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Ozone Effects on Fruit Productivity and Photosynthetic Response of Two Tomato Cultivars in Relation to Stomatal Fluxes

机译:臭氧对两个番茄品种与气孔通量有关的水果生产力和光合响应的影响

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An Open-Top Chamber experiment on two tomato cultivars (cv. Oxheart and cv. San Marzano) was carried out in Curno (Northern Italy) between June and September 2007. Two ozone treatments were applied for a 3.5 months period: Non-Filtered OTC (NF-OTC, 95% of ambient ozone) and Charcoal-Filtered OTC (CF-OTC, 50% of ambient ozone). Diurnal cycles of porometry measurements were performed during the season and allowed to draw a stomatal conductance model for each cultivar in order to calculate the ozone stomatal fluxes taken up by plants. Assessments on fruits yield were performed during the season, taking into account the number of fruits, their fresh weight and their marketability. In addition, measurements on the chlorophyll fluorescence of photosystems were carried out to assess possible negative effects on photosynthetic efficiency. Despite the two cultivars absorbed a similar ozone stomatal dose during the season (with an 8% difference), their responses to ozone treatments were totally divergent in relation to both fruits yield and photosynthetic efficiency. Plants of cv. Oxheart grown in NF-OTCs showed significant yield loss in the total weight of fruits (-35.9%) which is exclusively related to a decrease in the number of fruits produced (-35.7% of total fruits; -30.6% of marketable fruits), since mean fresh weight of fruits remained unaffected. Moreover the same plants displayed low values (in comparison to CF-OTCs plants) of the photosynthetic efficiency index (PIabs) during the most intense period of ozone stress (July) occurred in the flowering stage of plants and at the beginning of fructification. Plants of the cv. San Marzano had an opposite response behaviour with an increase of the mean fresh weight of fruits in plants grown in NF-OTC (even if not statistically significant) and no difference in the number of fruits produced and in the values of photosynthetic efficiency.
机译:在2007年6月至9月之间,在Curno(意大利北部)对两个番茄品种(cv。Oxheart和cv。San Marzano)进行了开顶室实验。在3.5个月的时间里进行了两次臭氧处理:非过滤OTC (NF-OTC,占环境臭氧的95%)和炭过滤的OTC(CF-OTC,占环境臭氧的50%)。在该季节进行孔隙度测量的昼夜循环,并为每个品种绘制一个气孔电导模型,以计算植物吸收的臭氧气孔通量。在季节中对水果产量进行了评估,其中考虑了水果的数量,新鲜重量和适销性。另外,对光系统的叶绿素荧光进行了测量,以评估可能对光合作用效率的负面影响。尽管两个品种在该季节吸收了相似的臭氧气孔剂量(相差8%),但它们对臭氧处理的反应在果实产量和光合效率方面完全不同。简历植物在NF-OTC中生长的Oxheart在水果总重量中表现出显着的产量损失(-35.9%),这完全与所生产水果数量的减少有关(占总水果的-35.7%;可出售水果的-30.6%),因为平均新鲜水果重量不受影响。此外,在最严重的臭氧胁迫时期(7月)发生在植物的开花期和果实结实开始时,同一植物显示出较低的光合效率指数(PIabs)(与CF-OTCs植物相比)。简历的植物。 San Marzano具有相反的响应行为,即在NF-OTC中生长的植物的平均新鲜水果重量增加(即使没有统计学意义),并且所产生的果实数量和光合效率值没有差异。

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