Department of Biosciences, University of Sheffield, Sheffield, UK.
Institute of Zoology, Zoological Society of London, London, UK.
Mol Ecol. 2023 Jul;32(14):4031-4043. doi: 10.1111/mec.16981. Epub 2023 May 12.
Telomeres are well known for their associations with lifespan and ageing across diverse taxa. Early-life telomere length can be influenced by developmental conditions and has been shown positively affect lifetime reproductive success in a limited number of studies. Whether these effects are caused by a change in lifespan, reproductive rate or perhaps most importantly reproductive senescence is unclear. Using long-term data on female breeding success from a threatened songbird (the hihi, Notiomystis cincta), we show that the early-life telomere length of individuals predicts the presence and rate of future senescence of key reproductive traits: clutch size and hatching success. In contrast, senescence of fledging success is not associated with early-life telomere length, which may be due to the added influence of biparental care at this stage. Early-life telomere length does not predict lifespan or lifetime reproductive success in this species. Females may therefore change their reproductive allocation strategy depending on their early developmental conditions, which we hypothesise are reflected in their early-life telomere length. Our results offer new insights on the role that telomeres play in reproductive senescence and individual fitness and suggest telomere length can be used as a predictor for future life history in threatened species.
端粒因其与跨生物类群的寿命和衰老的关联而广为人知。早期生活的端粒长度可以受到发育条件的影响,并且在少数研究中已经显示出对终生生殖成功有积极影响。这些影响是由寿命、繁殖率的变化引起的,还是更重要的是生殖衰老引起的,目前尚不清楚。利用受威胁鸣禽(hihi,Notiomystis cincta)的女性繁殖成功的长期数据,我们表明个体的早期生活端粒长度预测了关键繁殖特征(窝卵数和孵化成功率)未来衰老的存在和速度。相比之下,离巢成功率的衰老与早期生活端粒长度无关,这可能是由于在此阶段双亲照顾的附加影响。早期生活的端粒长度并不能预测该物种的寿命或终生生殖成功率。因此,女性可能会根据其早期发育条件改变其繁殖分配策略,我们假设这些条件反映在其早期生活的端粒长度上。我们的研究结果提供了关于端粒在生殖衰老和个体适应性中的作用的新见解,并表明端粒长度可以作为受威胁物种未来生活史的预测指标。