首页> 美国卫生研究院文献>Plant Physiology >Effects of Feeding Spodoptera littoralis on Lima Bean Leaves. II. Continuous Mechanical Wounding Resembling Insect Feeding Is Sufficient to Elicit Herbivory-Related Volatile Emission
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Effects of Feeding Spodoptera littoralis on Lima Bean Leaves. II. Continuous Mechanical Wounding Resembling Insect Feeding Is Sufficient to Elicit Herbivory-Related Volatile Emission

机译:饲食斜纹夜蛾对利马豆叶片的影响。二。连续机械伤口类似昆虫的喂食足以引起草食相关的挥发性排放

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摘要

Herbivore feeding elicits defense responses in infested plants, including the emission of volatile organic compounds that can serve as indirect defense signals. Until now, the contribution of plant tissue wounding during the feeding process in the elicitation of defense responses has not been clear. For example, in lima bean (Phaseolus lunatus), the composition of the volatiles induced by both the insect caterpillar Spodoptera littoralis and the snail Cepaea hortensis is very similar. Thus, a mechanical caterpillar, MecWorm, has been designed and used in this study, which very closely resembles the herbivore-caused tissue damage in terms of similar physical appearance and long-lasting wounding period on defined leaf areas. This mode of treatment was sufficient to induce the emission of a volatile organic compound blend qualitatively similar to that as known from real herbivore feeding, although there were significant quantitative differences for a number of compounds. Moreover, both the duration and the area that has been mechanically damaged contribute to the induction of the whole volatile response. Based on those two parameters, time and area, which can replace each other to some extent, a damage level can be defined. That damage level exhibits a close linear relationship with the accumulation of fatty acid-derived volatiles and monoterpenes, while other terpenoid volatiles and methyl salicylate respond in a nonlinear manner. The results strongly suggest that the impact of mechanical wounding on the induction of defense responses during herbivore feeding was until now underestimated. Controlled and reproducible mechanical damage that strongly resembles the insect's feeding process represents a valuable tool for analyzing the role of the various signals involved in the induction of plant defense reactions against herbivory.
机译:草食动物的进食引起受侵染植物的防御反应,包括排放可用作间接防御信号的挥发性有机化合物。迄今为止,尚不清楚在进食过程中植物组织受伤在引起防御反应中的作用。例如,在利马豆(Phaseolus lunatus)中,由昆虫毛毛虫斜纹夜蛾和蜗牛Cepaea hortensis诱导的挥发物的组成非常相似。因此,在本研究中设计并使用了机械毛毛虫MecWorm,就相似的物理外观和在确定的叶片区域上的持久伤口期而言,它非常类似于草食动物引起的组织损伤。这种处理方式足以引起挥发性有机化合物混合物的定性释放,其质量与真正的草食动物饲料已知的相似,尽管许多化合物之间存在明显的定量差异。而且,持续时间和已经被机械损坏的区域都有助于诱发整个挥发性反应。基于时间和面积这两个可以在某种程度上相互替代的参数,可以定义损坏程度。该破坏水平与脂肪酸衍生的挥发物和单萜的积累表现出紧密的线性关系,而其他萜类挥发物和水杨酸甲酯则以非线性方式响应。结果强烈表明,迄今为止,机械伤对草食动物进食过程中防御反应的诱导的影响被低估了。与昆虫的摄食过程极为相似的受控和可再现的机械损伤,是分析涉及诱导食草植物防御反应的各种信号的作用的宝贵工具。

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