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The ratio of red light to far red light alters Arabidopsis axillary bud growth and abscisic acid signalling before stem auxin changes

机译:在茎生长素改变之前红光与远红光的比率会改变拟南芥腋芽的生长和脱落酸信号。

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摘要

Arabidopsis thaliana shoot branching is inhibited by a low red light to far red light ratio (R:FR, an indicator of competition), and by loss of phytochrome B function. Prior studies have shown that phytochrome B deficiency suppresses bud growth by elevating systemic auxin signalling, and that increasing the R:FR promotes the growth of buds suppressed by low R:FR by inhibiting bud abscisic acid (ABA) accumulation and signalling. Here, systemic auxin signalling and bud ABA signalling were examined in the context of rapid bud responses to an increased R:FR. Increasing the R:FR promoted the growth of buds inhibited by a low R:FR within 6 h. Relative to a low R:FR, bud ABA accumulation and signalling in plants given a high R:FR showed a sustained decline within 3 h, prior to increased growth. Main stem auxin levels and signalling showed a weak, transient response. Systemic effects and those localised to the bud were further examined by decapitating plants maintained either under a low R:FR or provided with a high R:FR. Increasing the R:FR promoted bud growth before decapitation, but decapitated plants eventually formed longer branches. The data suggest that rapid responses to an increased R:FR may be mediated by changes in bud ABA physiology, although systemic auxin signalling is necessary for sustained bud repression under a low R:FR.
机译:低红光与远红光之比(R:FR,竞争指标)和植物色素B功能的丧失可抑制拟南芥枝条的分支。先前的研究表明,植物色素B缺乏症通过提高系统生长素的信号传导抑制芽的生长,而增加R:FR则通过抑制芽脱落酸(ABA)的积累和信号传导来促进低R:FR抑制的芽的生长。在这里,在快速芽对增加的R:FR的应答的背景下检查了系统性生长素信号传导和芽ABA信号传导。增加R:FR可以在6小时内降低低的R:FR抑制芽的生长。相对于低的R:FR,在高生长之前,给予高R:FR的植物中芽ABA的积累和信号传导会持续下降。主要茎生长素水平和信号显示弱,短暂的反应。通过断头维持在低R:FR或具有高R:FR的植物的断头来进一步检查系统性效应和局部效应。增加R:FR可以在断头之前促进芽的生长,但是断头的植物最终会形成更长的分支。数据表明,对R:FR增加的快速响应可能是由芽ABA生理学的变化介导的,尽管在低R:FR下持续生长芽抑制需要系统性生长素信号传导。

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