Jovelin Richard, Dunham Joseph P, Sung Frances S, Phillips Patrick C
Center for Ecology and Evolutionary Biology, University of Oregon, Eugene, Oregon 97403-5289, USA.
Genetics. 2009 Apr;181(4):1387-97. doi: 10.1534/genetics.107.082651. Epub 2008 Nov 10.
Almost all organismal function is controlled by pathways composed of interacting genetic components. The relationship between pathway structure and the evolution of individual pathway components is not completely understood. For the nematode Caenorhabditis elegans, chemosensory pathways regulate critical aspects of an individual's life history and development. To help understand how olfaction evolves in Caenorhabditis and to examine patterns of gene evolution within transduction pathways in general, we analyzed nucleotide variation within and between species across two well-characterized olfactory pathways, including regulatory genes controlling the fate of the cells in which the pathways are expressed. In agreement with previous studies, we found much higher levels of polymorphism within C. remanei than within the related species C. elegans and C. briggsae. There are significant differences in the rates of nucleotide evolution for genes across the two pathways but no particular association between evolutionary rate and gene position, suggesting that the evolution of functional pathways must be considered within the context of broader gene network structure. However, developmental regulatory genes show both higher levels of divergence and polymorphism than the structural genes of the pathway. These results show that, contrary to the emerging paradigm in the evolution of development, important structural changes can accumulate in transcription factors.
几乎所有的生物体功能都由相互作用的基因成分组成的通路所控制。通路结构与各个通路成分的进化之间的关系尚未完全明晰。对于线虫秀丽隐杆线虫而言,化学感应通路调控着个体生活史和发育的关键方面。为了有助于理解秀丽隐杆线虫的嗅觉是如何进化的,并总体上研究转导通路内的基因进化模式,我们分析了两个特征明确的嗅觉通路中物种内部和物种之间的核苷酸变异,包括控制这些通路所表达细胞命运的调控基因。与之前的研究一致,我们发现雷氏线虫内的多态性水平比相关物种秀丽隐杆线虫和briggsae线虫内的多态性水平高得多。两条通路中各基因的核苷酸进化速率存在显著差异,但进化速率与基因位置之间没有特定关联,这表明功能性通路的进化必须在更广泛的基因网络结构背景下加以考虑。然而,发育调控基因比通路的结构基因表现出更高的分化水平和多态性。这些结果表明,与发育进化中新兴的范式相反,重要的结构变化可能会在转录因子中积累。