首页> 美国卫生研究院文献>Plant Physiology >Focus Issue on Biochemistry of Plant Volatiles: Herbivore-Induced Defense Response in a Model Legume. Two-Spotted Spider Mites Induce Emission of (E)-β-Ocimene and Transcript Accumulation of (E)-β-Ocimene Synthase in Lotus japonicus
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Focus Issue on Biochemistry of Plant Volatiles: Herbivore-Induced Defense Response in a Model Legume. Two-Spotted Spider Mites Induce Emission of (E)-β-Ocimene and Transcript Accumulation of (E)-β-Ocimene Synthase in Lotus japonicus

机译:植物挥发物生物化学的重点问题:模型豆科植物中草食动物引起的防御反应。二斑叶螨诱导莲ap中(E)-β-西美精的排放和(E)-β-西美精合酶的转录积累

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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 (LjEβOS) from a model legume, Lotus japonicus. Recombinant LjEβOS enzyme produced (E)-β-ocimene (98%) and its Z-isomer (2%). Transcripts of LjEβOS were induced in L. japonicus plants infested with two-spotted spider mites (Tetranychus urticae), coinciding with increasing emissions of (E)-β-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 LjEβOS is involved in the herbivore-induced indirect defense response of spider mite-infested L. japonicus via de novo formation and emission (E)-β-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 LjEβOS transcripts in L. japonicus. However, wounding or ALA did not result in elevated release of (E)-β-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)-β-ocimene in L. japonicus involves control mechanisms in addition to up-regulation of LjEβOS transcripts.
机译:植物对草食动物的间接防御通常涉及诱导释放出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(LjEβOS)的分离和表征。重组LjEβOS酶产生(E)-β-ocimene(98%)及其Z-异构体(2%)。 LjEβOS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-西门烯以及其他挥发物,(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。我们认为LjEβOS通过从头形成和发射(E)-β -ocimene参与了草食动物诱导的红蜘蛛侵染的日本血吸虫的间接防御反应。机械损伤叶片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)也诱导 L中LjEβOS转录本的瞬时升高。 japonicus 。但是,受伤或ALA不会导致( E )-β -ocimene的释放升高。食草,机械伤或ALA处理后挥发物排放的差异表明,单一机械伤事件或ALA均未模拟食草动物活性的影响,并表明食草动物诱导的( E )-< L中的em>β -ocimene。 japonicus 除了上调LjEβOS转录本外,还涉及控制机制。

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