Cohn Institute for the History and Philosophy of Science and Ideas, Tel Aviv University, Tel Aviv 69978, Israel.
Prog Biophys Mol Biol. 2013 Apr;111(2-3):99-107. doi: 10.1016/j.pbiomolbio.2012.08.014. Epub 2012 Sep 4.
Developmental plasticity, the capacity of a single genotype to give rise to different phenotypes, affects evolutionary dynamics by influencing the rate and direction of phenotypic change. It is based on regulatory changes in gene expression and gene products, which are partially controlled by epigenetic mechanisms. Plasticity involves not just epigenetic changes in somatic cells and tissues; it can also involve changes in germline cells. Germline epigenetic plasticity increases evolvability, the capacity to generate heritable, selectable, phenotypic variations, including variations that lead to novel functions. I discuss studies that show that some complex adaptive responses to new challenges are mediated by germline epigenetic processes, which can be transmitted over variable number of generations, and argue that the heritable variations that are generated epigenetically have an impact on both small-scale and large-scale aspects of evolution. First, I review some recent ecological studies and models that show that germline (gametic) epigenetic inheritance can lead to cumulative micro-evolutionary changes that are rapid and semi-directional. I suggest that "priming" and "epigenetic learning" may be of special importance in generating heritable, fine-tuned adaptive responses in populations. Second, I consider work showing how genomic and environmental stresses can also lead to epigenome repatterning, and produce changes that are saltational.
发育可塑性,即单一基因型产生不同表型的能力,通过影响表型变化的速度和方向来影响进化动态。它基于基因表达和基因产物的调节变化,这些变化部分受到表观遗传机制的控制。可塑性不仅涉及体细胞和组织的表观遗传变化,还可能涉及生殖细胞的变化。生殖细胞的表观遗传可塑性增加了可进化性,即产生可遗传、可选择的表型变异的能力,包括导致新功能的变异。我讨论了一些研究,这些研究表明,某些对新挑战的复杂适应性反应是由生殖细胞表观遗传过程介导的,这些过程可以在不同数量的世代中传递,并认为通过表观遗传产生的可遗传变异对进化的小尺度和大尺度方面都有影响。首先,我回顾了一些最近的生态研究和模型,这些研究表明,生殖细胞(配子)的表观遗传遗传可以导致快速和半定向的累积微观进化变化。我认为“启动”和“表观遗传学习”在产生种群中可遗传的、微调的适应性反应方面可能具有特殊重要性。其次,我考虑了一些工作,这些工作表明基因组和环境压力也会导致表观基因组重新模式化,并产生跃变式的变化。