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Ectopic Expression of Hrf1 Enhances Bacterial Resistance via Regulation of Diterpene Phytoalexins Silicon and Reactive Oxygen Species Burst in Rice

机译:通过植物抗毒素二萜硅谷的监管和活性氧Hrf1增强了细菌耐药性的异位表达水稻突发

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摘要

Harpin proteins as elicitor derived from plant gram negative bacteria such as Xanthomonas oryzae pv. oryzae (Xoo), Erwinia amylovora induce disease resistance in plants by activating multiple defense responses. However, it is unclear whether phytoalexin production and ROS burst are involved in the disease resistance conferred by the expression of the harpinXoo protein in rice. In this article, ectopic expression of hrf1 in rice enhanced resistance to bacterial blight. Accompanying with the activation of genes related to the phytoalexin biosynthesis pathway in hrf1-transformed rice, phytoalexins quickly and consistently accumulated concurrent with the limitation of bacterial growth rate. Moreover, the hrf1-transformed rice showed an increased ability for ROS scavenging and decreased hydrogen peroxide (H2O2) concentration. Furthermore, the localization and relative quantification of silicon deposition in rice leaves was detected by scanning electron microscopy (SEM) and energy-dispersive X-ray spectrometer (EDS). Finally, the transcript levels of defense response genes increased in transformed rice. These results show a correlation between Xoo resistance and phytoalexin production, H2O2, silicon deposition and defense gene expression in hrf1-transformed rice. These data are significant because they provide evidence for a better understanding the role of defense responses in the incompatible interaction between bacterial disease and hrf1-transformed plants. These data also supply an opportunity for generating nonspecific resistance to pathogens.
机译:Harpin蛋白作为激发剂,来源于植物革兰氏阴性细菌,例如米氏黄单胞菌(Xanthomonas oryzae pv)。米草(欧文氏菌)通过激活多种防御反应诱导植物抗病性。然而,尚不清楚植物抗毒素的产生和ROS的爆发是否与水稻中harpinXoo蛋白表达所赋予的抗病性有关。在本文中,hrf1在水稻中的异位表达增强了对白叶枯病的抗性。伴随着hrf1转化水稻中植物抗毒素生物合成途径相关基因的激活,植物抗毒素迅速而持续地积累,同时限制了细菌的生长速度。此外,经过hrf1转化的水稻显示出更高的清除ROS能力,并降低了过氧化氢(H2O2)浓度。此外,通过扫描电子显微镜(SEM)和能量色散X射线光谱仪(EDS)检测了水稻叶片中硅沉积的定位和相对定量。最后,防御反应基因的转录水平在转化水稻中增加。这些结果表明在hrf1转化的水稻中,Xoo抗性与植物抗毒素产生,H2O2,硅沉积和防御基因表达之间存在相关性。这些数据很重要,因为它们为更好地理解防御反应在细菌性疾病和hrf1转化植物之间不相容相互作用中的作用提供了证据。这些数据也为产生对病原体的非特异性抗性提供了机会。

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