首页> 美国卫生研究院文献>Plant Physiology >Focus Issue on Plant-Herbivore Interactions: Effects of Feeding Spodoptera littoralis on Lima Bean Leaves: IV. Diurnal and Nocturnal Damage Differentially Initiate Plant Volatile Emission
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Focus Issue on Plant-Herbivore Interactions: Effects of Feeding Spodoptera littoralis on Lima Bean Leaves: IV. Diurnal and Nocturnal Damage Differentially Initiate Plant Volatile Emission

机译:植物与草食动物相互作用的焦点问题:食斜纹夜蛾对利马豆叶片的影响:IV。昼夜伤害对植物挥发性释放的影响

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摘要

Continuous mechanical damage initiates the rhythmic emission of volatiles in lima bean (Phaseolus lunatus) leaves; the emission resembles that induced by herbivore damage. The effect of diurnal versus nocturnal damage on the initiation of plant defense responses was investigated using MecWorm, a robotic device designed to reproduce tissue damage caused by herbivore attack. Lima bean leaves that were damaged by MecWorm during the photophase emitted maximal levels of β-ocimene and (Z)-3-hexenyl acetate in the late photophase. Leaves damaged during the dark phase responded with the nocturnal emission of (Z)-3-hexenyl acetate, but with only low amounts of β-ocimene; this emission was followed by an emission burst directly after the onset of light. In the presence of 13CO2, this light-dependent synthesis of β-ocimene resulted in incorporation of 75% to 85% of 13C, demonstrating that biosynthesis of β-ocimene is almost exclusively fueled by the photosynthetic fixation of CO2 along the plastidial 2-C-methyl-d-erythritol 4-P pathway. Jasmonic acid (JA) accumulated locally in direct response to the damage and led to immediate up-regulation of the P. lunatus β-ocimene synthase gene (PlOS) independent of the phase, that is, light or dark. Nocturnal damage caused significantly higher concentrations of JA (approximately 2–3 times) along with enhanced expression levels of PlOS. Transgenic Arabidopsis thaliana transformed with PlOS promoter∷β-glucuronidase fusion constructs confirmed expression of the enzyme at the wounded sites. In summary, damage-dependent JA levels directly control the expression level of PlOS, regardless of light or dark conditions, and photosynthesis is the major source for the early precursors of the 2-C-methyl-d-erythritol 4-P pathway.
机译:持续的机械损伤使利马豆(Phaseolus lunatus)叶片的挥发物有规律地释放;排放类似于草食动物的损害。使用MecWorm(一种旨在重现由草食动物攻击造成的组织损伤的机器人设备)研究了昼夜伤害与夜间伤害对植物防御反应启动的影响。在光相期间被MecWorm破坏的利马豆叶在光相后期发出最大水平的β-烯丙烯酸和(Z)-3-己烯基乙酸酯。在黑暗阶段受损的叶片对夜间释放乙酸(Z)-3-己烯基乙酸酯有反应,但β-烯丙烯醚的量很少。该发射之后,紧接在光开始后便发生发射猝发。在 13 CO2存在下,这种光依赖的β-ocimene合成导致掺入75%至85%的 13 C,这表明β-ocimene的生物合成CO2沿着质体2-C-甲基-d-赤藓糖醇4-P途径的光合作用几乎完全是由二氧化碳引起的。茉莉酸(JA)直接响应于损伤而在局部积累,并导致P. lunatusβ-ocimene合酶基因(PlOS)立即上调,而与相位无关,即亮或暗。夜间损害导致JA的浓度显着升高(约2至3倍),并且PlOS的表达水平增强。用PlOS启动子∷β-葡糖醛酸糖苷酶融合构建体转化的转基因拟南芥证实了该酶在受伤部位的表达。总而言之,与损伤有关的JA水平直接控制P10S的表达水平,而不管明亮或黑暗条件如何,并且光合作用是2-C-甲基-d-赤藓糖醇4-P途径的早期前体的主要来源。

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