Physiol Biochem Zool. 2020 Sep/Oct;93(5):384-395. doi: 10.1086/710703.
AbstractIncreases in DNA degradation have been detected in numerous situations in which organisms are exposed to pollutants. However, outside of the ecotoxicological literature, few studies have investigated whether there exists important variation in DNA integrity in free-living, healthy animals. Using the alkaline version of the comet assay to estimate DNA integrity in blood samples, we aimed to evaluate whether DNA integrity during early life is associated with nestlings' age, body mass, within-brood status, and oxidative stress using nestlings from a wild population of spotless starlings () as a model. We found important levels of variation in DNA integrity, suggesting the possibility that DNA integrity may have implications for offspring fitness. DNA integrity was dependent on the developmental stage, being lower at hatching than at the end of the nestling period. DNA integrity was also negatively related to the levels of oxidative damage at hatching and positively associated with wing length at fledging. In addition, position within the size hierarchy of the brood at fledging explained differences in DNA integrity, with higher levels in core than in marginal nestlings. Finally, despite extensive within-individual variation along nestling's age, we found DNA integrity during early life to be moderately repeatable within broods. Hence, DNA integrity in early life appears to be mainly affected by environmental factors, such as natural stressors. Our results suggest that measuring the variation in DNA integrity may be a fruitful approach for the assessment of individual fitness in natural populations and can be applied to studies in developmental biology and ecology.
摘要
在生物体暴露于污染物的众多情况下,已经检测到 DNA 降解的增加。然而,除了生态毒理学文献之外,很少有研究调查自由生活的健康动物的 DNA 完整性是否存在重要差异。我们使用碱性彗星试验来估计血液样本中的 DNA 完整性,旨在使用来自无纹星椋鸟的野生种群的雏鸟来评估 DNA 完整性在生命早期是否与雏鸟的年龄、体重、巢内地位和氧化应激有关。我们发现 DNA 完整性存在重要的变异性,这表明 DNA 完整性可能对后代的适应性具有重要意义。DNA 完整性取决于发育阶段,在孵化时比在巢期结束时更低。DNA 完整性还与孵化时的氧化损伤水平呈负相关,与出飞时的翼长呈正相关。此外,在出飞时的巢内大小层次结构中的位置解释了 DNA 完整性的差异,核心雏鸟的水平高于边缘雏鸟。最后,尽管在雏鸟的年龄过程中存在广泛的个体内变异性,但我们发现生命早期的 DNA 完整性在巢内具有中等程度的可重复性。因此,生命早期的 DNA 完整性主要受到环境因素的影响,如自然胁迫。我们的研究结果表明,测量 DNA 完整性的变异性可能是评估自然种群个体适应性的一种有效方法,并且可以应用于发育生物学和生态学的研究。