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首页> 外文期刊>Plant physiology >Herbivore-induced defense response in a model legume. Two-spotted spider mites induce emission of (E)-beta-ocimene and transcript accumulation of (E)-beta-ocimene synthase in Lotus japonicus
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Herbivore-induced defense response in a model legume. Two-spotted spider mites induce emission of (E)-beta-ocimene and transcript accumulation of (E)-beta-ocimene synthase in Lotus japonicus

机译:草食动物引起的豆科植物防御反应。两个斑点的蜘蛛螨在莲花中诱导(E)-β-ocimene的发射和(E)-β-ocimene合酶的转录本积累

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摘要

Indirect defense of plants against herbivores often involves the induced emission of volatile infochemicals including terpenoids that attract natural enemies of the herbivores. We report the isolation and characterization of a terpene synthase cDNA (LjEbetaOS) from a model legume, Lotus japonicus. Recombinant LjEbetaOS enzyme produced (E)-beta-ocimene (98%) and its Z-isomer (2%). Transcripts of LjEbetaOS were induced in L. japonicus plants infested with two-spotted spider mites (Tetranychus urticae), coinciding with increasing emissions of (E)-beta-ocimene as well as other volatiles, (Z)-3-hexenyl acetate and (E)-4,8-dimethyl-1,3,7-nonatriene, by the infested plants. We suggest that LjEbetaOS is involved in the herbivore-induced indirect defense response of spider mite-infested L. japonicus via de novo formation and emission (E)-beta-ocimene. Mechanical wounding of the leaves or application of alamethicin (ALA), a potent fungal elicitor of plant volatile emission, also induced transiently increased levels of LjEbetaOS transcripts in L. japonicus. However, wounding or ALA did not result in elevated release of (E)-beta-ocimene. Differences in volatile emissions after herbivory, mechanical wounding, or treatment with ALA suggest that neither a single mechanical wounding event nor ALA simulate the effect of herbivore activity and indicate that herbivore-induced emission of (E)-beta-ocimene in L. japonicus involves control mechanisms in addition to up-regulation of LjEbetaOS transcripts.
机译:植物对草食动物的间接防御通常涉及诱导释放挥发性信息化学物质,包括吸引草食动物天敌的萜类化合物。我们报告从模型豆科植物莲花japonicus的萜烯合酶cDNA(LjEbetaOS)的分离和表征。重组LjEbetaOS酶产生(E)-β-ocimene(98%)及其Z-异构体(2%)。 LjEbetaOS的转录本是在被两斑叶螨(Tetranychus urticae)侵染的日本血吸虫植物中诱导产生的,这与(E)-β-ocimene以及其他挥发物,(Z)-3-己烯基乙酸酯和( E)-4,8-二甲基-1,3,7-壬二烯,被被感染的植物。我们建议,LjEbetaOS参与了草食动物诱导的蠕虫侵害的日本L. japonicus通过从头形成和发射(E)-beta-ocimene的间接防御反应。机械损伤叶子或应用杀虫剂阿拉米菌素(ALA)(一种有效的植物挥发物释放真菌引发剂),还可以诱导刺参中LjEbetaOS转录物的水平瞬时升高。但是,受伤或ALA并未导致(E)-β-ocimene释放的升高。食草,机械伤或ALA治疗后挥发物排放的差异表明,单一机械伤事件和ALA均未模拟食草动物活性的影响,并表明日本草猪草中食草动物诱导的(E)-β-ocimene排放涉及除了上调LjEbetaOS转录本以外的其他控制机制。

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