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植物挥发性有机化合物(VOCs)在臭氧(O3)污染大气中的生态效应。

Plant volatile organic compounds (VOCs) in ozone (O3) polluted atmospheres: the ecological effects.

机构信息

Plant Production Research/Plant Protection Unit, MTT Agrifood Research Finland, Jokioinen, Finland.

出版信息

J Chem Ecol. 2010 Jan;36(1):22-34. doi: 10.1007/s10886-009-9732-3.

Abstract

Tropospheric ozone (O3) is an important secondary air pollutant formed as a result of photochemical reactions between primary pollutants, such as nitrogen oxides (NOx), and volatile organic compounds (VOCs). O3 concentrations in the lower atmosphere (troposphere) are predicted to continue increasing as a result of anthropogenic activity, which will impact strongly on wild and cultivated plants. O3 affects photosynthesis and induces the development of visible foliar injuries, which are the result of genetically controlled programmed cell death. It also activates many plant defense responses, including the emission of phytogenic VOCs. Plant emitted VOCs play a role in many eco-physiological functions. Besides protecting the plant from abiotic stresses (high temperatures and oxidative stress) and biotic stressors (competing plants, micro- and macroorganisms), they drive multitrophic interactions between plants, herbivores and their natural enemies e.g., predators and parasitoids as well as interactions between plants (plant-to-plant communication). In addition, VOCs have an important role in atmospheric chemistry. They are O3 precursors, but at the same time are readily oxidized by O3, thus resulting in a series of new compounds that include secondary organic aerosols (SOAs). Here, we review the effects of O3 on plants and their VOC emissions. We also review the state of current knowledge on the effects of ozone on ecological interactions based on VOC signaling, and propose further research directions.

摘要

对流层臭氧(O3)是一种重要的次生空气污染物,是主要污染物(如氮氧化物(NOx)和挥发性有机化合物(VOCs))之间光化学反应的结果。由于人为活动,低层大气(对流层)中的 O3 浓度预计将继续增加,这将对野生和栽培植物产生强烈影响。O3 会影响光合作用,并诱导可见叶片损伤的发生,这是由基因控制的程序性细胞死亡的结果。它还会激活许多植物防御反应,包括植物源性 VOC 的排放。植物排放的 VOC 在许多生态生理功能中发挥作用。除了保护植物免受非生物胁迫(高温和氧化应激)和生物胁迫源(竞争植物、微生物和宏观生物)之外,它们还促进了植物、草食动物及其天敌(如捕食者和寄生蜂)之间的多营养级相互作用,以及植物之间的相互作用(植物间通讯)。此外,VOC 在大气化学中也具有重要作用。它们是 O3 的前体,但同时也很容易被 O3 氧化,从而产生一系列包括二次有机气溶胶(SOAs)在内的新化合物。在这里,我们回顾了 O3 对植物及其 VOC 排放的影响。我们还回顾了基于 VOC 信号的臭氧对生态相互作用影响的现有知识状况,并提出了进一步的研究方向。

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