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首页> 外文期刊>Environmental and experimental botany >Do fruit sunburn control measures affect leaf photosynthetic rate and stomatal conductance in 'Royal Gala' apple?
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Do fruit sunburn control measures affect leaf photosynthetic rate and stomatal conductance in 'Royal Gala' apple?

机译:水果晒伤控制措施是否会影响“ Royal Gala”苹果叶片的光合速率和气孔导度?

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A field study was conducted on a 5-year-old orchard of 'Royal Gala' apple (Malus domestica Borkh.) in Stellenbosch, South Africa, to investigate whether the measures employed to control sunburn in fruit, viz., evaporative cooling, Surround WP and 20% black shade net affect leaf photosynthetic gas exchange attributes in comparison to untreated control during the 2003/2004 season. Shade net significantly reduced midday leaf net photosynthetic rate (A) compared to evaporative cooling. Furthermore, shade net and Surround WP significantly reduced midday leaf stomatal conductance (gs) compared to evaporative cooling and control. Evaporative cooling increased light saturated photosynthetic rate by 27 and 24% compared to shade net and Surround WP, respectively. Light compensation point and dark respiration of shaded leaves were about a third of the other treatments and about 50% less than the control leaves, respectively. Shade net down-regulated photosynthetic capacity of the leaves as evidenced by lower maximum rate of carboxylation and light saturated rate of electron transport compared to control leaves. Sunburn control treatments reduced day respiration by 60-70% compared to the control. Response of A and gs to increasing temperature showed only slight increase in both A and gs with increasing temperature from 20 to 30 degrees C. A declined at 35 degrees C in Surround WP and shade net leaves while it declined at 40 degrees C in evaporatively cooled and control leaves. Evaporative cooling and control had higher gs than shade net and Surround WP at all leaf temperatures. In conclusion, shade net down-regulated photosynthetic reactions and Surround WP and shade net reduced leaf gs and increased the vulnerability of leaf A and gs to high temperature compared to evaporative cooling and control..
机译:在南非斯泰伦博斯的5岁果园“ Royal Gala”(Malus domestica Borkh。)上进行了实地研究,以调查是否采取了控制水果晒斑的措施,即蒸发冷却,环绕与2003/2004季节相比,未经处理的可湿性粉剂和20%的黑色阴影网影响叶片光合气体交换特性。与蒸发冷却相比,遮阳网显着降低了午间叶片净光合速率(A)。此外,与蒸发冷却和控制相比,遮阳网和环绕WP显着降低了午间叶片气孔导度(gs)。与遮阳网和环绕WP相比,蒸发冷却使光饱和光合速率分别提高了27%和24%。阴影叶片的光补偿点和暗呼吸分别约为其他处理的三分之一,比对照叶片少约50%。荫罩网下调了叶片的光合作用能力,与对照相比,最大的羧化速率和光饱和电子传输速率更低,证明了叶片的光合作用能力。与对照相比,晒斑控制疗法可使日间呼吸减少60-70%。 A和gs对温度升高的响应表明,温度从20升高到30摄氏度时,A和gs均仅略有增加。在环绕WP和遮荫网叶中,A和gs在35摄氏度时下降,而在蒸发冷却时,在40摄氏度时下降和控制叶子。在所有叶片温度下,蒸发冷却和控制的gs均高于遮阳网和Surround WP。总之,与蒸发冷却和控制相比,遮阳网下调了光合作用的反应,而环绕WP和遮阳网减少了叶片的gs,增加了叶片A和gs对高温的脆弱性。

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