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首页> 外文期刊>The Plant Cell >Mobile Gibberellin Directly Stimulates Arabidopsis Hypocotyl Xylem Expansion
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Mobile Gibberellin Directly Stimulates Arabidopsis Hypocotyl Xylem Expansion

机译:移动赤霉素直接刺激拟南芥下胚轴木质部扩张

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Secondary growth of the vasculature results in the thickening of plant structures and continuously produces xylem tissue, the major biological carbon sink. Little is known about the developmental control of this quantitative trait, which displays two distinct phases in Arabidopsis thaliana hypocotyls. The later phase of accelerated xylem expansion resembles the secondary growth of trees and is triggered upon flowering by an unknown, shoot-derived signal. We found that flowering-dependent hypocotyl xylem expansion is a general feature of herbaceous plants with a rosette growth habit. Flowering induction is sufficient to trigger xylem expansion in Arabidopsis. By contrast, neither flower formation nor elongation of the main inflorescence is required. Xylem expansion also does not depend on any particular flowering time pathway or absolute age. Through analyses of natural genetic variation, we found that ERECTA acts locally to restrict xylem expansion downstream of the gibberellin (GA) pathway. Investigations of mutant and transgenic plants indicate that GA and its signaling pathway are both necessary and sufficient to directly trigger enhanced xylogenesis. Impaired GA signaling did not affect xylem expansion systemically, suggesting that it acts downstream of the mobile cue. By contrast, the GA effect was graft transmissible, suggesting that GA itself is the mobile shoot-derived signal.
机译:脉管系统的次级生长导致植物结构增厚,并不断产生木质部组织,木质部组织是主要的生物碳汇。对该数量性状的发育控制知之甚少,该数量性状在拟南芥下胚轴中显示出两个不同的阶段。木质部扩张的后期阶段类似于树木的二次生长,并在开花时由未知的,芽衍生的信号触发。我们发现依赖花的下胚轴木质部扩张是具有玫瑰花生长习性的草本植物的一般特征。开花诱导足以引发拟南芥木质部扩张。相反,既不需要花的形成也不延长主花序。木质部的扩张也不取决于任何特定的开花时间途径或绝对年龄。通过对自然遗传变异的分析,我们发现ERECTA在局部发挥作用,以限制赤霉素(GA)途径下游的木质部扩张。对突变和转基因植物的研究表明,GA及其信号转导通路对于直接触发增强的木糖生成是必要且充分的。 GA信号受损并没有系统地影响木质部扩张,表明它在移动提示的下游起作用。相比之下,GA效应是可移植的,表明GA本身是可移动芽衍生的信号。

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