Evaluation of yield, biochemical characteristics and nutrient composition of ‘Camarosa’ strawberry in response to different K/N ratios

IF 1.5 4区 农林科学 Q3 PLANT SCIENCES Journal of Berry Research Pub Date : 2023-03-15 DOI:10.3233/jbr-220056
S. Yousefi, S. Eshghi, B. Jamali
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引用次数: 1

Abstract

BACKGROUND: The normal growth and yield of strawberry plant are affected by lack of balanced fertilization. OBJECTIVE: This study was carried out to evaluate the effects of different N/K ratios of nutrient solution on yield, some biochemical characteristics, macro-, and micronutrient concentrations, absorption, and translocation factor in strawberry ‘Camarosa’. METHODS: Three concentration levels of K (200, 250, and 300 mg l–1, using KNO3, KCl, and K2SO4) and two concentration levels of N (120 and 180 mg l–1, using NH4H2PO4, Ca(NO3)2, and KNO3) were applied during two vegetative and reproductive growth stages. RESULTS: The results showed that the highest productivity (149.05 g/plant), soluble sugars, and starch content were obtained from plants which had received a K/N ratio of 200/180 and 300/120 mg l–1 during the vegetative and reproductive stages, respectively. Plants treated with the highest K and N concentrations (300 and 180 mg l–1, respectively) during the vegetative and reproductive stages had the highest leaf area, photochemical efficiency of photosystem II (Fv/Fm), as well as shoot and root dry weight. High N and low K concentration in the nutrient solution increased concentrations of N, Ca, Mg, Mn, and Zn while decreased K and Fe concentrations. In addition, higher N levels increased the uptake of N, P, K, Ca, Mg, Mn, and Zn. At a K/N ratio of 200/120 mg l–1, the translocation factor of N decreased, while the translocation factor of K and Mg increased. CONCLUSION: In conclusion, the changes in the K/N ratio significantly affected the concentration of nutrient elements, absorption and translocation factor.
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不同钾氮比对“Camarosa”草莓产量、生化特性及营养成分的影响
背景:草莓植株的正常生长和产量受到缺乏平衡施肥的影响。目的:研究不同氮钾比营养液对卡马罗萨草莓产量、某些生化特性、常量和微量营养素浓度、吸收和转运因子的影响。方法:三种浓度水平的K(200、250和300 mg l–1,使用KNO3、KCl和K2SO4)和两种浓度水平的N(120和180 mg l–1,使用NH4H2PO4、Ca(NO3)2和KNO3)在两个营养生长和生殖生长阶段施用。结果:结果表明,生产效率最高(149.05 g/植物)、可溶性糖和淀粉含量从K/N比为200/180和300/120的植物中获得 在营养期和生殖期分别为mg l–1。用最高K和N浓度处理的植物(300和180 mg l–1)在营养和生殖阶段具有最高的叶面积、光系统II的光化学效率(Fv/Fm)以及地上部和根部干重。营养液中的高N和低K浓度增加了N、Ca、Mg、Mn和Zn的浓度,而降低了K和Fe的浓度。此外,较高的氮水平增加了对N、P、K、Ca、Mg、Mn和Zn的吸收。K/N比为200/120时 mg l–1时,N的易位因子降低,而K和mg的易位因子增加。结论:总的来说,K/N比值的变化显著影响营养元素的浓度、吸收和转运因子。
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来源期刊
Journal of Berry Research
Journal of Berry Research Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
3.50
自引率
11.80%
发文量
21
期刊介绍: The main objective of the Journal of Berry Research is to improve the knowledge about quality and production of berries to benefit health of the consumers and maintain profitable production using sustainable systems. The objective will be achieved by focusing on four main areas of research and development: From genetics to variety evaluation Nursery production systems and plant quality control Plant physiology, biochemistry and molecular biology, as well as cultural management Health for the consumer: components and factors affecting berries'' nutritional value Specifically, the journal will cover berries (strawberry, raspberry, blackberry, blueberry, cranberry currants, etc.), as well as grapes and small soft fruit in general (e.g., kiwi fruit). It will publish research results covering all areas of plant breeding, including plant genetics, genomics, functional genomics, proteomics and metabolomics, plant physiology, plant pathology and plant development, as well as results dealing with the chemistry and biochemistry of bioactive compounds contained in such fruits and their possible role in human health. Contributions detailing possible pharmacological, medical or therapeutic use or dietary significance will be welcomed in addition to studies regarding biosafety issues of genetically modified plants.
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