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首页> 外文期刊>Functional Plant Biology >Describing and modelling ozone-dependent variation in flavonoid content of bean (Phaseolus vulgaris cv. Bergamo) leaves: a particular dose-response relationship analysis
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Describing and modelling ozone-dependent variation in flavonoid content of bean (Phaseolus vulgaris cv. Bergamo) leaves: a particular dose-response relationship analysis

机译:描述和建模豆类(Phaseolus vulgaris cv。Bergamo)叶中类黄酮含量的臭氧依赖性变化:一种特殊的剂量反应关系分析

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We investigated the ozone-dependent variation in the amount of a flavonoid accumulated by bean leaves ( Phaseolus vulgaris L. cv. Bergamo). The phenolic response was modelled with special regard to different ozone exposure indexes. Using open-top chamber technology, six atmospheres of increasing ozone concentration were tested. Four successive harvests were carried out during a 33-d experiment. Primary and first trifoliate leaves were collected. Visible foliar injuries were recorded and the quantification of an ozone-responsive flavonoid was achieved by HPLC. Ozone significantly increased the amount of kaempferol glucuronide, which normally decreased with leaf ageing. Depending on the leaf type, this increase occurred either before or after the appearance of visible foliar damage. A linear regression could account for the ozone dose - phenolic response relationship. However, with respect to leaf type, the agreement between the model and observed values was influenced by the way in which ozone dose was calculated. Among the ozone exposure indexes tested, only the index with the highest threshold (AOT60) was appropriate to make the phenolic response linear in the case of primary leaves while in the case of first trifoliate leaves, this index always displayed the poorest adjustment compared with SUM00, SUM60, and AOT40 indexes. The study of the relationship suggests that sensitivity to ozone could be dependent on leaf type.
机译:我们调查了由豆叶(菜豆(Phaseolus vulgaris L. cv。贝加莫))积累的类黄酮的臭氧依赖性变化。酚类反应是针对不同的臭氧暴露指数而建模的。使用开顶室技术,对六种增加臭氧浓度的大气进行了测试。在33天的实验中进行了四次连续收获。收集初生和第一三叶的叶子。记录可见的叶损伤,并通过HPLC对臭氧反应性类黄酮进行定量。臭氧会显着增加山emp酚葡萄糖醛酸的含量,通常随着叶片衰老而减少。根据叶片的类型,这种增加发生在可见的叶面损伤之前或之后。线性回归可以解释臭氧剂量与酚类反应的关系。但是,关于叶片类型,模型和观测值之间的一致性受臭氧剂量计算方式的影响。在测试的臭氧暴露指数中,对于初级叶片,只有最高阈值的指数(AOT60)才适合使酚类反应线性化,而对于第一片三叶叶片,该指数与SUM00相比总是显示出最差的调节,SUM60和AOT40索引。对这种关系的研究表明,对臭氧的敏感性可能取决于叶片的类型。

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