首页> 外文期刊>Acta Horticulturae >Nitrogen and Aeration Levels of the Nutrient Solution in Soilless Cultivation Systems as Important Growing Conditions Affecting Inherent Quality of Baby Leaf Vegetables: a Review
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Nitrogen and Aeration Levels of the Nutrient Solution in Soilless Cultivation Systems as Important Growing Conditions Affecting Inherent Quality of Baby Leaf Vegetables: a Review

机译:无土栽培系统中营养液的氮和通气水平,因为它是影响幼叶蔬菜固有质量的重要生长条件:综述

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摘要

The floating system (FS) is an easy and profitable growing technique for the cultivation of baby leaf vegetables (BLV), since plants can be grown at high densities, giving high yields in short time and clean commercial products. Use of FS allows for influencing nutritional status and composition of plants modifying the nutrient solution (NS), particularly the final nitrate and oxalate contents, one important aspect in BLV. As in other hydroponic systems, plants grown in FS may suffer hypoxia becausethe roots gradually consume the oxygen dissolved in the NS. This work reviews the effect of the nitrogen concentration and chemical form supplied to the growing plants and the aeration level of the NS on the inherent quality of BLV. Studied species included rocket (Eruca sativa; Diplotaxis tenuifolia), lamb's lettuce (Valerianella olitoria), water and garden cress (Nasturtium officinalis; Lepidium sativum), lettuce (Lactuca sativa), purslane (Portulaca oleracea), spinach (Spinaca oleracea) and bladder campion (Silene vulgaris). For many species, concentrations from 4 to 16 mmol L"1 N were used in the NS and ratios between N-N03"and N-NH4+ from 100 to 0% were applied. In general, 8-12 mmol L"1 N led to high yields and limited leaf N03 accumulation and40-60% of N-NH4+ limited leaf N03 accumulation. With respect to the aeration levels of the NS, some species showed little sensitivity to oxygen depleted in the root medium, and were able to adapt to a gradual reduction in oxygen level. However, to increase yields, aeration is advisable, although the final quality of the product, in terms of functional phytochemicals concentrations, may be slightly lower. The level of oxygen had a different influence on the oxalate and nitrate contents depending on thestudied species.
机译:浮动系统(FS)是一种用于种植嫩叶蔬菜(BLV)的简便且有利可图的生长技术,因为植物可以高密度种植,可在短时间内获得高产量并提供清洁的商业产品。 FS的使用可以影响植物的营养状况和组成,从而改变营养液(NS),特别是最终硝酸盐和草酸盐的含量,这是BLV中的一个重要方面。与其他水耕系统一样,在FS中生长的植物可能会缺氧,因为根部逐渐消耗溶解在NS中的氧。这项工作审查了氮浓度和化学形式提供给正在生长的植物和NS的通气水平对BLV固有质量的影响。研究的物种包括火箭(Eruca sativa; Diplotaxis tenuifolia),羔羊的生菜(Valerianella olitoria),水和花园水芹(Nasturtium officinalis; Lepidium sativum),生菜(Lactuca sativa),马齿sl(Portulaca oleracea),菠菜(Spinaca ole)坎皮恩(Silene vulgaris)。对于许多物种,NS中使用4至16 mmol L“ 1 N的浓度,并且N-NO3”与N-NH4 +之间的比例为100%至0%。通常,8-12 mmol L“ 1 N导致高产量和有限的叶片NO3积累,以及40%至60%的N-NH4 +限制的叶片NO3积累。关于NS的通气水平,一些物种对氧气的敏感性很小。在根系培养基中耗竭,并且能够适应逐渐降低的氧气水平,但是,为了提高产量,建议通气,尽管就功能性植物化学物质浓度而言,产品的最终品质可能会略低。氧水平对草酸盐和硝酸盐含量的影响取决于所研究的物种。

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