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Differential SPL gene expression patterns reveal candidate genes underlying flowering time and architectural differences in Mimulus and Arabidopsis

机译:差异的SPL基因表达模式揭示了候选基因潜在的开花时间和构筑物在Mi和拟南芥中的差异

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Evolutionary transitions in growth habit and flowering time responses to variable environmental signals have occurred multiple times independently across angiosperms and have major impacts on plant fitness. Proteins in the SPL family of transcription factors collectively regulate flowering time genes that have been implicated in interspecific shifts in annuality/perenniality. However, their potential importance in the evolution of angiosperm growth habit has not been extensively investigated. Here we identify orthologs representative of the major SPL gene clades in annual Arabidopsis thaliana and Mimulus guttatus IM767, and perennial A. lyrata and M. guttatus PR, and characterize their expression. Spatio-temporal expression patterns are complex across both diverse tissues of the same taxa and comparable tissues of different taxa, consistent with genic sub- or neo-functionalization. However, our data are consistent with a general role for several SPL genes in the promotion of juvenile to adult phase change and/or flowering time in Mimulus and Arabidopsis. Furthermore, several candidate genes were identified for future study whose differential expression correlates with growth habit and architectural variation in annual versus perennial taxa.
机译:生长习性和开花时间对可变环境信号的响应的进化过渡已在被子植物中独立发生了多次,并对植物适应性产生了重大影响。 SPL转录因子家族中的蛋白质共同调节开花时间基因,该基因与年/多年生的种间变化有关。但是,它们在被子植物生长习性演变中的潜在重要性尚未得到广泛研究。在这里,我们确定直系同源物代表每年的拟南芥和豆mulIM767,常年A. lyrata和M.guttatus PR的主要SPL基因进化枝,并表征它们的表达。时空表达模式在同一分类单元的不同组织和不同分类单元的可比较组织中都是复杂的,这与基因的亚功能或新功能一致。但是,我们的数据与几个SPL基因在促进Mi和拟南芥中幼虫到成虫的相变和/或开花时间中的一般作用一致。此外,确定了一些候选基因以供将来研究,其差异表达与年度和多年生分类单元的生长习性和结构变异有关。

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