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The Short-Rooted Phenotype of the brevis radix Mutant Partly Reflects Root Abscisic Acid Hypersensitivity

机译:短根短突变体的短根表型部分反映了根脱落酸超敏性

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摘要

To gain further insight into abscisic acid (ABA) signaling and its role in growth regulation, we have screened for Arabidopsis (Arabidopsis thaliana) mutants hypersensitive to ABA-mediated root growth inhibition. As a result, we have identified a loss-of-function allele of BREVIS RADIX (BRX) in the Columbia background, named brx-2, which shows enhanced response to ABA-mediated inhibition of root growth. BRX encodes a key regulator of cell proliferation and elongation in the root, which has been implicated in the brassinosteroid (BR) pathway as well as in the regulation of auxin-responsive gene expression. Mutants affected in BR signaling that are not impaired in root growth, such as bes1-D, bzr1-D, and bsu1-D, also showed enhanced sensitivity to ABA-mediated inhibition of root growth. Triple loss-of-function mutants affected in PP2Cs, which act as negative regulators of ABA signaling, showed impaired root growth in the absence of exogenous ABA, indicating that disturbed regulation of ABA sensitivity impairs root growth. In agreement with this result, diminishing ABA sensitivity of brx-2 by crossing it with a 35S:HAB1 ABA-insensitive line allowed significantly higher recovery of root growth after brassinolide treatment. Finally, transcriptomic analysis revealed that ABA treatment negatively affects auxin signaling in wild-type and brx-2 roots and that ABA response is globally altered in brx-2. Taken together, our results reveal an interaction between BRs, auxin, and ABA in the control of root growth and indicate that altered sensitivity to ABA is partly responsible for the brx short-root phenotype.
机译:为了进一步了解脱落酸(ABA)信号及其在生长调节中的作用,我们筛选了对ABA介导的根生长抑制高度敏感的拟南芥(Arabidopsis thaliana)突变体。结果,我们在哥伦比亚背景中鉴定了BREVIS RADIX(BRX)的功能丧失等位基因,命名为brx-2,其显示出对ABA介导的根生长抑制的增强反应。 BRX编码了根部细胞增殖和伸长的关键调控因子,该调控因子与油菜素类固醇(BR)途径以及生长素应答基因表达的调控有关。受BR信号影响的突变体,例如bes1-D,bzr1-D和bsu1-D,其在根部生长中没有受到损害,也显示出对ABA介导的根部生长抑制作用的增强敏感性。在PP2Cs中受影响的三重功能丧失突变体,充当ABA信号的负调控物,在没有外源ABA的情况下显示出根部生长受损,表明ABA敏感性调节受到干扰会损害根部生长。与该结果一致,通过将brx-2与35S:HAB1 ABA不敏感系杂交来降低brx-2的ABA敏感性,从而使油菜素内酯处理后根部生长的恢复显着提高。最后,转录组分析显示,ABA处理对野生型和brx-2根中的植物生长素信号产生负面影响,并且ABA反应在brx-2中整体改变。两者合计,我们的结果揭示了BRs,生长素和ABA在根生长控制中的相互作用,并表明对ABA敏感性的改变是造成brx短根表型的部分原因。

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