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首页> 外文期刊>Plant molecular biology reporter >Root Growth of Arabidopsis thaliana Is Regulated by Ethylene and Abscisic Acid Signaling Interaction in Response to HrpN(Ea), a Bacterial Protein of Harpin Group
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Root Growth of Arabidopsis thaliana Is Regulated by Ethylene and Abscisic Acid Signaling Interaction in Response to HrpN(Ea), a Bacterial Protein of Harpin Group

机译:拟南芥根的生长受乙烯和脱落酸信号相互作用的调控,该相互作用是对HrpN(Ea)(一种Harpin细菌蛋白)的响应

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HrpN(Ea) is a harpin protein from Erwinia amylovora, a bacterial pathogen that causes fire blight in rosaceous plants. Treating plants with HrpN(Ea) stimulates ethylene and abscisic acid (ABA) to induce plant growth and drought tolerance, respectively. Herein, we report that both growth hormones cooperate to mediate the role of HrpNEa in promoting root growth of Arabidopsis thaliana seedlings. Root growth is promoted coordinately with elevation in levels of ABA and ethylene subsequent to soaking of germinating seeds of wild-type (WT) Arabidopsis in a solution of HrpN(Ea). However, these responses are arrested by inhibiting WT roots from synthesizing ethylene as well as sensing of ABA and ethylene. The effects of HrpNEa on roots are also nullified in ethylene-insensitive etr1-1 and ein5-1 mutants and in the ABA-insensitive mutant abi2-1 of Arabidopsis. These results provide evidence for presence of a relationship between root growth enhancement and signaling by ABA and ethylene in response to HrpN(Ea). Nevertheless, when HrpN(Ea) is applied to leaves, ethylene signaling is active in the absence of ABA signaling to promote plant growth. This suggests the presence of a different signaling mechanism in leaves from that in roots.
机译:HrpN(Ea)是一种来自淀粉小球藻(Erwinia amylovora)的harpin蛋白,该细菌是一种病原体,会引起蔷薇植物的火疫病。用HrpN(Ea)处理植物分别刺激乙烯和脱落酸(ABA)诱导植物生长和耐旱性。在本文中,我们报道了两种生长激素协同调节HrpNEa在促进拟南芥幼苗根生长中的作用。将野生型(WT)拟南芥发芽种子浸泡在HrpN(Ea)溶液中后,根部生长与ABA和乙烯水平的升高协调一致。但是,这些反应通过抑制WT根合成乙烯以及感测ABA和乙烯而被阻止。 HrpNEa对根的影响在拟南芥中对乙烯不敏感的etr1-1和ein5-1突变体以及对ABA不敏感的突变体abi2-1中也无效。这些结果提供了证据,表明根生长增强与ABA和乙烯响应HrpN(Ea)的信号传递之间存在关系。然而,当将HrpN(Ea)应用于叶片时,在没有ABA信号传导的情况下,乙烯信号传导是活跃的,以促进植物生长。这表明叶中存在与根中不同的信号传导机制。

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