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Production of cecropin A in transgenic rice plants has an impact on host gene expression

机译:在转基因水稻植物中的Cecropin A产生对宿主基因表达的影响

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Expression of the cecropin A gene in rice confers resistance to the rice blast fungus Magnaporthe oryzae. In this study, a polymerase chain reaction-based suppression subtractive hybridization approach was used to generate a cDNA macroarray from the elite japonica rice (Oryza sativa L.) cultivar 'Senia'. Gene expression studies revealed that the expression of components of the protein secretory and vesicular transport machinery is co-ordinately activated at the pre-invasive stage of infection of rice by the blast fungus. Comparisons of gene expression between wild-type and cecropin A plants revealed the over-expression of genes involved in protection against oxidative stress in transgenic plants in the absence of the pathogen, which correlated well with the tolerance of these plants to oxidative stress. A subcellular fractionation analysis suggested that cecropin A accumulates in the endoplasmic reticulum in cecropin A rice. Moreover, a large number of genes related to the processes of synthesis, folding and stabilization of proteins that enter into the secretory pathway are over-expressed in cecropin A rice, confirming that these plants constitutively express the unfolded protein response. Transgenic expression of cecropin A in rice has an effect on the transcriptional reprogramming that accompanies plant adaptation to fungal infection. Overall, this study provides evidence for transgene-induced changes in gene expression in cecropin A rice under both optimal growth conditions and stress conditions imposed by fungal infection. The data also indicate that resistance to blast in cecropin A rice may be the consequence of a combination of the antifungal activity of cecropin A and cecropin A-mediated over-expression of rice genes.
机译:CECROPIN在水稻中的表达赋予稻瘟病菌抗稻瘟病患者的抗性。在该研究中,使用基于聚合酶链反应的抑制减法杂交方法来产生来自Elite Japonica Rice(Oryza sativa L.)栽培品种'senia'的cDNA macroarray。基因表达研究表明,蛋白质分泌物和囊状输送机械的组分的表达在通过喷丸真菌在水稻的预侵袭阶段进行额定激活。野生型和Cecropin之间的基因表达的比较揭示了在没有病原体的情况下涉及转基因植物中氧化应激的基因的过表达,这与这些植物对氧化应激的耐受性良好。亚细胞分级分析表明,Cecropin A积聚在Cecropin A米中的内质网。此外,与进入分泌途径的合成方法,折叠和稳定化有关的大量基因在Cecropin A米中过度表达,证实这些植物组成型表达展开的蛋白质反应。 CeCropin A在水稻中的转基因表达对伴随植物适应对真菌感染的转录重编程有影响。总体而言,本研究提供了在真菌感染施加的最佳生长条件和胁迫条件下CeCropin A米中基因表达的基因表达变化的证据。数据还表明,CeCropin抗爆炸抗爆炸水稻可能是CeCropin A和Cecropin A-介导的水稻基因过表达的抗真菌活性的结合的结果。

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