首页> 外文期刊>Journal of general plant pathology >Plant cell walls as suppliers of potassium and sodium ions for induced resistance in pea (Pisum sativum L.) and cowpea (Vigna unguiculata L.).
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Plant cell walls as suppliers of potassium and sodium ions for induced resistance in pea (Pisum sativum L.) and cowpea (Vigna unguiculata L.).

机译:植物细胞壁是豌豆(Pisum sativum L.)和cow豆(Vigna unguiculata L.)诱导抗性钾和钠离子供应商。

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摘要

When an elicitor is applied to plants to induce resistance, one of the first detectable events is the efflux of ions from the treated tissue. Here we are the first to demonstrate that an elicitor from Mycosphaerella pinodes evokes leakage of Na+ and K+ ions from isolated cell walls of pea and cowpea in vitro, as observed for epicotyl tissues. Pharmacological experiments showed that this elicitor-stimulated leakage was sensitive to vanadate and N-(3-methylphenyl)biphenyl-4-sulfonamide (NGXT-191), that inhibit a cell wall-associated ATPase (apyrase). Vanadate or NGXT-191 suppressed elicitor-induced superoxide generation and expression of defense genes in vivo. On the basis of these results, we assume that the leakage of these ions, probably associated with an ATP-dependent process(es) in the cell wall, is likely associated with induced defenses of pea and cowpea.
机译:当将激发子应用于植物以诱导抗性时,第一个可检测的事件之一是离子从处理过的组织中流出。在这里,我们是第一个证明来自松球菌的激发子在体外从豌豆和isolated豆的分离细胞壁中引起Na + 和K + 离子泄漏的方法。表皮组织。药理实验表明,这种激发物刺激的泄漏对钒酸盐和N-(3-甲基苯基)联苯-4-磺酰胺(NGXT-191)敏感,它们抑制细胞壁相关的ATPase(磷酸酶)。钒酸盐或NGXT-191在体内抑制了诱导子诱导的超氧化物的产生和防御基因的表达。根据这些结果,我们假设这些离子的泄漏可能与细胞壁中ATP依赖性过程有关,可能与豌豆和cow豆的诱导防御有关。

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