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首页> 外文期刊>BMC Evolutionary Biology >Telomere dynamics in a long-lived bird, the barnacle goose
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Telomere dynamics in a long-lived bird, the barnacle goose

机译:长病鸟类的端子动态,鹅圈鹅

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摘要

Theories of ageing predict a trade-off between metabolism, reproduction, and maintenance. Species with low investment in early reproduction are thus expected to be able to evolve more efficient maintenance and repair mechanisms, allowing for a longer potential life span (intrinsic longevity). The erosion of telomeres, the protective caps at the ends of linear chromosomes, plays an important role in cellular and organismal senescence, signalling the onset of age-related disease due to accumulation of unrepaired somatic damage. Using extensive longitudinal data from a long-term study of a natural population of barnacle geese Branta leucopsis, we investigated individual rates of telomere length changes over two years in 34 birds between 0 and 22 years of age, covering almost 80% of the species’ lifespan. We show that telomeres in this long-lived bird are very well maintained, as theoretically expected, with an average loss rate of only 5 base pairs per year among adults. We thus found no significant relationship between change in telomere length and age. However, telomeres tended to shorten at a faster pace in juveniles compared to adults. For the first time, we demonstrate a faster telomere attrition rate in females compared to males. We found no correlation between telomere loss rate and adult survival or change in body mass. Our results add further support for a link between longevity and telomere maintenance, and highlight the complexities of telomere dynamics in natural populations.
机译:老化的理论预测新陈代谢,繁殖和维护之间的权衡。预计早期繁殖投资低的物种将能够发展更有效的维护和维修机制,允许更长的潜在寿命(内在寿命)。端粒体的侵蚀,线性染色体末端的保护帽在细胞和有机衰老中起重要作用,发挥着年龄相关疾病的发作,由于未填写的躯体损伤的积累。使用广泛的纵向数据从一段长期的研究牙布鹅Branta leucopsis的自然群体研究,我们调查了在0到22岁之间的34只鸟类的两年内的各个端粒长度变化的个别率,占据了近80%的物种寿命。我们表明,这种长寿鸟的端粒在理论上非常良好地维护,成年人中每年只有5个碱基对的平均损失率。因此,我们发现端粒长度和年龄变化之间没有显着的关系。然而,与成年人相比,端粒倾向于以更快的少年缩短。我们第一次展示了与男性相比女性的超重磨损率。我们发现端粒损失率与成人存活或体重变化之间没有相关性。我们的结果为寿命和端子维护之间的联系添加了进一步的支持,并突出了自然人种群的端粒动态的复杂性。

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