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首页> 外文期刊>Journal of Science and Technology of Greenhouse Culture >Effect of Zinc Nutrition on Growth Traits, Sodium and Potassium Concentrations and Calcium Molarity Ratio of Roots and Leaves in Two Olive Cultivars under Different Salinity Levels
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Effect of Zinc Nutrition on Growth Traits, Sodium and Potassium Concentrations and Calcium Molarity Ratio of Roots and Leaves in Two Olive Cultivars under Different Salinity Levels

机译:锌营养对不同盐度水平下两个橄榄品种生长性状,钠钾浓度和根叶钙摩尔比的影响

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In order to study the effect of zinc (Zn) nutrition on relative tolerance of olive ( Olea europea L.) seedlings to salinity, a factorial pot experiment was conducted, based on completely randomized design with three replications, during fall 2013. One-year seedlings of two olive cultivars ('Frontoio' and 'Conservolea') were planted in 10-litre plastic pots containing sand and perlite (1:1 ratio) and treated with nutrient solutions having different levels of sodium chloride (0, 40, 80 and 120 mM) and Zn (0, 1 and 5 M zinc sulfate). Results showed that salinity reduced root and leaf dry weight, seedling height, number of leaves, potassium/sodium (K/Na) ratio of roots and leaves, and calcium (Ca) molarity ratio in roots and leaves of both cultivars. With increasing Zn content to 5 M, all the growth traits of the two cultivars were increased significantly. This trend was observed in the leaf K content and K/Na ratio of roots and leaves as well. Interaction of Zn*cultivar and salinity*cultivar was significant only on root dry weight. The Frontoio cultivar had maximum root dry weight at all salinity levels. The Zn had a positive and significant effect on root and leaf dry weight. Interactions of Zn*salinity and Zn*cultivar were not significant on leaf dry weight. Frontoio cultivar was more tolerant cultivar to salinity according to the maximum root and leaf dry weight, as well as other studied traits. Application of Zn not only raised growth indices, but also increased K absorption, K/Na ratio, and Ca molarity ratio. This role led to improved nutrition conditions and finally increased dry leaf and root weights. In general, Ca molarity ratio is more proper index in comparison with K/Na ratio to determine tolerance to salinity in the olive seedlings.
机译:为了研究锌(Zn)营养对橄榄(Olea europea L.)幼苗对盐分相对耐受性的影响,在完全随机设计的基础上,进行了三次重复的析因盆栽试验,该试验于2013年秋季进行。将两个橄榄品种(“ Frontoio”和“ Conservolea”)的幼苗种植在装有沙子和珍珠岩(1:1比例)的10升塑料盆中,并用具有不同氯化钠含量(0、40、80和80 120 mM)和Zn(0、1和5 M硫酸锌)。结果表明,盐度降低了两个品种的根和叶干重,幼苗高度,叶数,根和叶的钾/钠(K / Na)比以及钙和钙的摩尔比。随着Zn含量增加至5M,两个品种的所有生长性状均显着提高。在叶片的钾含量和根与叶的钾/钠比中也观察到这种趋势。 Zn *品种和盐度*品种的相互作用仅在根干重上才有意义。在所有盐度水平下,Frontoio品种的根干重均最大。锌对根和叶的干重具有积极而显着的影响。 Zn *盐度和Zn *品种的相互作用对叶片干重无显着影响。根据最大的根和叶干重以及其他研究性状,Frontoio品种对盐分的耐受性更高。锌的施用不仅提高了生长指数,而且还增加了钾吸收,钾/钠比和钙摩尔比。这种作用导致改善了营养条件,并最终增加了干叶和根的重量。通常,Ca摩尔比与K / Na比相比是更合适的指标,以确定橄榄幼苗对盐分的耐受性。

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