Romero-Haro A A, Cantarero A, Alonso-Alvarez C
Instituto de Investigación en Recursos Cinegéticos (IREC-CSIC-UCLM-JCCM), Ciudad Real, Spain.
Department of Physiology, Veterinary School, Complutense University of Madrid, Madrid, Spain.
J Exp Zool A Ecol Integr Physiol. 2025 Jan;343(1):70-80. doi: 10.1002/jez.2868. Epub 2024 Sep 25.
Harsh early environmental conditions can exert delayed, long-lasting effects on phenotypes, including reproductive traits such as sexual signals. Indeed, adverse early conditions can accelerate development, increasing oxidative stress that may, in turn, impact adult sexual signals. Among signals, colorations produced by red ketocarotenoids seem to depend on mitochondrial functioning. Hence, they could reveal individual cell respiration efficiency. It has been hypothesized that these traits are unfalsifiable "index" signals of condition due to their deep connection to individual metabolism. Since mitochondrial dysfunction is frequently linked to aging, red ketocarotenoid-based ornaments could also be good signals of a critical fitness component: longevity. We tested this red color per longevity correlation in captive zebra finches. In addition, we experimentally decreased the synthesis of glutathione (a critical intracellular antioxidant) during the first days of the birds' life to resemble harsh early environmental conditions (e.g., undernutrition). Longevity was recorded until the death of the last bird (almost 9 years). Males, but not females, exhibiting a redder bill in early adulthood lived longer than males with paler bills, which agrees with some precedent studies. However, such bill redness-longevity connection was absent among males with inhibited glutathione synthesis. These findings may suggest that environmental factors can alter the reliability of red ketocarotenoid-based sexual signals, making them less unfalsifiable than believed.
恶劣的早期环境条件会对表型产生延迟的、持久的影响,包括诸如性信号等生殖特征。事实上,不利的早期条件会加速发育,增加氧化应激,进而可能影响成年后的性信号。在各种信号中,红色酮类胡萝卜素产生的色素沉着似乎取决于线粒体功能。因此,它们可以揭示个体细胞呼吸效率。据推测,由于这些特征与个体新陈代谢密切相关,它们是不可伪造的“状况指标”信号。由于线粒体功能障碍经常与衰老相关联,基于红色酮类胡萝卜素的装饰也可能是一个关键健康成分——长寿的良好信号。我们在圈养的斑胸草雀中测试了这种红色与长寿的相关性。此外,我们在鸟类生命的最初几天通过实验降低了谷胱甘肽(一种关键的细胞内抗氧化剂)的合成,以模拟恶劣的早期环境条件(如营养不良)。记录长寿情况直至最后一只鸟死亡(近9年)。在成年早期喙部颜色更红的雄性比喙部颜色较淡的雄性寿命更长,而雌性则不然,这与一些先前的研究一致。然而,在谷胱甘肽合成受到抑制的雄性中,这种喙部红色与长寿的联系并不存在。这些发现可能表明环境因素会改变基于红色酮类胡萝卜素的性信号的可靠性,使其比人们认为的更不可靠。