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Functional Leaf Traits and Diurnal Dynamics of Photosynthetic Parameters Predict the Behavior of Grapevine Varieties Towards Ozone

机译:功能性叶片性状和光合参数日动态预测葡萄品种对臭氧的行为

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摘要

A comparative study on functional leaf treats and the diurnal dynamics of photosynthetic processes was conducted on 2-year-old potted plants of two grape (Vitis vinifera L.) varieties (Aleatico, ALE, and Trebbiano giallo, TRE), exposed under controlled conditions to realistic concentrations of the pollutant gas ozone (80 ppb for 5 h day-1, 8:00–13:00 h, + 40 ppb for 5 h day-1, 13:00–18:00 h). At constitutive levels, the morphological functional traits of TRE improved leaf resistance to gas exchange, suggesting that TRE is characterized by a potential high degree of tolerance to ozone. At the end of the treatment, both varieties showed typical visible injuries on fully expanded leaves and a marked alteration in the diurnal pattern of photosynthetic activity. This was mainly due to a decreased stomatal conductance (-27 and -29% in ALE and TRE, in terms of daily values in comparison to controls) and to a reduced mesophyllic functioning (+33 and +16% of the intercellular carbon dioxide concentration). Although the genotypic variability of grape regulates the response to oxidative stress, similar detoxification processes were activated, such as an increased content of total carotenoids (+64 and +30%, in ALE and TRE), enhanced efficiency of thermal energy dissipation within photosystem II (+32 and +20%) closely correlated with the increased de-epoxidation index (+26 and +22%) and variations in content of some osmolytes. In summary, we can conclude that: the daily photosynthetic performance of grapevine leaves was affected by a realistic exposure to ozone. In addition, the gas exchange and chlorophyll a fluorescence measurements revealed a different quali-quantitative response in the two varieties. The genotypic variability of V. vinifera and the functional leaf traits would seem to regulate the acclimatory response to oxidative stress and the degree of tolerance to ozone. Similar photoprotective mechanisms were activated in the two varieties, though to a different extent.
机译:在受控条件下暴露的两种葡萄(Vitis vinifera L.)两个品种(Vitis vinifera L.)的2年龄盆栽植物上进行了功能性叶片处理和光合作用日动态的比较研究。达到实际的污染物臭氧浓度(5 pp s -1 80 ppb,8:00-13:00 h,+ 5 pps -1 40 ppb) ,13:00–18:00 h)。在本构水平上,TRE的形态功能性状改善了叶片对气体交换的抵抗力,这表明TRE的特征在于对臭氧的潜在高度耐受性。在处理结束时,两个品种在完全展开的叶子上都表现出典型的可见伤害,并且光合活性的日变化规律明显改变。这主要是由于气孔导度降低(ALE和TRE的日粮值分别为-27和-29%,与对照相比)和叶肉功能降低(细胞间二氧化碳浓度的+33和+ 16%) )。尽管葡萄的基因型变异性可调节对氧化应激的反应,但仍激活了类似的解毒过程,例如增加了总类胡萝卜素的含量(ALE和TRE中分别为+64和+ 30%),光系统II中提高的热能耗散效率(+32和+ 20%)与增加的脱环氧化指数(+26和+ 22%)和某些渗透液含量的变化密切相关。总而言之,我们可以得出以下结论:葡萄叶片的日常光合作用性能受到实际暴露于臭氧的影响。此外,气体交换和叶绿素a荧光测量揭示了两个品种中不同的定性定量反应。 V. vinifera的基因型变异性和功能性叶片性状似乎可以调节对氧化胁迫的适应性反应和对臭氧的耐受程度。尽管程度不同,但两个品种中都激活了类似的光保护机制。

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