lower survival in this free-living bird population, and that the selective disappearance of individuals with the highest glycation levels could account for the counterintuitive age-related decline in glycated haemoglobin in the early age categories.
机译:尽管破坏葡萄糖稳态是人类和实验室模型生物衰老的标志,但我们对这一过程在自由生存动物中的重要性了解甚少。血糖水平控制不佳会导致不可逆的蛋白质糖基化。因此,假设蛋白质糖基化水平随年龄增加而增加,并与存活率下降有关。我们通过测量274个已知年龄的成年领fly捕蝇器中的血糖糖化血红蛋白,并估算了接下来2年中被捕的个体概率,来检验这些预测。结果显示,从1岁到5岁,糖化血红蛋白显着减少,此后增加。糖化血红蛋白水平高的个体,即使在控制了年龄和分散的影响后,再次捕获的可能性也较低。总而言之,我们的发现表明,对葡萄糖同稳态的控制不佳与该自由鸟群的存活率较低有关,糖化水平最高的个体的选择性消失可能解释了与年龄有关的糖化血红蛋白下降与直觉相反的原因。早期年龄类别。

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