首页> 外文期刊>Frontiers in Plant Science >Changes in Biomass, Mineral Composition, and Quality of Cardoon in Response to NO 3 - :Cl - Ratio and Nitrate Deprivation from the Nutrient Solution
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Changes in Biomass, Mineral Composition, and Quality of Cardoon in Response to NO 3 - :Cl - Ratio and Nitrate Deprivation from the Nutrient Solution

机译:响应 no 3 - :cl - 与营养溶液中的硝酸盐剥夺

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Leaf extracts of cultivated cardoon ( Cynara cardunculus L. var. altilis DC) are an important source of phenols. Soilless culture represents an important and alternative tool to traditional agriculture, since it allows a precise control of plant nutrition and the maximization of yield and quality of the product. Reducing N supply, while keeping quantity as high as possible is desirable for environmental and health-related reasons, especially that N deficiency can lead to improved concentrations of secondary plant metabolites. Two greenhouse experiments were carried out in order to determine the effect of a decreasing NO 3 - :Cl~(-)ratio (80:20, 60:40, 40:60, or 20:80) and nitrate deprivation (0, 5, 10, or 15 days before harvest) on biomass production, leaf chlorophyll content and fluorescence, mineral composition, and phytochemicals in leaves of cardoon ‘Bianco Avorio’ grown in a floating system. Total phenols, flavonoids and antioxidant capacity increased linearly with Cl~(-)availability, especially when nitrate was replaced by 80% of chloride (20:80 NO 3 - :Cl~(-)ratio), without having a detrimental effect on yield. Total nitrogen and nitrate concentration in leaves decreased linearly with increasing Cl~(-)in the nutrient solution. Total phenols and antioxidant capacity recorded after 15 days of nitrate deprivation were higher by 43.1, 42.8, and 44.3% and by 70.5, 40.9, and 62.2%, at 59, 97 and 124 days after sowing, respectively compared to the control treatment. The decrease in leaf nitrate content recorded under N-deprivation occurred more rapidly than the reduction in total nitrogen. Thus, up to 15 days of nitrate withdrawal can lower nitrates without sharply reduce total nitrogen or affecting growth and biomass of cultivated cardoon. The use of N-free nutrient solution prior to harvest or the replacement of nitrates with chlorides could be adopted among growers to improve the quality of the product and enhance sustainability of crop production system.
机译:栽培碳膜提取物(Cynara cardunculus l.var.Altilis DC)是苯酚的重要来源。无土文化代表了传统农业的重要和替代工具,因为它允许精确控制植物营养和产品的产量和质量的最大化。减少N供应,同时保持与环境和健康的原因尽可能高的数量,特别是N缺陷会导致次株培养浓度的次生代谢物。进行了两个温室实验,以确定减少3 - :cl〜( - )比率(80:20,60:40,40:60或20:80)和硝酸盐剥夺的效果(0,5收获前10天或15天)对浮动系统生长的生物质生产,叶片叶绿素含量和荧光,矿物质组合物和植物组合物中的叶片。总酚,黄酮类化合物和抗氧化能力与Cl〜( - )可用性线性增加,特别是当硝酸盐被80%的氯化物取代时(20:80,NO 3 - :Cl〜()比率,而不对产量有害作用。叶片中的总氮和硝酸盐浓度随着营养溶液中的Cl〜( - )的增加而导致线性地降低。与对照处理相比,在硝酸盐剥夺15天硝酸盐剥夺15天后记录的总酚和抗氧化能力较高43.1,42.8和44.3%,59,97和124天,分别为59,97和124天。在N-剥夺下记录的叶片硝酸含量的减少比总氮的还原更快。因此,长达15天的硝酸盐戒断可以降低硝酸盐而不明显减少氮气的总氮气或影响栽培碳的生长和生物量。在种植者中可以采用在收获或用氯替换硝酸盐之前使用N-Free营养溶液,以提高产品的质量,提高作物生产系统的可持续性。

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