Department of Ecology & Evolutionary Biology, University of Toronto, Toronto, Ontario, Canada.
Evol Dev. 2023 Jul;25(4-5):289-327. doi: 10.1111/ede.12454. Epub 2023 Aug 6.
Understanding general principles about the origin of species remains one of the foundational challenges in evolutionary biology. The genomic divergence between groups of individuals can spawn hybrid inviability and hybrid sterility, which presents a tantalizing developmental problem. Divergent developmental programs may yield either conserved or divergent phenotypes relative to ancestral traits, both of which can be responsible for reproductive isolation during the speciation process. The genetic mechanisms of developmental evolution involve cis- and trans-acting gene regulatory change, protein-protein interactions, genetic network structures, dosage, and epigenetic regulation, all of which also have roots in population genetic and molecular evolutionary processes. Toward the goal of demystifying Darwin's "mystery of mysteries," this review integrates microevolutionary concepts of genetic change with principles of organismal development, establishing explicit links between population genetic process and developmental mechanisms in the production of macroevolutionary pattern. This integration aims to establish a more unified view of speciation that binds process and mechanism.
理解物种起源的一般原则仍然是进化生物学中的基础挑战之一。群体间的基因组差异可能导致杂种不育和杂种不孕,这给发育带来了一个诱人的难题。与祖先特征相比,不同的发育程序可能产生保守或不同的表型,这两者都可能导致物种形成过程中的生殖隔离。发育进化的遗传机制涉及顺式和反式作用的基因调控变化、蛋白质-蛋白质相互作用、遗传网络结构、剂量和表观遗传调控,所有这些都源于群体遗传和分子进化过程。为了揭开达尔文“神秘中的神秘”之谜,本综述将遗传变化的微观进化概念与机体发育的原理相结合,在产生宏观进化模式的过程中,在种群遗传过程和发育机制之间建立明确的联系。这种整合旨在建立一个更统一的物种形成观,将过程和机制联系起来。