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首页> 外文期刊>Global change biology >Effects of elevated O-3, alone and in combination with elevated CO2, on tree leaf chemistry and insect herbivore performance: a meta-analysis
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Effects of elevated O-3, alone and in combination with elevated CO2, on tree leaf chemistry and insect herbivore performance: a meta-analysis

机译:单独或与升高的CO2结合使用的O-3升高对树叶化学和昆虫食草动物性能的影响:荟萃分析

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We reviewed the effects of elevated ozone (O-3), alone and in combination with elevated carbon dioxide (CO2) on primary and secondary metabolites of trees and performance of insect herbivores by means of meta-analysis. Our database consisted of 63 studies conducted on 22 species of trees and published between 1990 and 2005. Ozone alone had no overall effect on concentrations of carbohydrates or nutrients, whereas in combination with CO2, elevated O-3 reduced nutrient concentrations and increased carbohydrate concentrations. In contrast to primary metabolites, concentrations of phenolics and terpenes were significantly increased by 16% and 8%, respectively, in response to elevated O-3. Effects of ozone in combination with elevated CO2 were weaker than those of ozone alone on phenolics, but stronger than those of ozone alone on terpenes. The magnitude of secondary metabolite responses depended on the type of ozone exposure facility and increased in the following order: indoor growth chamber < open-top chamber < free-air ozone exposure. The results of meta-analysis demonstrated that, in terms of leaf chemistry, angiosperms are more responsive to elevated O-3 than gymnosperms, as shifts in concentrations of carbohydrate and phenolics were observed in the former, but not in the latter. Elevated O-3 had positive effects on some indices of insect performance: pupal mass increased and larval development time shortened, but these effects were counteracted by elevated CO2. Therefore, despite the observed increase in secondary metabolites, elevated O-3 tends to increase tree foliage quality for herbivores, but elevated CO2 may alleviate these effects. Our meta-analysis clearly demonstrated that effects of elevated O-3 alone on leaf chemistry and some indices of insect performance differed from those of O-3+CO2, and therefore, it is important to study effects of several factors of global climate change simultaneously.
机译:我们通过荟萃分析回顾了升高的臭氧(O-3)单独或与升高的二氧化碳(CO2)结合使用对树木的初级和次级代谢产物以及昆虫食草动物的影响。我们的数据库包含1990年至2005年之间对22种树种进行的63项研究。仅臭氧对碳水化合物或营养物的浓度没有总体影响,而与CO2结合使用,升高的O-3减少了营养物的浓度并增加了碳水化合物的浓度。与主要代谢产物相反,响应于O-3升高,酚类和萜类的浓度分别显着增加了16%和8%。臭氧与二氧化碳浓度升高的结合作用对酚醛的影响要弱于单独的臭氧,但对萜烯的影响要大于单独的臭氧。次生代谢产物反应的强度取决于臭氧暴露设备的类型,并按以下顺序增加:室内生长室<敞开式室<自由空气臭氧暴露。荟萃分析的结果表明,就叶片化学而言,被子植物比裸子植物对O-3含量升高更敏感,因为前者观察到碳水化合物和酚类物质的浓度变化,而后者则没有。 O-3升高对某些昆虫的性能指标具有积极影响:p的质量增加,幼虫的发育时间缩短,但这些影响被CO2升高抵消。因此,尽管观察到次生代谢产物的增加,O-3的升高往往会提高草食动物的树丛质量,但升高的CO2可能会减轻这些影响。我们的荟萃分析清楚地表明,单独升高O-3对叶片化学和某些昆虫性能指标的影响与O-3 + CO2的影响不同,因此,同时研究全球气候变化的多个因素的影响非常重要。 。

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