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Effect of Nutrient Solution Electrical Conductivity Levels on Lycopene Concentration, Sugar Composition and Concentration of Tomato (Lycopersicon esculentum Mill.)

机译:营养液电导率水平对番茄红素浓度,糖成分和番茄浓度的影响(番茄番茄)

摘要

Tomato is an important commodity in fresh vegetable market. Recently, there is great interest for North American hydroponic growers to improve the fruit quality by introducing better cultivation methods. Manipulation of electrical conductivity (EC) of nutrient solution is a well-known technique to increase sugar concentrations of tomato; however, the potential risk of lower yield is the drawback of introducing this technique. Therefore to find a range of EC that can enhance the fruit quality while maintaining overall yield was the goal of this research. For this purpose, plant physiological responses such as transpirational and photosynthetic characteristics and fruit quality attributes including sugars and lycopene were investigated for selected cultivars under different EC. Regardless of cultivar, tomato plants showed a greater net photosynthetic rate at the reproductive growth stage compared to the vegetative growth stage. An increase of EC of influx nutrient solution up to 4.8 dS m-1 did not reduce the leaf photosynthesis, which supported a hypothesis that there is an optimum EC range for enhancing fruit quality without significant yield loss. A following experiment showed that the tomato fruit quality could be significantly enhanced when plants were grown under around 4.5 dS m-1 EC, in terms of total soluble solids (TSS) and lycopene concentration with no significant yield loss. Last experiment was conducted to quantitatively understand the accumulation of lycopene and sugars in fruits as affected by EC and its application timing relative to the fruit ripeness stages. High EC treatment of 4.5 dS m-1, regardless of its application timing, enhanced TSS and sugar concentration in the juice and lycopene concentrations of the fruit. However, the delayed high EC treatment (application of high EC after 4 weeks of anthesis) showed less enhancement for TSS and sugar concentration. Lycopene concentration of the fruit in the delayed EC treatment reached the same level as that in the standard high EC treatment (application since anthesis), which suggests that enhanced lycopene development under high EC is more related to an abiotic stress response during the fruit maturation, rather than fruit mass balance altered by the limited water flux to the fruit.
机译:番茄是新鲜蔬菜市场中的重要商品。近来,北美水培种植者对通过引入更好的栽培方法来提高果实品质产生了浓厚的兴趣。对营养液的电导率(EC)进行控制是提高番茄糖含量的一项众所周知的技术。然而,降低产量的潜在风险是引入该技术的缺点。因此,寻找能够提高果实品质并同时保持总产量的EC范围是本研究的目标。为此,针对不同EC下选定的品种,研究了植物的生理反应,例如蒸腾和光合特性以及包括糖和番茄红素在内的果实品质属性。无论哪个品种,番茄植物在生殖生长期的净光合速率均高于营养生长期。将流入营养液的EC增加到4.8 dS m-1不会降低叶片的光合作用,这支持了这样一个假设:存在一个最佳EC范围,可以提高果实质量而不会显着降低产量。以下实验表明,在总可溶性固形物(TSS)和番茄红素浓度方面,当植物在4.5 dS m-1 EC左右生长时,番茄果实品质可以得到显着提高,而没有明显的产量损失。进行了最后一个实验,以定量了解受EC影响的果实中番茄红素和糖的积累及其相对于果实成熟阶段的施用时间。不论施用时间长短,均能以4.5 dS m-1的高EC处理,提高果汁中的TSS和糖浓度以及水果中番茄红素的浓度。但是,延迟的高EC治疗(在花期4周后应用高EC)显示出TSS和糖浓度的增强较少。延迟EC处理中果实的番茄红素浓度达到了与标准高EC处理(从花期开始施用)相同的水平,这表明在高EC下番茄红素发育增强与果实成熟过程中的非生物胁迫反应有关,而不是通过有限的水通量来改变水果的质量平衡。

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  • 作者

    Wu Min;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 EN
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