Karell Patrik, Bensch Staffan, Ahola Kari, Asghar Muhammad
Bioeconomy Research Team, Novia University of Applied Sciences, Raseborgsvägen 9, 10600 Ekenäs, Finland
Environmental and Marine Biology, Department of Biosciences, Åbo Akademi University, Turku, Finland.
Proc Biol Sci. 2017 Jul 26;284(1859). doi: 10.1098/rspb.2017.1127.
Parasites are expected to exert long-term costs on host fecundity and longevity. Understanding the consequences of heritable polymorphic variation in disease defence in wild populations is essential in order to predict evolutionary responses to changes in disease risk. Telomeres have been found to shorten faster in malaria-diseased individuals compared with healthy ones with negative effects on longevity and thereby fitness. Here, we study the impact of haemosporidian blood parasites on telomere dynamics in tawny owls, which display a highly heritable plumage colour polymorphism. Previously, it has been shown that blood parasites have morph-specific impact on body mass maintenance. Here, we show that telomeres shortened faster in individuals with shorter breeding lifespan. Telomere length was negatively associated with the degree of pheomelanic brown coloration and shorter in infected than uninfected individuals. The rate of telomere shortening between breeding seasons was faster in darker pheomelanic individuals and suppression of parasite intensity between seasons was associated with faster telomere shortening in the paler individuals but not in darker ones. We propose that morph-specific physiological profiles cause differential telomere shortening and that this is likely to be a mechanism involved in previously documented environment-driven survival selection against the pheomelanic morph in this population.
寄生虫预计会对宿主的繁殖力和寿命产生长期影响。了解野生种群中疾病防御方面可遗传的多态性变异的后果,对于预测对疾病风险变化的进化反应至关重要。与健康个体相比,已发现感染疟疾的个体端粒缩短更快,这对寿命进而对适应性产生负面影响。在此,我们研究血孢子虫血液寄生虫对灰林鸮端粒动态的影响,灰林鸮表现出高度可遗传的羽毛颜色多态性。此前已表明,血液寄生虫对体重维持有形态特异性影响。在此,我们表明繁殖寿命较短的个体端粒缩短更快。端粒长度与棕黑素棕色的程度呈负相关,且感染个体的端粒比未感染个体的端粒短。在繁殖季节之间,颜色较深的棕黑素个体端粒缩短速度更快,且季节间寄生虫强度的抑制与颜色较浅个体的端粒缩短速度更快相关,但与颜色较深个体无关。我们提出,形态特异性的生理特征导致端粒缩短存在差异,这可能是此前记录的该种群中针对棕黑素形态的环境驱动生存选择所涉及的一种机制。