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首页> 外文期刊>Horticultural Science >Effects of cultural cycle and nutrient solution electrical conductivity on plant growth, yield and fruit quality of 'Friariello' pepper grown in hydroponics
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Effects of cultural cycle and nutrient solution electrical conductivity on plant growth, yield and fruit quality of 'Friariello' pepper grown in hydroponics

机译:文化循环和营养液导电性对水栽法生长植物生长,产量和果实品质的影响

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摘要

Friariello' pepper (Capsicum annuum L.) was grown with nutrient film technique (NFT) in order to evaluate the effects of four nutritive solutions, at electrical conductivities (EC) of 3.5, 3.8, 4.1, 4.4 mS/cm, in two cultural cycles (winter-summer versus spring-autumn) on growth, yield and fruit quality. In the winter-summer cycle, fruit yield was significantly higher than in the spring-autumn one. The 3.8 mS/m EC resulted in the highest yield in the winter-summer crops, whereas the 4.1 mS/m EC was the most effective under the spring-autumn cycle. Water consumption was 34% higher in winter-summer than in spring-autumn season. The 3.8 mS/m EC caused the highest water consumption, whereas a 25% reduction was recorded under 4.4 mS/cm. The macronutrients absorption was the highest with 3.8-4.1 mS/cm EC and the lowest with 3.5 mS/cm. Fruits harvested in late summer and berries obtained under 4.4 mS/cm EC mostly showed the best quality. The fruit ascorbic acid and a-carotene content was higher in late summer than in late spring and all fruit antioxidants attained the highest values with 4.4 mS/cm EC.
机译:使用营养薄膜技术(NFT)生长Friariello'Pepper(Capsicum Annuum L.),以评估四种营养溶液的影响,电导率(EC)为3.5,3.8,4.1,4.4ms / cm,在两个文化中循环(冬季夏季与春秋)的生长,产量和果实质量。在冬季夏季,水果产量明显高于春季秋季。 3.8 MS / MEC导致冬季夏季作物中的最高产量,而4.1 MS / MEC在春季秋季循环下最有效。冬季夏季水消耗比在春季秋季高出34%。 3.8 ms / m EC引起了最高的耗水量,而25%的减少记录在4.4ms / cm下。 MACRORRIERS吸收最高,3.8-4.1ms / cm EC,最低,3.5ms / cm。在4.4 ms / cm eC下获得的晚夏和浆果收获的水果主要显示出最佳质量。晚夏的果实抗坏血酸和α-胡萝卜素含量高于晚弹簧,所有果实抗氧化剂均达到4.4ms / cm的最高值。

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