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Characterization of yield, antioxidant and stomatal response in wheat grown in open-top chambers under variations in atmospheric ozone, carbon dioxide, and soil moisture.

机译:在大气臭氧,二氧化碳和土壤湿度变化的情况下,在开放式室内种植的小麦的产量,抗氧化剂和气孔响应的特征。

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Two winter-wheat (Triticum aestivum) cultivars, Gore and Susquehanna, were grown in open-top chambers (OTC). Plants were grown under two moisture regimes (well-watered and restricted moisture) at two levels of ozone (charcoal-filtered air and non-filtered air supplemented with 30 ppb O3). The charcoal-filtered and high ozone treatments were performed at two carbon dioxide levels: ambient and ambient supplemented with 150 ppm CO2. Both cultivars were also grown under well-watered conditions, in OTC with non-filtered air, as well as in ambient conditions (no OTC) in order to assess possible chamber effects. Flag leaf samples were collected and analyzed for antioxidants and antioxidant enzyme activity. Leaf stomatal conductance and grain yield were also measured and compared with plant antioxidant responses. The results of this study provide insight into factors that contribute to the plant's response to ozone under environmentally relevant exposure concentrations. Cultivar Gore exhibited greater antioxidant enzyme activity and lower total ascorbate content than cultivar Susquehanna. Both cultivars showed yield reductions in response to ozone, with Gore tending to show a greater response. Under elevated ozone, both cultivars showed similar stomatal conductance and an increase in total glutathione content. Cultivar Susquehanna also exhibited a greater response in ascorbate peroxidase activity. Elevated carbon dioxide resulted in stomatal closure and, under low ozone, induced antioxidant changes that could enhance defensive capacity for oxidative stress. Yield under the combination of elevated ozone and carbon dioxide tended to be greater than for elevated ozone alone.{09}The results suggest that plant response to ozone depends upon a number of factors working together. Reduced stomatal conductance may be important as a first step that limits ozone uptake. Once ozone has entered the plant, the comparison of results for the more tolerant cultivar Susquehanna with the less tolerant cultivar Gore, suggests that the ability to respond to oxidative stress by increasing enzyme activity is also important. The availability of high pools of antioxidants may further contribute to enhanced oxidative defense capabilities. Future studies of the antioxidant defense system as a whole, rather than an individual enzyme or antioxidant level, may provide an improved understanding of plant response to ozone.
机译:戈尔(Gore)和萨斯奎哈那(Susquehanna)这两个冬小麦(Triticum aestivum)品种在敞顶式室(OTC)中生长。使植物在两种湿度模式下(水分充足和水分受限)在两种臭氧水平下进行生长(木炭过滤的空气和未过滤的空气,其中添加了30 ppb O3)。木炭过滤和高臭氧处理是在两种二氧化碳水平下进行的:环境和环境中添加了150 ppm CO2。为了评估可能的室效应,两个品种也都在水分充足的条件下,未过滤空气的OTC中以及在环境条件下(无OTC)生长。收集旗叶样品并分析抗氧化剂和抗氧化酶活性。还测量了叶片气孔导度和谷粒产量,并将其与植物抗氧化反应进行了比较。这项研究的结果提供了在环境相关暴露浓度下有助于植物对臭氧响应的因素的见解。与Susquehanna品种相比,Gore品种表现出更高的抗氧化酶活性和更低的总抗坏血酸含量。两种品种都表现出对臭氧的响应降低的产量,戈尔倾向于表现出更大的响应。在升高的臭氧下,两个品种都显示出相似的气孔导度和总谷胱甘肽含量的增加。品种Susquehanna在抗坏血酸过氧化物酶活性方面也表现出更大的反应。二氧化碳升高会导致气孔关闭,并且在低臭氧下会诱导抗氧化剂的变化,从而增强防御能力以应对氧化应激。升高的臭氧和二氧化碳的结合下的产量往往要比单独升高的臭氧更高。{09}结果表明,植物对臭氧的反应取决于许多共同起作用的因素。降低气孔导度作为限制臭氧吸收的第一步可能很重要。臭氧进入植物后,对耐性更强的Susquehanna品种和耐性较弱的品种Gore的结果进行比较,表明通过增加酶活性来应对氧化胁迫的能力也很重要。高含量的抗氧化剂可能进一步有助于增强氧化防御能力。整个抗氧化剂防御系统的未来研究,而不是单个酶或抗氧化剂的水平,可能会更好地了解植物对臭氧的反应。

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