CNRS UMR 5023 Ecologie des Hydrosystèmes Naturels et Anthropisés, Université Claude Bernard Lyon1, Université de Lyon, 43 Bd du 11 Novembre 1918, 69622 Villeurbanne cedex, France.
Evolution. 2012 Jun;66(6):1942-52. doi: 10.1111/j.1558-5646.2011.01570.x. Epub 2012 Feb 14.
Populations that have suffered from genetic erosion are expected to exhibit reduced average trait values or decreased variation in adaptive traits when experiencing periodic or emergent stressors such as infectious disease. Genetic erosion may consequentially modify the ability of a potential host population to cope with infectious disease emergence. We experimentally investigate this relationship between genetic variability and host response to exposure to an infectious agent both in terms of susceptibility to infection and indirect parasite-mediated responses that also impact fitness. We hypothesized that the deleterious consequences of exposure to the pathogen (Batrachochytrium dendrobatidis) would be more severe for tadpoles descended from European treefrog (Hyla arborea) populations lacking genetic variability. Although all exposed tadpoles lacked detectable infection, we detected this relationship for some indirect host responses, predominantly in genetically depleted animals, as well as an interaction between genetic variability and pathogen dose on life span during the postmetamorphic period. Lack of infection and a decreased mass and postmetamorphic life span in low genetic diversity tadpoles lead us to conclude that genetic erosion, while not affecting the ability to mount effective resistance strategies, also erodes the capacity to invest in resistance, increased tadpole growth rate, and metamorphosis relatively simultaneously.
遗传侵蚀的种群在经历周期性或突发性压力源(如传染病)时,预计其平均特征值会降低或适应性特征的变异性会降低。遗传侵蚀可能会改变潜在宿主种群应对传染病爆发的能力。我们通过实验研究了遗传变异性与宿主对传染性病原体暴露的反应之间的这种关系,包括对感染的易感性和间接寄生虫介导的反应,这些反应也会影响适应性。我们假设,对于遗传变异性低的欧洲树蛙(Hyla arborea)种群的蝌蚪来说,接触病原体(蛙壶菌)的有害后果将更加严重。尽管所有暴露的蝌蚪都没有检测到可检测的感染,但我们发现了一些间接宿主反应的这种关系,主要是在遗传枯竭的动物中,以及遗传变异性和病原体剂量对变态后阶段寿命的相互作用。缺乏感染以及遗传多样性低的蝌蚪的质量和变态后寿命降低,使我们得出结论,遗传侵蚀虽然不影响产生有效抵抗策略的能力,但也会侵蚀在抵抗、增加蝌蚪生长速度和变态相对同时进行的投资能力。