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首页> 外文期刊>African Journal of Agricultural Research >Growth response and ameliorative effect of a forage plant (Festuca arundinacea) in calcareous saline-sodic soils
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Growth response and ameliorative effect of a forage plant (Festuca arundinacea) in calcareous saline-sodic soils

机译:石灰性盐碱土上的牧草(Festuca arundinacea)的生长响应和改善作用

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Saline-sodic soils are characterized by the occurrence of salt and sodium (Na+) to levels that can adversely affect several soil properties and growth of most crops. In this study, we reported a pot experiment for studying the biomass production, ion accumulation and potential soil ameliorative effects of tall fescue (Festuca arundinacea) grown under calcareous saline-sodic soil conditions. Seed-derived plants of F. arundinacea, were grown in pots filled with three different soils collected from two saline-sodic areas and one non-saline area. Results revealed that F. arundinacea biomass production was reduced under saline-sodic soils almost twice as much as non-saline soil. Herbage Ca2+ and Mg2+ concentration were the highest in non-saline soil but Na+, K+ and Cl- values were the highest in saline-sodic soils. Salty characteristics of the soils led to increased concentrations of Na+ and Cl- elements in the plants. F. arundinacea plantation in saline-sodic soils reduced the soil initial ECe values to 2.1 and 3.41 units, respectively. Plants stimulated calcite dissolution and increased soil soluble Ca2+ content. This lowered the initial exchangeable sodium percentage (ESP) values of saline-sodic soils from 23 and 26% to 19 and 22%, respectively. At harvest, the plants removed approximately 20 and 33 kg salt ha-1 from the saline-sodic soils, respectively.
机译:盐碱土壤的特征是盐和钠(Na +)的存在水平可能对几种土壤特性和大多数农作物的生长产生不利影响。在这项研究中,我们报道了一个盆栽实验,用于研究在钙质盐碱土壤条件下生长的高羊茅(Festuca arundinacea)的生物量产生,离子积累和潜在的土壤改良作用。矮牵牛种子的植物生长在装满三种不同土壤的盆中,这些土壤分别来自两个盐碱地区和一个非盐地区。结果表明,在盐碱土壤下,金莲花的生物量产量几乎是非盐渍土壤的两倍。在非盐渍土中,草料中Ca2 +和Mg2 +的浓度最高,但在盐碱土中,Na +,K +和Cl-的含量最高。土壤的咸味特性导致植物中Na +和Cl-元素的浓度增加。盐碱土壤中的金合欢种植将土壤初始ECe值分别降低至2.1和3.41单位。植物刺激方解石溶解并增加土壤可溶性Ca2 +含量。这将盐碱土壤的初始可交换钠百分比(ESP)值分别从23%和26%降低到19%和22%。在收获时,植物分别从盐碱土壤中去除了约20和33 kg盐ha-1。

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