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首页> 外文期刊>Physiological and Molecular Plant Pathology >Betacyanin synthesis in red beet (Beta vulgaris) leaves induced by wounding and bacterial infiltration is preceded by an oxidative burst
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Betacyanin synthesis in red beet (Beta vulgaris) leaves induced by wounding and bacterial infiltration is preceded by an oxidative burst

机译:受伤和细菌浸入诱导的红甜菜(寻常甜菜)叶片中的甜菜素合成先于氧化爆发

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Red beet (Beta vulgaris) accumulates betacyanins, mainly betanin, in the store root. We report here that in leaves, the synthesis of betacyanins is induced by wounding or infiltration with an avirulent Pseudomonas syringae pv. tabaci or Agrobacterium tumefaciens. A red-violet pigmentation characteristic of betacyanin bordered the damaged tissue in wounded leaves. P. syringae infiltration induced a hypersensitive response (HR) and betacyanins accumulated in the epidermis of the region surrounding the dry tissue. In contrast, A. tumefaciens infiltration did not induce the HR. The tissue maintained a turgid appearance and betacyanins accumulated in the epidermis were uniformly distributed in the infiltrated area. It was also found that infiltration with A. tumefaciens elicited extracellular production of reactive oxygen species (ROS) prior to the accumulation of betacyanins. Infiltration with an H2O2-generating system (glucose/glucose oxidase) also induced betacyanin synthesis, whereas, the infiltration with diphenylene iodonium chloride (DPI), an NADPH oxidase inhibitor. reduced the A. tumefaciens-induced betacyanin accumulation. We suggest that ROS are signals inducing the betacyanin synthesis, and that betacyanins may act as ROS scavengers, limiting damage caused by wounding and bacterial infiltration. Copyright 2004 Elsevier Ltd. All rights reserved.
机译:红甜菜(Beta vulgaris)在商店的根部积累了花青素,主要是甜菜碱。我们在这里报告说,在叶中,无氰假单胞菌假单胞菌pv的伤口或浸润诱导了甜菜色素的合成。烟粉虱或根癌农杆菌。 β-花青素的紫红色色素沉着特征位于受伤叶片的受损组织边缘。丁香假单胞菌浸润诱导了超敏反应(HR),并且β-花青素积聚在干燥组织周围区域的表皮中。相反,根癌农杆菌的浸润不诱导HR。组织保持节节状,表皮中积累的β花青素均匀地分布在浸润区域。还发现,根癌农杆菌的浸润在积累花青素之前引起细胞外产生活性氧(ROS)。生成H2O2的系统(葡萄糖/葡萄糖氧化酶)的浸润也诱导了花青素的合成,而NADPH氧化酶抑制剂二苯碘代氯化碘(DPI)的浸润。减少了根癌农杆菌诱导的β-花青素积累。我们建议ROS是诱导β-花青素合成的信号,并且β-花青素可能充当ROS的清除剂,从而限制了由伤口和细菌浸润引起的损害。版权所有2004 ElsevierLtd。保留所有权利。

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