Whibley Annabel C, Langlade Nicolas B, Andalo Christophe, Hanna Andrew I, Bangham Andrew, Thébaud Christophe, Coen Enrico
Department of Cell and Developmental Biology, John Innes Centre, Colney Lane, Norwich NR4 7UH, UK.
Science. 2006 Aug 18;313(5789):963-6. doi: 10.1126/science.1129161.
To understand evolutionary paths connecting diverse biological forms, we defined a three-dimensional genotypic space separating two flower color morphs of Antirrhinum. A hybrid zone between morphs showed a steep cline specifically at genes controlling flower color differences, indicating that these loci are under selection. Antirrhinum species with diverse floral phenotypes formed a U-shaped cloud within the genotypic space. We propose that this cloud defines an evolutionary path that allows flower color to evolve while circumventing less-adaptive regions. Hybridization between morphs located in different arms of the U-shaped path yields low-fitness genotypes, accounting for the observed steep clines at hybrid zones.
为了理解连接不同生物形态的进化路径,我们定义了一个三维基因型空间,该空间分隔了金鱼草的两种花色形态。形态之间的杂交区域在控制花色差异的基因处呈现出陡峭的渐变群,表明这些基因座正受到选择。具有不同花表型的金鱼草物种在基因型空间内形成了一个U形云。我们提出,这个云定义了一条进化路径,使花色能够在避开适应性较差区域的同时进化。位于U形路径不同臂上的形态之间的杂交产生低适应性基因型,这解释了在杂交区域观察到的陡峭渐变群。