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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Light influences transpiration and calcium accumulation in fruit of kiwifruit plants (Actinidia deliciosa var. deliciosa)
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Light influences transpiration and calcium accumulation in fruit of kiwifruit plants (Actinidia deliciosa var. deliciosa)

机译:光会影响猕猴桃植物(猕猴桃(Actinidia deliciosa var。deliciosa))果实的蒸腾作用和钙积累

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摘要

Calcium (Ca) is an essential plant nutrient involved in determining fruit quality of several fruits, including kiwifruit. The objective of the present study was to evaluate the influence of light intensity on transpiration and water flow into fruit of kiwifruit (Actinidia deliciosa var. deliciosa, C.F. Liang et A.R. Ferguson) and the resulting effects on Ca accumulation. At fruit-set two light treatments were imposed on single canes. The exposed treatment was maintained through summer pruning, while the shade treatment was imposed using shade cloth. Fruit transpiration was measured on attached fruit using a portable photosynthesis system. The inflow of water into the fruit via the xylem was estimated from fruit transpiration and its relationship with fruit Ca accumulation determined. The concentration of Ca was measured in xylem sap extracted using a Scholander pressure chamber. Following the first 40-50 days after fruit-set (AFS) the cumulative xylem water inflow into the fruit increased exponentially in both treatments, but by the end of the growing season the total influx was 30% higher in the exposed treatment than in the shaded treatment, reaching 140 g per fruit. The shade treatment influenced the concentration of Ca, causing accumulation in the fruit to be about 50% of that in the exposed treatment. Our results suggest that transpiration is not the only factor controlling Ca transport, and that light also influenced the Ca concentration in xylem sap. Taking into account that auxin is able to stimulate Ca uptake and that light promotes the biosynthesis of auxin protecting phenols (hydroxycinnamic acids), a new working hypothesis is proposed: light, induces the biosynthesis of such phenols, indirectly decreases auxin degradation, and therefore, increases Ca accumulation. (c) 2005 Elsevier Ireland Ltd. All rights reserved.
机译:钙(Ca)是决定几种水果(包括猕猴桃)果实质量的重要植物营养素。本研究的目的是评估光强度对猕猴桃(Actinidia deliciosa var。deliciosa,C.F. Liang等人A.R. Ferguson)果​​实的蒸腾作用和水分流入的影响以及对钙积累的影响。在坐果时,对单个手杖进行了两次轻度处理。通过夏季修剪来维持暴露的处理,而使用遮光布进行遮光处理。使用便携式光合作用系统测量附着水果的蒸腾作用。通过木质部蒸腾作用估计了水通过木质部流入水果的过程,并确定了其与水果钙积累的关系。在使用Scholander压力室提取的木质部汁液中测量Ca的浓度。坐果后(AFS)的前40-50天,两种处理中累积的木质部水分流入果实的次数均呈指数增加,但到生长季节结束时,裸露处理的总流入量比裸露处理高30%。遮荫处理,每个水果达到140克。遮荫处理影响了Ca的浓度,导致果实中的积累约为暴露处理中的50%。我们的结果表明,蒸腾作用不是控制钙转运的唯一因素,而且光还影响木质部汁液中钙的浓度。考虑到植物生长素能够刺激钙的吸收,并且光促进了植物生长素保护酚(羟基肉桂酸)的生物合成,提出了一个新的工作假设:光能诱导此类酚的生物合成,间接降低植物生长素的降解,因此,增加钙的积累。 (c)2005 Elsevier Ireland Ltd.保留所有权利。

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