首页> 外文OA文献 >Barley (Hordeum distichon L.) roots synthesise volatile aldehydes with a strong age-dependent pattern and release (E)- non-2-enal and (E,Z)-nona-2,6-dienal after mechanical injury
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Barley (Hordeum distichon L.) roots synthesise volatile aldehydes with a strong age-dependent pattern and release (E)- non-2-enal and (E,Z)-nona-2,6-dienal after mechanical injury

机译:大麦(Hordeum distichon L.)的根部合成具有强烈年龄依赖性的挥发性醛,并在机械性损伤后释放(E)-非-2-烯醛和(E,Z)-nona-2,6-二烯醛

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摘要

In the context of chemical ecology, the analysis of the temporal production pattern of volatile organic compounds (VOCs) in root tissues and the emission rate measurement of root-emitted VOCs are of major importance for setting up experiments to study the implication of these compounds in biotic interactions. Such analyses, however, remain challenging because of the belowground location of plant root systems. In this context, this study describes the evolution of the root VOC production pattern of barley (Hordeum distichon L.) at five developmental stages from germination to the end of tillering and evaluates the emission of the identified VOCs in an artificial soil. VOCs produced by crushed root tissues and released by unexcavated root systems were analysed using dynamic sampling devices coupled to a gas chromatography-mass spectrometry methodology (synchronous SCAN/SIM). The results showed that, at each analysed developmental stage, crushed barley roots produced mainly four volatile aldehydes: hexanal; (E)-hex-2-enal; (E)-non-2-enal; and (E,Z)-nona-2,6-dienal. Higher total and individual VOC concentrations were measured in 3-day-old seminal roots compared with older phenological stages. For each developmental stage, the lipoxygenase (LOX) activity was greater for linoleic acid than α-linolenic acid and the greatest LOX activities using linoleic and α- linolenic acids as substrates were measured in 7- and 3-day-old roots, respectively. The analysis of VOCs released by barley roots into the soil showed that (E)-non-2- enal and (E,Z)-nona-2,6-dienal were the only VOCs emitted in quantifiable amounts by mechanically injured roots.
机译:在化学生态学的背景下,分析根组织中挥发性有机化合物(VOC)的瞬时生产模式以及测量根部排放的VOC的排放速率对于建立实验研究这些化合物在水中的意义至关重要。生物相互作用。然而,由于植物根系在地下,这种分析仍然具有挑战性。在此背景下,本研究描述了大麦(发芽至分five结束)五个发育阶段的根挥发性有机化合物生产模式的演变,并评估了人工土壤中已确定的挥发性有机化合物的排放。使用与气相色谱-质谱联用的同步动态采样设备(同步SCAN / SIM)分析了压碎的根组织产生的和未挖掘的根系释放的VOC。结果表明,在每个分析的发育阶段,大麦碎根主要产生四种挥发性醛:己醛;四氢呋喃醛;己醛。 (E)-十六烷基-2-烯; (E)-非2-烯丙基;和(E,Z)-nona-2,6-dienal。与较早的物候期相比,在3天大的精根中测得的总VOC浓度和个体VOC浓度更高。对于每个发育阶段,亚油酸的脂氧合酶(LOX)活性均高于α-亚麻酸,并且分别在7天和3天大的根中测定了以亚油酸和α-亚麻酸为底物的最大LOX活性。大麦根部释放到土壤中的VOC的分析表明,(E)-非-2-烯醛和(E,Z)-nona-2,6-二烯醛是机械损伤的根部仅可定量排放的VOC。

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