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首页> 外文期刊>Biochemical and Biophysical Research Communications >Interplant communication: airborne methyl jasmonate is essentially converted into JA and JA-Ile activating jasmonate signaling pathway and VOCs emission.
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Interplant communication: airborne methyl jasmonate is essentially converted into JA and JA-Ile activating jasmonate signaling pathway and VOCs emission.

机译:综合沟通:空气传播的茉莉酸甲酯基本上转化为激活JasMonate信号通路和VOCS排放的JA和JA-ILE。

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摘要

Methyl jasmonate (MeJA) was identified as an airborne signal involved in mediating interplant defense response communications over a decade ago. However, how MeJA activates plant defense systems and what becomes of the compound after it has done so has, thus far, remained unknown. To investigate this, Achyranthes bidentata plants were exposed to deuterated methyl jasmonate (d(2)MeJA) followed by absolute quantification of metabolic products of d(2)MeJA, and emissions of volatile organic compound (VOC) as defensive markers. We found that d(2)MeJA was metabolized mainly into deuterated jasmonic acid (d(2)JA) and jasmonoyl isoleucine (d(2)JA-Ile), and to a much lesser extent, deuterated jasmonoyl leucine (d(2)JA-Leu). Increases in d(2)JA-Ile/Leu and also endogenous JA-Ile/Leu were tightly co-related with, and significantly influenced the pattern and amount of, VOC emissions. The amount of accumulated d(2)JA-IIe was 13.1-fold higher than d(2)JA-Leu, whereas the amounts of JA-IIe and JA-Leu accumulated werealmost identical. This study demonstrates that exogenous MeJA activates defensive systems (such as VOC emissions) in receiver plants by essentially converting itself into JA and JA-IIe and initiating a signal transduction leading to VOC emissions and induction of endogenous JA-IIe and JA-Leu, which in turn cause further amplification of VOC emissions.
机译:茉莉酸甲酯(MEJA)被鉴定为在十年前调解中间防御响应通信的空中信号。然而,Meja如何激活植物防御系统,并且在其所做的情况下,该化合物的变为迄今为止,仍然是未知的。为了调查这一点,achyranthesBindata植物暴露于氘代甲基己酸酯(D(2)Meja),然后是D(2)Meja的代谢产物的绝对定量,以及挥发性有机化合物(VOC)的排放作为防御标志物。我们发现D(2)Meja主要被代谢到氘代茉莉酸(D(2)Ja)和Jasmonoyl异亮氨酸(D(2)Ja-Ile)中,并在较小程度上,氘代jasmonoyl亮氨酸(d(2) Ja-Leu)。 D(2)JA-ILE / Leu的增加和内源性JA-ILE / Leu与COM与VOC排放的图案和数量密切相关。累积的D(2)Ja-IIe的数量高于D(2)Ja-Leu,而Ja-IIE和Ja-Leu的数量累计过至此相同。本研究表明,外源MEJA通过基本上将自己转化为JA和JA-IIE并启动导致VOC排放和内源性JA-IIE和JA-LEU的诱导的信号转导,激活了接收器工厂中的防御系统(如VOC排放)。反过来导致VOC排放的进一步扩增。

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