首页> 外文期刊>Journal of Experimental Botany >AtrbohD and AtrbohF positively regulate abscisic acid-inhibited primary root growth by affecting Ca2+ signalling and auxin response of roots in Arabidopsis.
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AtrbohD and AtrbohF positively regulate abscisic acid-inhibited primary root growth by affecting Ca2+ signalling and auxin response of roots in Arabidopsis.

机译:AtrbohD和AtrbohF通过影响拟南芥根的Ca 2 + 信号传导和植物生长素反应,正调控脱落酸抑制的初生根生长。

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摘要

Reactive oxygen species (ROS) originating from the NADPH oxidases AtrbohD and AtrbohF play an important role in abscisic acid (ABA)-inhibited primary root growth in Arabidopsis. However, the mechanisms underlying this process remain elusive. In this study, the double mutant atrbohD1/F1 and atrbohD2/F2, in which both AtrbohD and AtrbohF were disrupted, were less sensitive to ABA suppression of root cell elongation than wild-type (WT) plants. Furthermore, the double mutants showed impaired ABA responses in roots, including ROS generation, cytosolic Ca2+ increases, and activation of plasma membrane Ca2+-permeable channels compared with WT. Exogenous H2O2 can activate the Ca2+ currents in roots of atrbohD1/F1. In addition, exogenous application of the auxin transport inhibitor naphthylphthalamic acid effectively promoted ABA inhibition of root growth of the mutants relative to that of WT. The ABA-induced decreases in auxin sensitivity of the root tips were more pronounced in WT than in atrbohD1/F1. These findings suggest that both AtrbohD and AtrbohF are essential for ABA-promoted ROS production in roots. ROS activate Ca2+ signalling and reduce auxin sensitivity of roots, thus positively regulating ABA-inhibited primary root growth in Arabidopsis.
机译:源自NADPH氧化酶AtrbohD和AtrbohF的活性氧(ROS)在脱落酸(ABA)抑制的拟南芥初级根生长中起重要作用。但是,此过程的基础机制仍然难以捉摸。在这项研究中,双重突变体atrbohD1 / F1和atrbohD2 / F2(其中AtrbohD和AtrbohF均被破坏)对ABA抑制根细胞伸长的敏感性不如野生型(WT)植物。此外,与WT相比,双突变体在根部显示出受损的ABA响应,包括ROS生成,胞质Ca 2 + 增加以及质膜Ca 2 + 可渗透通道的激活。 。外源H 2 O 2 可以激活atrbohD1 / F1根中的Ca 2 + 电流。另外,外源生长素运输抑制剂萘基邻苯二甲酸酯的应用有效地促进了ABA相对于WT对突变体根部生长的抑制。 ABA诱导的根尖生长素敏感性降低在WT中比在attrbohD1 / F1中更为明显。这些发现表明,AtrbohD和AtrbohF对ABA促进根中ROS的产生都是必不可少的。 ROS激活Ca 2 + 信号传导并降低根的植物生长素敏感性,从而正向调节ABA抑制拟南芥中初级根的生长。

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