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β-环糊精-血红素复合物诱导番茄侧根形成:涉及一氧化氮和血红素加氧酶 1。

β-Cyclodextrin-hemin complex-induced lateral root formation in tomato: involvement of nitric oxide and heme oxygenase 1.

机构信息

College of Life Sciences, Laboratory Center of Life Sciences, Nanjing Agricultural University, Nanjing, 210095, China.

出版信息

Plant Cell Rep. 2015 Mar;34(3):381-93. doi: 10.1007/s00299-014-1716-2. Epub 2014 Nov 30.

Abstract

β-Cyclodextrin-hemin complex-induced tomato lateral root formation was associated with nitric oxide and heme oxygenase 1 by modulating cell cycle regulatory genes. β-Cyclodextrin-hemin complex (β-CDH), a complex by combining β-cyclodextrin (β-CD) with hemin, a heme oxygenase 1 (HO1) inducer, was a trigger of cucumber adventitious root formation by enhancing HO1 gene expression. In this report, our results identified the previously unknown function of β-CDH in plants: the inducer of tomato lateral root (LR) formation. β-CDH-triggered LR formation is hemin-specific, since β-CD failed to induce LR development. Because nitric oxide (NO) is involved in LR formation, the correlation of β-CDH with NO and HO1 was investigated. Our analysis suggested that β-CDH induced an increase in endogenous NO production, followed by up-regulation of tomato HO1 gene and LR formation, all of which were mimicked by hemin and two NO-releasing compounds (SNP and GSNO). The induction of HO1 gene expression and LR formation triggered by β-CDH or hemin were significantly blocked by an inhibitor of HO1. Further results revealed that both β-CDH- and SNP-stimulated HO1 gene expression and thereafter LR formation were sensitive to the removal of NO with a potent NO scavenger, and the responses of SNP were significantly blocked by an inhibitor of HO1. Molecular evidence illustrated that representative cell cycle regulatory genes, including SlCDKA1, SlCYCA3;1, SlCYCA2;1, and SlCYCD3;1, were significantly up-regulated by β-CDH and SNP, but obviously blocked when seedlings were co-treated with the scavenger of NO or the inhibitor of HO1. In summary, our physiological and molecular evidence demonstrated that both NO and HO1 were involved in the β-CDH-induced LR formation with, at least partially, HO1 acting downstream of NO signaling.

摘要

β-环糊精-血红素复合物通过调节细胞周期调控基因诱导番茄侧根形成,与一氧化氮和血红素加氧酶 1 有关。β-环糊精-血红素复合物(β-CDH)是通过将β-环糊精(β-CD)与血红素(HO1 诱导剂)结合而形成的一种复合物,通过增强 HO1 基因表达,作为黄瓜不定根形成的触发因子。在本报告中,我们的结果确定了β-CDH 在植物中的先前未知功能:诱导番茄侧根(LR)形成。β-CDH 触发的 LR 形成是血红素特异性的,因为β-CD 不能诱导 LR 发育。由于一氧化氮(NO)参与 LR 形成,因此研究了β-CDH 与 NO 和 HO1 的相关性。我们的分析表明,β-CDH 诱导内源性 NO 产生增加,随后番茄 HO1 基因和 LR 形成上调,血红素和两种 NO 释放化合物(SNP 和 GSNO)均可模拟这一过程。β-CDH 或血红素诱导的 HO1 基因表达和 LR 形成均被 HO1 抑制剂显著阻断。进一步的结果表明,β-CDH 和 SNP 刺激的 HO1 基因表达和随后的 LR 形成均对强 NO 清除剂去除 NO 敏感,并且 SNP 的反应被 HO1 抑制剂显著阻断。分子证据表明,包括 SlCDKA1、SlCYCA3;1、SlCYCA2;1 和 SlCYCD3;1 在内的代表性细胞周期调控基因,均被β-CDH 和 SNP 显著上调,但当幼苗同时用 NO 清除剂或 HO1 抑制剂处理时,明显受到抑制。总之,我们的生理和分子证据表明,NO 和 HO1 均参与了β-CDH 诱导的 LR 形成,至少部分 HO1 作为 NO 信号下游的作用。

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