Sibling similarity in telomere length in Adélie penguin chicks

IF 2.1 3区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Coline Marciau , Sophie Bestley , David Costantini , Olivia Hicks , Mark Hindell , Akiko Kato , Thierry Raclot , Cécile Ribout , Yan Ropert-Coudert , Frederic Angelier
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Abstract

Early life telomere length is thought to influence and predict an individual's fitness. It has been shown to vary significantly in early life compared to adulthood. Investigating the factors influencing telomere length in young individuals is therefore of particular interest, especially as the relative importance of heredity compared to post-natal conditions remains largely uncertain. Adélie penguins are eco-indicators of the Antarctic ecosystem and their population are currently undergoing variable trajectories due to climate change. Here, we conducted a correlative study to investigate how telomere length was influenced by external and internal factors in Adélie penguin chicks. We found that most of the parameters we tested, including sex, body mass, brood size and hatching order as well as parental foraging trip duration, did not significantly influence chick telomere length at 32 days. However, siblings had similar telomere length, suggesting that hereditary factors play a stronger role in determining telomere length at this stage compared to the post-natal environment. In addition, telomere length and oxidative damage did not directly correlate but did interact in a complex way mediated by chick mass. High levels of oxidative damage were associated with longer telomeres in heavy chicks, whereas they were associated with shorter telomeres in light chicks. Although this mass-dependent relationship between telomere length and oxidative damage needs to be confirmed in future studies, it could reflect two different scenarios: (1) short telomeres may mimic the cost of poor nutritional conditions and oxidative damage in light chicks; (2) long telomeres may be maintained despite high oxidative damage in heavy chicks thanks to optimal nutritional conditions.

Abstract Image

阿德利企鹅雏鸟端粒长度的同胞相似性。
早期生命端粒长度被认为影响和预测个体的健康。研究表明,与成年期相比,早期生活中的抑郁程度差异很大。因此,研究影响年轻人端粒长度的因素具有特别的意义,特别是在遗传相对于出生后条件的重要性仍然不确定的情况下。南极企鹅是南极生态系统的生态指标,由于气候变化,它们的数量正经历着变化的轨迹。在此,我们进行了相关研究,探讨了端粒长度是如何受到外部和内部因素的影响。研究发现,性别、体质量、雏鸟数量、孵化顺序、亲代觅食行程等参数对32 天的端粒长度没有显著影响。然而,兄弟姐妹有相似的端粒长度,这表明遗传因素在决定端粒长度方面起着更大的作用,而不是出生后的环境。此外,端粒长度与氧化损伤不直接相关,但在鸡质量介导下以复杂的方式相互作用。高水平的氧化损伤与较重的小鸡端粒较长有关,而与较轻的小鸡端粒较短有关。尽管端粒长度与氧化损伤之间的质量依赖关系需要在未来的研究中得到证实,但它可能反映了两种不同的情况:(1)短端粒可能模拟了体重轻的雏鸡营养条件差和氧化损伤的代价;(2)在高氧化损伤的情况下,较长的端粒可以维持在较好的营养条件下。
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来源期刊
CiteScore
5.00
自引率
4.30%
发文量
155
审稿时长
3 months
期刊介绍: Part A: Molecular & Integrative Physiology of Comparative Biochemistry and Physiology. This journal covers molecular, cellular, integrative, and ecological physiology. Topics include bioenergetics, circulation, development, excretion, ion regulation, endocrinology, neurobiology, nutrition, respiration, and thermal biology. Study on regulatory mechanisms at any level of organization such as signal transduction and cellular interaction and control of behavior are also published.
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