首页> 外文期刊>Acta Horticulturae >Physiological response of 'Flame Seedless' table grape to three natural ventilation levels in a parral greenhouse.
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Physiological response of 'Flame Seedless' table grape to three natural ventilation levels in a parral greenhouse.

机译:火焰无核鲜食葡萄对部分温室中三个自然通风水平的生理响应。

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Out of season vegetable production in greenhouses represents the basis of economic development in large areas of the Mediterranean Basin. In South Eastern Spain most of this production is based in structures with little or no climate control. Early table grapes are an attractive, less hand-labour consuming alternative to vegetable production; however, the woody and perennial nature of Vitis vinifera creates important challenges for its cultivation under plastic. Previous experiences in cultivating 'Flame Seedless' in a parral type greenhouse have shown the possibility of advancing its harvest by more than a month, although the plants have also shown a progressive diminution in bud fertility, yield, and bunch and fruit size. With the aim of determining the critical climatic parameters responsible of such loss of productivity, we have used an automated greenhouse with two levels of ventilation and a control non-ventilated greenhouse. One ventilation level was the result of opening only the side vents whereas the other combined side ventilation with roof ventilation. The results showed that only the combination of roof and side ventilation provided acceptable cooling effects. Both the side ventilation and control treatments experienced temperature differences between inside and outside of the greenhouse above 6 degrees C during the central part of the day. As a consequence, the only treatment in which the leaves were able to cool themselves through transpiration was the combination of roof and side ventilation. In this treatment the temperature differences between the leaves and the greenhouse air were negative whereas in the other two treatments the temperature of the leaves was always above the ambient temperature (differences &4 degrees C). However, stomatal conductance data showed the stomata clearly remained open for all the configurations, even in the closed greenhouse..
机译:温室中过时的蔬菜生产代表了地中海盆地大部分地区经济发展的基础。在西班牙东南部,大部分产品都来自几乎没有气候控制的建筑。早食葡萄是一种有吸引力的,不消耗人工的蔬菜替代品。然而,葡萄的木本和多年生特性对其在塑料下的栽培提出了重要的挑战。尽管在植株的芽育性,产量以及果实和果实的大小上也有逐渐减少的趋势,但以前在类似温室中种植“无核火焰”的经验表明,可以将收成提高一个月以上。为了确定造成这种生产力损失的关键气候参数,我们使用了具有两个通风水平的自动温室和一个非通风控制温室。一个通风水平是仅打开侧面通风孔的结果,而另一通风水平是侧面通风与屋顶通风相结合的结果。结果表明,只有屋顶通风和侧面通风相结合才能提供可接受的冷却效果。在一天的中部,侧面通风和控制处理都在6摄氏度以上的温室内外经历了温差。因此,唯一能够通过蒸腾使叶片降温的处理方法是屋顶通风和侧面通风相结合。在这种处理中,叶片和温室空气之间的温度差为负,而在另两种处理中,叶片的温度始终高于环境温度(差异> 4℃)。但是,气孔导度数据显示,即使在封闭的温室中,所有配置的气孔显然仍保持开放状态。

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