School of Biodiversity, One Health and Veterinary Medicine, University of Glasgow, Glasgow, UK.
Institute of Avian Research "Vogelwarte Helgoland", Wilhelmshaven, Germany.
Aging Cell. 2023 Jun;22(6):e13822. doi: 10.1111/acel.13822. Epub 2023 Mar 20.
Mitochondrial dysfunction is considered a highly conserved hallmark of ageing. However, most of the studies in both model and non-model organisms are cross-sectional in design; therefore, little is known, at the individual level, on how mitochondrial function changes with age, its link to early developmental conditions or its relationship with survival. Here we manipulated the postnatal growth in zebra finches (Taeniopygia guttata) via dietary modification that induced accelerated growth without changing adult body size. In the same individuals, we examined blood cells mitochondrial functioning (mainly erythrocytes) when they were young (ca. 36 weeks) and again in mid-aged (ca. 91 weeks) adulthood. Mitochondrial function was strongly influenced by age but not by postnatal growth conditions. Across all groups, within individual ROUTINE respiration, OXPHOS and OXPHOS coupling efficiency significantly declined with age, while LEAK respiration increased. However, we found no link between mitochondrial function and the probability of survival into relatively old age (ca. 4 years). Our results suggest that the association between accelerated growth and reduced longevity, evident in this as in other species, is not attributable to age-related changes in any of the measured mitochondrial function traits.
线粒体功能障碍被认为是衰老的一个高度保守的特征。然而,大多数模型和非模型生物的研究都是横断面设计的;因此,在个体水平上,人们对线粒体功能随年龄的变化、与早期发育条件的联系或与生存的关系知之甚少。在这里,我们通过饮食改变来操纵斑马雀(Taeniopygia guttata)的产后生长,这种改变导致了生长加速而不改变成年体型。在相同的个体中,当它们年轻时(约 36 周)和中年时(约 91 周),我们检查了血液细胞的线粒体功能(主要是红细胞)。线粒体功能受年龄影响很大,但不受产后生长条件的影响。在所有组中,个体内部常规呼吸、OXPHOS 和 OXPHOS 偶联效率随着年龄的增长而显著下降,而 LEAK 呼吸增加。然而,我们没有发现线粒体功能与进入相对老年(约 4 岁)的生存概率之间存在联系。我们的结果表明,在这种情况下以及其他物种中,加速生长与寿命缩短之间的关联并不是由于任何测量的线粒体功能特征随年龄的变化所致。