Kuittinen Helmi, Niittyvuopio Anne, Rinne Paula, Savolainen Outi
Department of Biology, University of Oulu, Oulu, Finland.
Mol Biol Evol. 2008 Feb;25(2):319-29. doi: 10.1093/molbev/msm257. Epub 2007 Nov 20.
Species share homologous genes to a large extent, but it is not yet known to what degree the same loci have been targets for natural selection in different species. Natural variation in flowering time is determined to a large degree by 2 genes, FLOWERING LOCUS C and FRIGIDA, in Arabidopsis thaliana. Here, we examine whether FRIGIDA has a role in differences in flowering time between and within natural populations of Arabidopsis lyrata, a close outcrossing perennial relative of A. thaliana. We found 2 FRIGIDA sequence variants producing potentially functional proteins but with a length difference of 14 amino acids. These variants conferred a 15-day difference in flowering time in an association experiment in 2 Scandinavian populations. The difference in flowering time between alleles was confirmed with transformation to A. thaliana. Because the north European late-flowering populations harbor both late- and early sequence variants at intermediate frequencies and the late-flowering variant is most frequent in the southern early flowering European population, other genetic factors must be responsible for the flowering time differences between the populations. The length polymorphism occurs at high frequencies also in several North American populations. The occurrence of functional variants at intermediate frequencies in several populations suggests that the variation may be maintained by balancing selection. This is in contrast to A. thaliana, where independent loss-of-function mutations at the FRIGIDA gene are responsible for differences between populations and local adaptation.
物种在很大程度上共享同源基因,但尚不清楚相同的基因座在不同物种中成为自然选择目标的程度。拟南芥开花时间的自然变异在很大程度上由两个基因决定,即开花位点C和冷敏基因。在这里,我们研究冷敏基因在琴叶拟南芥(拟南芥的近缘异交多年生植物)自然种群之间和种群内部开花时间差异中是否起作用。我们发现了两个冷敏基因序列变体,它们产生潜在的功能蛋白,但长度相差14个氨基酸。在两个斯堪的纳维亚种群的关联实验中,这些变体导致开花时间相差15天。通过转化到拟南芥中证实了等位基因之间开花时间的差异。由于北欧晚花种群在中等频率下同时存在晚期和早期序列变体,且晚花变体在南欧早花种群中最为常见,因此其他遗传因素必定导致了种群之间开花时间的差异。这种长度多态性在几个北美种群中也以高频率出现。几个种群中中等频率出现功能变体表明这种变异可能通过平衡选择得以维持。这与拟南芥不同,在拟南芥中,冷敏基因的独立功能丧失突变导致了种群之间的差异和局部适应性。