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Great tits growing old: selective disappearance and the partitioning of senescence to stages within the breeding cycle

机译:大山雀变老:选择性消失衰老在繁殖周期内分配到各个阶段

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摘要

Deterioration of reproductive traits with age is observed in an increasing number of species. Although such deterioration is often attributed to reproductive senescence, a within-individual decline in reproductive success with age, few studies on wild animals have focused on direct fitness measures while accounting for selective disappearance and terminal effects, and to our knowledge none have determined how senescence effects arise from underlying reproductive traits. We show for female great tits that such an approach helps understanding of the onset, impact and architecture of senescence. Cross-sectional analysis of 49 years of breeding data shows annual recruit production to decline from 3.5 years of age, this decline affecting 9 per cent of females each year. Longitudinal analyses, however, show that selective disappearance of poor-quality breeders partly masks senescence, which in fact starts at 2.8 years and affects 21 per cent of females each year. There is no evidence for abrupt terminal effects. Analyses of underlying traits show no deterioration in clutch size, but significant declines in brood size and fledgling number. Furthermore, these traits contribute −9, 12 and 39 per cent to the senescent decline in recruit production, respectively. Besides providing detailed knowledge of the patterns and architecture of senescence in a natural population, these results illustrate the importance of modelling individual variation, and facilitate study of the underlying mechanisms of senescence.
机译:在越来越多的物种中,观察到生殖性状随年龄而恶化。尽管这种恶化通常归因于生殖衰老,随着年龄的增长个体内生殖能力的下降,但很少有关于野生动物的研究侧重于直接适应性措施,同时考虑了选择性消失和终末效应,并且据我们所知,没有人确定衰老的方式影响来自潜在的生殖特性。我们向雌性大山雀表明,这种方法有助于理解衰老的发作,影响和结构。对49年育种数据的横断面分析显示,新兵的年产量从3.5岁开始下降,这一下降每年影响9%的雌性。然而,纵向分析表明,劣质种鸽的选择性消失部分掩盖了衰老,事实上衰老始于2.8年,每年影响21%的雌性。没有证据表明会有突然的终末效应。对基本特征的分析表明,离合器的大小没有变差,但是育雏的大小和雏鸟数量却显着下降。此外,这些特征分别导致新兵生产衰老下降的-9%,12%和39%。这些结果除了提供有关自然种群中衰老模式和结构的详细知识外,还说明了对个体变异建模的重要性,并有助于研究衰老的潜在机制。

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