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The tomato Blind gene encodes a MYB transcription factor that controls the formation of lateral meristems

机译:番茄盲基因编码MYB转录因子,可控制侧生分生组织的形成

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摘要

The multitude of forms observed in flowering plants is largely because of their ability to establish new axes of growth during postembryonic development. This process is initiated by the formation of secondary meristems that develop into vegetative or reproductive branches. In the blind and torosa mutants of tomato, initiation of lateral meristems is blocked during shoot and inflorescence development, leading to a strong reduction in the number of lateral axes. In this study, it is shown that blind and torosa are allelic. The Blind gene has been isolated by positional cloning, and it was found that the mutant phenotype is caused by a loss of function of an R2R3 class Myb gene. RNA interference-induced blind phenocopies confirmed the identity of the isolated gene. Double mutant analysis shows that Blind acts in a novel pathway different from the one to which the previously identified Lateral suppressor gene belongs. The findings reported add a new class of transcription factors to the group of genes controlling lateral meristem initiation and reveal a previously uncharacterized function of R2R3 Myb genes.
机译:在开花植物中观察到的多种形式主要是由于它们能够在胚后发育过程中建立新的生长轴。这个过程是由形成为营养或生殖分支的次生分生组织开始的。在番茄的无性和圆茎突变体中,在芽和花序发育过程中阻止了侧生分生组织的启动,从而导致横轴数量的大量减少。在这项研究中,表明盲人和弓形虫是等位基因。已经通过位置克隆分离了Blind基因,并且发现突变表型是由R2R3类Myb基因的功能丧失引起的。 RNA干扰诱导的盲表型证实了分离基因的身份。双重突变体分析显示,Blind以一种不同于先前确定的侧向抑制基因所属的新途径起作用。研究结果报告称,在控制侧分生组织起始的基因组中增加了一类新的转录因子,并揭示了R2R3 Myb基因以前没有的功能。

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