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Molecular evolution of the transcription factor LEAFY in Brassicaceae

机译:十字花科植物转录因子LEAFY的分子进化

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LEAFY (LFY) is a DNA-binding transcription factor that regulates floral meristem identity. LFY is unusual among angiosperm developmental regulators because it is not part of an extended gene family. Recent expression studies and transgenic experiments have suggested that changes at the LFY locus might have played a role in the evolution of rosette flowering, a modified plant architecture that has evolved at least three times in Brassicaceae. Here we examined the sequences of LFY genes from 16 species of Brassicaceae to evaluate whether gene duplication and/or the shift to rosette flowering correlate with changes in the molecular evolution of LFY. We found evidence of gene duplication in four taxa, but phylogenetic analysis suggested that duplicate genes have generally not persisted through multiple speciation events. This result can be explained if LFY is prone to be lost by drift due to a low probability of subfunctionalization or neofunctionalization. Despite great heterogeneity in dN/dS ratios, duplicate genes show a significant tendency to have elevated dN/dS ratios. Rosette-flowering lineages also show elevated dN/dS ratios and two of the rosette-flowering taxa, Idahoa and Leavenworthia, have some radical amino acid substitutions that are candidates for having played a causal role in the evolution of rosette flowering. (c) 2005 Elsevier Inc. All rights reserved.
机译:叶(LFY)是一种DNA结合转录因子,可调节花分生组织的身份。 LFY在被子植物发育调节剂中并不常见,因为它不是扩展基因家族的一部分。最近的表达研究和转基因实验表明,LFY基因座的变化可能在玫瑰花开花的进化中起作用,玫瑰花开花是一种改良的植物结构,在十字花科中至少进化了三倍。在这里,我们检查了十字花科16种物种的LFY基因序列,以评估基因复制和/或玫瑰花开花的转移是否与LFY分子进化的变化相关。我们在四个类群中发现了基因重复的证据,但系统发育分析表明重复的基因通常不会通过多种物种形成事件而持续存在。如果由于低功能化或新功能化的可能性导致LFY容易因漂移而丢失,则可以解释此结果。尽管dN / dS比率存在很大的异质性,但重复的基因显示出明显的趋势,即dN / dS比率升高。莲座丛开花的谱系也显示出较高的dN / dS比,并且莲座丛开花的分类单元中的两个(爱达荷州和莱文沃西亚)具有一些自由基氨基酸取代,这些候选氨基酸在莲座丛开花的进化中起了因果作用。 (c)2005 Elsevier Inc.保留所有权利。

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