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SHOEBOX Modulates Root Meristem Size in Rice through Dose-Dependent Effects of Gibberellins on Cell Elongation and Proliferation

机译:SHOEBOX通过赤霉素对细胞伸长和增殖的剂量依赖性效应来调节水稻的根分生组织大小。

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摘要

Little is known about how the size of meristem cells is regulated and whether it participates in the control of meristem size in plants. Here, we report our findings on shoebox (shb), a mild gibberellin (GA) deficient rice mutant that has a short root meristem size. Quantitative analysis of cortical cell length and number indicates that shb has shorter, rather than fewer, cells in the root meristem until around the fifth day after sowing, from which the number of cortical cells is also reduced. These defects can be either corrected by exogenous application of bioactive GA or induced in wild-type roots by a dose-dependent inhibitory effect of paclobutrazol on GA biosynthesis, suggesting that GA deficiency is the primary cause of shb mutant phenotypes. SHB encodes an AP2/ERF transcription factor that directly activates transcription of the GA biosynthesis gene KS1. Thus, root meristem size in rice is modulated by SHB-mediated GA biosynthesis that regulates the elongation and proliferation of meristem cells in a developmental stage-specific manner.
机译:人们对如何调节分生组织细胞的大小以及是否参与植物分生组织大小的控制知之甚少。在这里,我们报告我们在鞋盒(shb)上的发现,该鞋盒是一种轻的赤霉素(GA)缺陷型水稻突变体,其分生组织短。皮质细胞长度和数量的定量分析表明,shb的根分生组织中的细胞较短,而不是更少,直到播种后第五天左右,皮质细胞的数量也减少了。这些缺陷可以通过外源应用生物活性GA来纠正,也可以通过多效唑对GA生物合成的剂量依赖性抑制作用而在野生型根中引起,这表明GA缺乏是shb突变表型的主要原因。 SHB编码可直接激活GA生物合成基因KS1转录的AP2 / ERF转录因子。因此,水稻中的根分生组织大小受SHB介导的GA生物合成的调节,该合成以发育阶段特异的方式调节分生组织细胞的伸长和增殖。

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