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Ozone disrupts adsorption of Rhododendron tomentosum volatiles to neighbouring plant surfaces, but does not disturb herbivore repellency

机译:臭氧破坏了杜鹃杜鹃挥发物对邻近植物表面的吸附,但不会干扰草食动物的拒斥性

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The perennial evergreen woody shrub, Rhododendron tomentosum, confers associational resistance against herbivory and oviposition on neighbouring plants through passive adsorption of some of its constitutively emitted volatile organic compounds (VOCs). The adsorption process is dependent on transport of VOCs in the air. In polluted atmospheres, the VOCs may be degraded and adsorption impeded. We studied the effect of elevated ozone regimes on the adsorption of R. tomentosum volatiles to white cabbage, Brassica oleracea, and the oviposition of the specialist herbivore Plutella xylostella on the exposed plants. We found evidence for adsorption and re-emission of R. tomentosum volatiles by B. oleracea plants. Ozone changed the blend of R. tomentosum volatiles and reduced the amount of R. tomentosum volatiles recovered from B. oleracea plants. However, plants exposed to R. tomentosum volatiles received fewer P. xylostella eggs than control plants exposed to filtered air irrespective of whether R. tomentosum volatiles mixed with ozone. Ozone disrupts a volatile mediated passive plant-to plant interaction by degrading some compounds and reducing the quantity available for adsorption by neighbouring plants. The change, however, did not affect the deterrence of oviposition by P. xylostella, suggesting that aromatic companion plants of Brassica crops may confer pest-deterring properties even in ozone-polluted environments. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:多年生常绿木本灌木杜鹃(Rhododendron tomentosum)通过被动吸收其一些组成性释放的挥发性有机化合物(VOC),赋予其对邻近植物的食草和产卵的抵抗力。吸附过程取决于空气中VOC的迁移。在受污染的大气中,VOC可能会降解并阻碍吸附。我们研究了升高的臭氧制度对毛白球菌挥发物对白菜,甘蓝的吸附以及裸露植物上食草动物小菜蛾产卵的影响。我们发现了由油菜芽孢杆菌植物吸收和再排放毛绒球菌挥发物的证据。臭氧改变了棉铃虫挥发物的混合物,减少了从油菜双歧杆菌植物中回收的棉铃虫挥发物的量。但是,暴露于棉铃虫挥发物的植物比暴露于过滤空气的对照植物得到的小木虱卵要少,而不论棉铃虫挥发物是否与臭氧混合。臭氧通过降解某些化合物并减少相邻植物可吸收的量来破坏挥发性介导的植物间被动相互作用。然而,这种变化并没有影响小菜蛾对产卵的威慑作用,这表明芸苔属作物的芳香伴生植物即使在臭氧污染的环境中也可能具有驱虫作用。 (C)2018作者。由Elsevier Ltd.发布

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