Gomes M Gabriela M, King Jessica G, Nunes Ana, Colegrave Nick, Hoffmann Ary A
Liverpool School of Tropical Medicine Liverpool UK.
CIBIO-InBIO, Centro de Investigação em Biodiversidade e Recursos Genéticos CMUP, Centro de Matemática da Universidade do Porto Porto Portugal.
Ecol Evol. 2019 Aug 1;9(16):8995-9004. doi: 10.1002/ece3.5437. eCollection 2019 Aug.
Demographic theory and data have emphasized that nonheritable variation in individual frailty enables selection within cohorts, affecting the dynamics of a population while being invisible to its evolution. Here, we include the component of individual variation in longevity or viability which is nonheritable in simple bacterial growth models and explore its ecological and evolutionary impacts. First, we find that this variation produces consistent trends in longevity differences between bacterial genotypes when measured across stress gradients. Given that direct measurements of longevity are inevitably biased due to the presence of this variation and ongoing selection, we propose the use of the trend itself for obtaining more exact inferences of genotypic fitness. Second, we show how species or strain coexistence can be enabled by nonheritable variation in longevity or viability. These general conclusions are likely to extend beyond bacterial systems.
人口统计学理论和数据强调,个体脆弱性中的非遗传变异能够在群体中产生选择作用,影响种群动态,同时对其进化过程不可见。在此,我们在简单的细菌生长模型中纳入了寿命或生存能力方面的个体变异成分,并探讨其生态和进化影响。首先,我们发现,当在压力梯度下进行测量时,这种变异会在细菌基因型之间的寿命差异中产生一致的趋势。鉴于由于这种变异和持续选择的存在,对寿命的直接测量不可避免地存在偏差,我们建议利用这种趋势本身来获得更精确的基因型适应性推断。其次,我们展示了寿命或生存能力方面的非遗传变异如何能够促成物种或菌株的共存。这些一般性结论可能适用于细菌系统之外的其他系统。