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Growth Inhibition and Changes in Nutrient Accumulation in Cucumber Plants under Salinity Conditions

机译:盐度条件下黄瓜植物中营养积累的生长抑制和变化

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Soil salinity affects plant growth, including germination, reproductive development and yield. The most common soil salt, sodium chloride (NaCl) produces ionic toxicity, osmotic stress and nutrient deficiencies in plants, mainly of N, Ca, K, P, Fe and Zn. In this research we evaluated the response of two cultivars of cucumber (AF-1661 and Slice Max) to five NaCl concentrations (0, 50, 100, 150 and 200 mM) in the nutrient solution. Plants were grown under greenhouse using red tezontle (inert red volcanic gravel) as substrate and the nutrient solution of Steiner at 100%. The different levels of NaCl were applied during 60 days after transplanting. Height of plant, weight of fresh and dry matter of shoot and roots as well as concentration and accumulation of Ca, K, Mg, P, Na and N in shoot and roots were determined. The nutrient accumulation was estimated using the nutrient concentration and the weight of dry matter of shoot and roots. The cultivar 'AF-1661' had significant reductions in plant height with the addition of 150 mM NaCl. Salinity reduced the accumulation (mg/organ) of P, K, Ca, Mg and N, as well as the K/Na ratio both in shoot and in roots in both cultivars, because of antagonism between these macronutrients with the Na. At 200 mM NaCl, the cultivar 'Slice Max' showed higher sensibility to salinity than 'AF-1661', as this cultivar was unable of blocking the Na transport to shoots and therefore a higher accumulation of Na in shoots that caused leaf necrosis was observed.
机译:土壤盐分会影响植物的生长,包括发芽,生殖发育和产量。最常见的土壤盐,氯化钠(NaCl)产生植物毒性离子,渗透胁迫和营养缺乏,主要的N,CA,K,P,Fe和Zn。在本研究中,我们评估黄瓜的两个品种(AF-1661及切片最大值)在营养液5个的NaCl浓度(0,50,100,150和200毫摩尔)的反应。植株在用红tezontle(惰性红色火山砾)作为底物和Steiner在100%的营养液温室中生长。期间移栽后60天施加不同水平的NaCl。植物的身高,体重的枝条和根以及浓度和在枝条和根钙,钾,镁,磷,钠和N的积累的新鲜和干物质进行了测定。养分积累是使用营养物浓度和的枝条和根的干物质的重量来估计。所述品种“AF-1661”具有在植物高度通过加入150mM NaCl的的显著减少。盐度减少积累P,K,Ca,Mg和N中的(毫克/器官),以及无论在枝条和在这两个品种根K / Na比,因为这些常量营养物与钠之间的拮抗作用。在200mM的氯化钠,将栽培品种为“切片最大”表现出较高的敏感性盐度大于“AF-1661”,作为观察到引起叶坏死该品种无法阻断钠运输到芽和因此的Na在枝条中更高的积累的。

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