首页> 外文期刊>Planta >The expression of the hydroxyproline-rich glycopeptide systemin precursor A in response to (a)biotic stress and elicitors is indicative of its role in the regulation of the wound response in tobacco (Nicotiana tabacum L.)
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The expression of the hydroxyproline-rich glycopeptide systemin precursor A in response to (a)biotic stress and elicitors is indicative of its role in the regulation of the wound response in tobacco (Nicotiana tabacum L.)

机译:响应(a)生物胁迫和激发子的前体A中富含羟脯氨酸的糖肽系统的表达表明其在调节烟草(Nicotiana tabacum L.)伤口反应中的作用

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摘要

Two hydroxyproline-rich glycopeptide systemin (TobHS) precursor proteins known as preproTobHypSys-A and B were recently discovered in tobacco (Nicotiana tabacum L.) [Pearce et al. in Nature 411:817–820, 2001]. In this work, the effect of elicitors, insect damage, and abiotic stress on the expression of preproTobHypSys-A ppTobHS-A) in tobacco plants was evaluated. Foliar application of methyl jasmonate preferentially induced the systemic expression of ppTobHS-A in leaves phyllotactically one position above-treated leaves. Abscisic acid strongly induced ppTobHS-A, but water-stress did not. Mechanical wound-induction of ppTobHS-A in young plantlets was rapidly (1 h) and simultaneously detected in wounded and upper unwounded leaves, whereas in older plants induction was slow (12 h) and localized. ppTobHS-A was induced in plants infested with Bemisia tabaci or damaged by herbivory with Manduca sexta larvae. Compared to mechanical wounding, larval herbivory induced a stronger and more stable expression of ppTobHS-A. Moreover, exposure to Manduca-damaged plants induced its expression in neighboring intact plants. In most treatments, the expression patterns of ppTobHS-A coincided with those of selected wound-responsive (WR) genes (e.g., PIOX, NtPI-I, TPI). This correlation was tighter in the wounded and MeJA-treated leaves, whereas in distal, undamaged leaves, it appeared to depend on the type of WR gene examined and on the type of damage sustained by the plant. These results are consistent with the perceived role of the TobHS in defense signaling.
机译:最近在烟草(烟草(Nicotiana tabacum L.))中发现了两种被称为preproTobHypSys-A和B的富含羟基脯氨酸的糖肽系统素(TobHS)前体蛋白[Pearce et al.。在自然411:817-820中,2001]。在这项工作中,评估了引发剂,昆虫损害和非生物胁迫对烟草植物中preproTobHypSys-A ppTobHS-A)表达的影响。叶面注射茉莉酸甲酯优先诱导ppTobHS-A在叶片上的系统表达,从理论上讲,它比处理过的叶片高一个位置。脱落酸强烈诱导ppTobHS-A,但水分胁迫却没有。 ppTobHS-A在年轻幼苗中的机械伤口诱导迅速(1 h),并且在受伤和上部未伤口的叶片中同时被检测到,而在老龄植物中,诱导缓慢(12 h)且局部化。 ppTobHS-A在感染了烟粉虱的植物中被诱导或被食草曼杜卡六倍体幼虫破坏。与机械损伤相比,幼虫食草诱导了ppTobHS-A的更强更稳定的表达。此外,暴露于受Manduca破坏的植物会诱导其在邻近的完整植物中表达。在大多数治疗中,ppTobHS-A的表达模式与选定的伤口反应性(WR)基因(例如PIOX,NtPI-1,TPI)一致。在受伤和经MeJA处理的叶片中,这种相关性更紧密,而在远端,未受损的叶片中,这种相关性似乎取决于所检查的WR基因的类型以及植物遭受的破坏的类型。这些结果与TobHS在防御信号中的感知作用一致。

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