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A role of hexokinases in plant resistance to oxidative stress and pathogen infection

机译:己糖激酶在植物抗氧化胁迫和病原体感染中的作用

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Previously, we reported that mitochondria-associated hexokinases are active in controlling programmed cell death in plants (Plant Cell 18, 2341-2355). Here, we investigated their role under abiotic- and biotic-stress conditions. Expression ofNbHxk1, aNicotiana benthamiana hexokinase gene, was stimulated by treatment with salicylic acid or methyl viologen (MV), and was also up-regulated by pathogen infection. In response to MV-induced oxidative stress, NbHxk1-silenced plants exhibited increased susceptibility, while the HXK1— and HXK2-overexpressingArabidopsis plants had enhanced tolerance. Moreover, those overexpressing plants showed greater resistance to the necrotrophic fungal pathogenAlternaria brassicicola. HXK-over-expression also mildly protected plants against the bacterial pathogenPseudomonas syringae pv.tomato DC3000, a response that was accompanied by increased H2O2 production and elevatedPR1 gene expression. These results demonstrate that higher levels of hexokinase confer improved resistance to MV-induced oxidative stress and pathogen infection.
机译:先前,我们报道了与线粒体相关的己糖激酶在控制植物中程序性细胞死亡方面具有活性(Plant Cell 18,2341-2355)。在这里,我们调查了它们在非生物和生物胁迫条件下的作用。水杨酸或甲基紫精(MV)处理可刺激本氏烟草己糖激酶基因NbHxk1的表达,并被病原体感染上调。响应MV诱导的氧化应激,沉默的NbHxk1植物表现出更高的敏感性,而过表达HXK1-和HXK2的拟南芥植物具有更高的耐受性。此外,那些过表达植物显示出对坏死性真菌病原体Alternaria braciicicola的更大抗性。 HXK的过量表达还可以轻度地保护植物免受细菌病原体丁香假单胞菌番茄DC3000的侵害,这种应答伴随着H2 O2 产生增加和PR1基因表达升高。这些结果表明,较高水平的己糖激酶可提高对MV诱导的氧化应激和病原体感染的抵抗力。

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