营养液中Cl-和Na+比例对水培系统番茄产量的影响

Q3 Agricultural and Biological Sciences
S. Parra-Terraza, A. Angúlo-Castro, P. Sánchez-Peña, J. B. Valdez-Torres, W. Rubio-Carrasco
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引用次数: 1

摘要

锡那罗亚沿海地区的番茄集约化生产暴露在海风和灌溉水沉积的大量Cl和Na中,这影响了这种蔬菜的产量。研究了营养液中Cl-/阴离子比例(25/100、50/100和75/100)和Na+/阳离子比例(25/100、50/100和75/100)对番茄矿物成分、干物质产量和产量的影响。试验设计完全随机化,32因子排列,4个重复。进行方差分析和均值比较(Tukey, P≤0.05)。随着营养液中Cl-/阴离子和Na+/阳离子比例的增加,番茄叶、茎和果实中Cl和Na浓度显著升高。75/100 Cl-/阴离子比降低了叶片中Ca浓度(P≤0.05),75/100 Na+/阳离子比降低了叶片和茎中K浓度(P≤0.05)。这两种处理分别降低了地上干生物量(分别为48%和25.8%)和番茄产量(分别为50.8%和45.7%)。结果表明,在Cl-/阴离子比例为75/100或Na+/阳离子比例为75/100的情况下,番茄植株吸收了过量的Cl或Na,导致离子失衡(尤其是K+和Ca2+),影响干物质生产和产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Cl- and Na+ ratios in nutrient solutions on tomato (Solanum lycopersicum L.) yield in a hydroponic system
Intensive tomato (Solanum lycopersicum L.) production in coastal areas of Sinaloa is exposed to significant amounts of Cl and Na deposited by sea breezes and irrigation water, which affects the yield of this vegetable. The aim of this study was to evaluate three percentage ratios of Cl-/anions (25/100, 50/100 and 75/100) and three percentage ratios of Na+/cations (25/100, 50/100 and 75/100) in the nutrient solution on mineral composition, dry matter production and yield of tomato. The experimental design was completely randomized with a 32 factorial arrangement and four replications. Analysis of variance and mean comparisons were performed (Tukey, P ≤ 0.05). Cl and Na concentrations in tomato leaves, stems and fruits increased significantly with increasing ratios of Cl-/anions and Na+/cations in the nutrient solution. The 75/100 Cl-/anions ratio reduced (P ≤ 0.05) the Ca concentration in leaves, while the 75/100 Na+/cations ratio decreased (P ≤ 0.05) K concentrations in leaves and stems. Both ratios reduced aerial dry biomass (48 and 25.8 %, respectively) and tomato yield (50.8 and 45.7 %, respectively). The results indicate that tomato plants grown with the 75/100 percentage ratio of Cl-/anions or the 75/100 percentage ratio of Na+/ cations absorb excessive amounts of Cl or Na, which causes ionic imbalance (especially of K+ and Ca2+) and affects dry matter production and yield.
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来源期刊
Revista Chapingo, Serie Horticultura
Revista Chapingo, Serie Horticultura Agricultural and Biological Sciences-Horticulture
CiteScore
1.60
自引率
0.00%
发文量
11
审稿时长
28 weeks
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