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全球变化中的臭氧成分:对农业和园艺植物产量、产品质量的潜在影响,以及与入侵物种的相互作用。

The ozone component of global change: potential effects on agricultural and horticultural plant yield, product quality and interactions with invasive species.

机构信息

United States Department of Agriculture-Agricultural Research Service, Plant Science Research Unit, North Carolina State University, Raleigh, North Carolina 27695, USA.

出版信息

J Integr Plant Biol. 2009 Apr;51(4):337-51. doi: 10.1111/j.1744-7909.2008.00805.x.

Abstract

The productivity, product quality and competitive ability of important agricultural and horticultural plants in many regions of the world may be adversely affected by current and anticipated concentrations of ground-level ozone (O3). Exposure to elevated O3 typically results in suppressed photosynthesis, accelerated senescence, decreased growth and lower yields. Various approaches used to evaluate O3 effects generally concur that current yield losses range from 5% to 15% among sensitive plants. There is, however, considerable genetic variability in plant responses to O3. To illustrate this, we show that ambient O3 concentrations in the eastern United States cause substantially different levels of damage to otherwise similar snap bean cultivars. Largely undesirable effects of O3 can also occur in seed and fruit chemistry as well as in forage nutritive value, with consequences for animal production. Ozone may alter herbicide efficacy and foster establishment of some invasive species. We conclude that current and projected levels of O3 in many regions worldwide are toxic to sensitive plants of agricultural and horticultural significance. Plant breeding that incorporates O3 sensitivity into selection strategies will be increasingly necessary to achieve sustainable production with changing atmospheric composition, while reductions in O3 precursor emissions will likely benefit world food production and reduce atmospheric concentrations of an important greenhouse gas.

摘要

目前和预计的地面臭氧(O3)浓度可能会对世界许多地区的重要农作物和园艺植物的生产力、产品质量和竞争力产生不利影响。暴露在升高的 O3 中通常会导致光合作用受到抑制、衰老加速、生长减少和产量降低。用于评估 O3 影响的各种方法通常一致认为,目前敏感植物的产量损失范围在 5%到 15%之间。然而,植物对 O3 的反应存在相当大的遗传变异。为了说明这一点,我们表明,美国东部的环境 O3 浓度对其他方面相似的 snap bean 品种造成了截然不同的损害程度。O3 在种子和果实化学性质以及饲料营养价值方面也会产生不良影响,从而对动物生产产生影响。臭氧可能会改变除草剂的功效,并促进一些入侵物种的建立。我们得出结论,目前和预计的全球许多地区的 O3 水平对具有农业和园艺重要性的敏感植物是有毒的。随着大气成分的变化,将 O3 敏感性纳入选择策略的植物育种将变得越来越必要,以实现可持续生产,而减少 O3 前体排放可能会有益于世界粮食生产并减少一种重要温室气体的大气浓度。

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