Institute of Biodiversity, Animal Health and Comparative Medicine, College of Medical, Veterinary and Life Sciences, University of Glasgow, Glasgow G12 8QQ, UK.
Glasgow Polyomics, College of Medical, Veterinary and Life Sciences, University of Glasgow, Glasgow G12 8QQ, UK.
Proc Biol Sci. 2019 Nov 20;286(1915):20192109. doi: 10.1098/rspb.2019.2109.
Selfing plant lineages are surprisingly widespread and successful in a broad range of environments, despite showing reduced genetic diversity, which is predicted to reduce their long-term evolutionary potential. However, appropriate short-term plastic responses to new environmental conditions might not require high levels of standing genetic variation. In this study, we tested whether mating system variation among populations, and associated changes in genetic variability, affected short-term responses to environmental challenges. We compared relative fitness and metabolome profiles of naturally outbreeding (genetically diverse) and inbreeding (genetically depauperate) populations of a perennial plant, , under constant growth chamber conditions and an outdoor common garden environment outside its native range. We found no effect of inbreeding on survival, flowering phenology or short-term physiological responses. Specifically, naturally occurring inbreeding had no significant effects on the plasticity of metabolome profiles, using either multivariate approaches or analysis of variation in individual metabolites, with inbreeding populations showing similar physiological responses to outbreeding populations over time in both growing environments. We conclude that low genetic diversity in naturally inbred populations may not always compromise fitness or short-term physiological capacity to respond to environmental change, which could help to explain the global success of selfing mating strategies.
自交植物谱系在广泛的环境中出乎意料地普遍和成功,尽管表现出遗传多样性降低,这被预测会降低它们的长期进化潜力。然而,适当的短期对新环境条件的可塑性反应可能不需要高水平的遗传变异。在这项研究中,我们测试了种群间交配系统的变化以及遗传变异性的变化是否会影响对环境挑战的短期反应。我们比较了在恒定生长室条件下和在其原生范围外的户外普通花园环境下,一种多年生植物的自然异交(遗传多样性)和自交(遗传贫乏)种群的相对适合度和代谢组图谱。我们没有发现自交对生存、开花物候或短期生理反应有影响。具体来说,自然发生的自交对代谢组图谱的可塑性没有显著影响,无论是使用多变量方法还是分析单个代谢物的变异,在两种生长环境中,自交种群随着时间的推移表现出与异交种群相似的生理反应。我们的结论是,自然自交种群的低遗传多样性并不总是会损害对环境变化的适应性或短期生理能力,这可以帮助解释自交交配策略在全球范围内的成功。