首页> 美国卫生研究院文献>Plant Physiology >Molecular Interactions between the Specialist Herbivore Manduca sexta (Lepidoptera Sphigidae) and Its Natural Host Nicotiana attenuata. VIII. An Unbiased GCxGC-ToFMS Analysis of the Plants Elicited Volatile Emissions
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Molecular Interactions between the Specialist Herbivore Manduca sexta (Lepidoptera Sphigidae) and Its Natural Host Nicotiana attenuata. VIII. An Unbiased GCxGC-ToFMS Analysis of the Plants Elicited Volatile Emissions

机译:专业食草动物天蛾(鳞翅目天蛾科)与其天然寄主烟草弱毒株之间的分子相互作用。八。植物的挥发性挥发物的无偏GCxGC-ToFMS分析

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摘要

Treating wounds in Nicotiana attenuata leaves with Manduca sexta oral secretions (W+OS) mimics most changes elicited by M. sexta herbivory, but an unbiased analysis of the effect of the different OS constituents on volatile emissions is lacking. We used two-dimensional gas chromatography/time-of-flight (GCxGC-ToF) mass spectrometry combined with multivariate statistics to parse volatiles into regulatory patterns. Volatiles released by wounding alone and by the alkalinity of OS were assessed by applying a buffer known to mimic the pH-mediated changes of OS elicitation (pectin methyl esterase activation and methanol release). The activities of fatty acid amino acid conjugates, well-known elicitors of antiherbivore defenses, and of 2-hydroxyoctadecatrienoic acid, a newly discovered signal in OS, were determined. Approximately 400 analytes were detected after deconvolution and alignment of GCxGC data; 35 volatiles were significantly regulated upon W+OS. Two-thirds of these were specifically regulated by OS, being either amplified (most terpenoids and certain hexenylesters) or strongly repressed (many short-chain alcohols and some aromatic and hexenylester derivatives). Fatty acid amino acid conjugates played a central role in this pattern of regulation, since they induced the emission of half of OS-elicited volatiles and inhibited the production of almost all OS-repressed volatiles; 2-hydroxyoctadecatrienoic acid influenced emission of trans-α-bergamotene, while other unknown OS constituents amplified hexenylester production. We conclude that the complex bouquet of herbivory-elicited volatiles results from the complex modulations of the wound response by diverse cues found in OS. This work also underscores the value of ultra-high-resolution GCxGC-ToF analysis combined with the nontargeted mining of the resulting data.
机译:用曼杜卡六倍体口腔分泌物(W + OS)处理减毒烟草叶片上的伤口可模拟六倍体食草分枝杆菌引起的大多数变化,但缺乏对不同OS成分对挥发物排放的影响的公正分析。我们将二维气相色谱/飞行时间(GCxGC-ToF)质谱与多元统计数据结合使用,将挥发物解析为调控模式。通过应用已知可模拟pH介导的OS诱变(果胶甲基酯酶活化和甲醇释放)的缓冲液,评估单独受伤和OS碱度释放的挥发物。确定了脂肪酸氨基酸缀合物,抗草食动物防御的著名引发剂和2-羟基十八碳三烯酸(OS中新发现的信号)的活性。对GCxGC数据进行解卷积和比对后,检测到大约400种分析物。 W + OS显着调节了35种挥发物。其中三分之二受OS特异性调节,要么被放大(大多数萜类化合物和某些己烯基酯),要么被强烈抑制(许多短链醇以及一些芳族和己烯基酯衍生物)。脂肪酸氨基酸共轭物在这种调节模式中起着核心作用,因为它们诱导了一半由OS引起的挥发物的排放并抑制了几乎所有被OS抑制的挥发物的产生。 2-羟基十八碳三烯酸影响反式-佛手柑的发射,而其他未知的OS成分则增加了己烯基酯的产生。我们得出的结论是,由食草动物引起的挥发物的复杂花束是由于OS中发现的各种线索对伤口反应的复杂调节所致。这项工作还强调了超高分辨率GCxGC-ToF分析与结果数据的非目标挖掘相结合的价值。

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