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The Heme Oxygenase/Carbon Monoxide System Is Involved in the Auxin-Induced Cucumber Adventitious Rooting Process

机译:血红素加氧酶/一氧化碳系统参与生长素诱导的黄瓜不定根生根过程

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摘要

Indole acetic acid (IAA) is an important regulator of adventitious rooting via the activation of complex signaling cascades. In animals, carbon monoxide (CO), mainly generated by heme oxygenases (HOs), is a significant modulator of inflammatory reactions, affecting cell proliferation and the production of growth factors. In this report, we show that treatment with the auxin transport inhibitor naphthylphthalamic acid prevented auxin-mediated induction of adventitious rooting and also decreased the activity of HO and its by-product CO content. The application of IAA, HO-1 activator/CO donor hematin, or CO aqueous solution was able to alleviate the IAA depletion-induced inhibition of adventitious root formation. Meanwhile, IAA or hematin treatment rapidly activated HO activity or HO-1 protein expression, and CO content was also enhanced. The application of the HO-1-specific inhibitor zinc protoporphyrin IX (ZnPPIX) could inhibit the above IAA and hematin responses. CO aqueous solution treatment was able to ameliorate the ZnPPIX-induced inhibition of adventitious rooting. Molecular evidence further showed that ZnPPIX mimicked the effects of naphthylphthalamic acid on the inhibition of adventitious rooting, the down-regulation of one DnaJ-like gene (CSDNAJ-1), and two calcium-dependent protein kinase genes (CSCDPK1 and CSCDPK5). Application of CO aqueous solution not only dose-dependently blocked IAA depletion-induced inhibition of adventitious rooting but also enhanced endogenous CO content and up-regulated CSDNAJ-1 and CSCDPK1/5 transcripts. Together, we provided pharmacological, physiological, and molecular evidence that auxin rapidly activates HO activity and that the product of HO action, CO, then triggers the signal transduction events that lead to the auxin responses of adventitious root formation in cucumber (Cucumis sativus).
机译:吲哚乙酸(IAA)是通过复杂的信号级联反应激活的不定根的重要调节剂。在动物中,主要由血红素加氧酶(HOs)产生的一氧化碳(CO)是炎症反应的重要调节剂,影响细胞增殖和生长因子的产生。在此报告中,我们显示了用生长素运输抑制剂萘基邻苯二甲酸酯处理可防止生长素介导的不定根生根,并且还降低了HO的活性及其副产物CO含量。 IAA,HO-1活化剂/ CO供体血凝素或CO水溶液的应用能够减轻IAA耗尽诱导的不定根形成的抑制作用。同时,IAA或血红素处理可快速激活HO活性或HO-1蛋白表达,并且CO含量也增加。 HO-1特异性抑制剂锌原卟啉IX(ZnPPIX)的应用可以抑制上述IAA和血红素反应。 CO水溶液处理能够改善ZnPPIX诱导的对不定根的抑制。分子证据进一步表明,ZnPPIX模仿了萘基邻苯二甲酸酯对不定根的抑制,一个DnaJ样基因(CSDNAJ-1)和两个钙依赖性蛋白激酶基因(CSCDPK1和CSCDPK5)下调的作用。 CO水溶液的应用不仅剂量依赖性地阻断了IAA耗尽对不定根的抑制,而且提高了内源性CO含量并上调了CSDNAJ-1和C​​SCDPK1 / 5转录本。在一起,我们提供了药理,生理和分子学证据,证明生长素能快速激活HO活性,HO作用的产物CO,然后触发信号转导事件,导致黄瓜(Cucumis sativus)不定根形成的生长素反应。

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