Burtsev Mikhail, Anokhin Konstantin, Bateson Patrick
London Institute for Mathematical Sciences, Royal Institution, London W1S 4BS, UK.
Institute for Advanced Brain Studies, Moscow State University, Moscow 119992, Russia.
Animals (Basel). 2024 Sep 28;14(19):2804. doi: 10.3390/ani14192804.
Developmental plasticity enables organisms to cope with new environmental challenges. If deploying such plasticity is costly in terms of time or energy, the same adaptive behaviour could subsequently evolve through piecemeal genomic reorganisation that replaces the requirement to acquire that adaptation by individual plasticity. Here, we report a new dimension to the way in which plasticity can drive evolutionary change, leading to an ever-greater complexity in biological organisation. Plasticity dramatically accelerates the evolutionary accumulation of adaptive systems in model organisms with relatively low rates of mutation. The effect of plasticity on the evolutionary growth of complexity is even greater when the number of elements needed to construct a functional system is increased. These results suggest that, as the difficulty of challenges from the environment becomes greater, plasticity exerts an ever more powerful role in meeting those challenges and in opening up new avenues for the subsequent evolution of complex adaptations.
发育可塑性使生物体能够应对新的环境挑战。如果在时间或能量方面部署这种可塑性成本高昂,那么相同的适应性行为随后可能会通过零碎的基因组重组而进化,从而取代通过个体可塑性获得该适应性的需求。在这里,我们报告了可塑性驱动进化变化方式的一个新维度,这导致生物组织的复杂性不断增加。可塑性极大地加速了突变率相对较低的模式生物中适应性系统的进化积累。当构建一个功能系统所需的元素数量增加时,可塑性对复杂性进化增长的影响甚至更大。这些结果表明,随着来自环境的挑战难度变得更大,可塑性在应对这些挑战以及为复杂适应性的后续进化开辟新途径方面发挥着越来越强大的作用。