Brakefield Paul M
Institute of Biology, Leiden University, PO Box 9516, 2300 RA Leiden, the Netherlands.
Trends Ecol Evol. 2006 Jul;21(7):362-8. doi: 10.1016/j.tree.2006.05.001. Epub 2006 May 19.
Developmental bias, or genetic channeling, can influence the tempo and direction of evolution and, thus, become reflected in patterns of biodiversity. Twenty years ago, this notion rested on armchair descriptions of potential constraints on evolution. Now, a broad evo-devo approach involving both evolutionary and developmental genetics provides experimental analysis of such bias, revealing how shared genetic or developmental pathways among morphological traits contribute to the evolution of complexity and diversity, and that developmental bias itself evolves, generating variation in evolvability. As I discuss here, it is now possible to determine the relative importance of natural selection and of genetical and developmental architecture as determinants of organic diversity, particularly for examples of adaptive radiations and parallel evolution.
发育偏向,即基因导向,能够影响进化的节奏和方向,进而反映在生物多样性模式中。二十年前,这一概念还停留在对进化潜在限制的理论描述上。如今,一种融合了进化遗传学和发育遗传学的广泛的演化发育生物学方法,为这种偏向提供了实验分析,揭示了形态特征间共享的基因或发育途径如何推动复杂性和多样性的进化,以及发育偏向自身也会演化,从而产生可进化性的差异。正如我在此所讨论的,现在有可能确定自然选择以及遗传和发育结构作为有机多样性决定因素的相对重要性,特别是对于适应性辐射和平行进化的实例而言。