首页> 外文期刊>Journal of Science and Technology of Greenhouse Culture >Interaction of potassium and boron on yield and uptake of micronutrients in radish (Raphanus sativus L.) under salinity stress
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Interaction of potassium and boron on yield and uptake of micronutrients in radish (Raphanus sativus L.) under salinity stress

机译:盐分胁迫下钾硼交互作用对萝卜(Raphanus sativus L.)微量元素的产量和吸收的影响

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Due to wasteful use of low-quality irrigation water, many agricultural lands in arid and semi-arid regions of Iran are confronted with salinity phenomenon. Salinity decreases growth and yield of plants, therefore, ways to combat deleterious effects of soil salinity on plant growth should be sought. One of these strategies is physiological prevention of salt accumulation in plants and increasing their resistance to salinity. In this greenhouse study, the main objective was to investigate the interaction effects of potassium (K) and boron (B) on yield and uptake of some micronutrients by roots and shoots of radish under salinity conditions. The experiment was carried out as factorial, based on completely randomized design with three replications, at 3 levels of K (1, 4 and 8 mM), 3 levels of B (0.1, 0.2 and 0.3 mg/L) and 3 levels of salinity (1, 4 and 8 dS/m) in quartz sand culture medium. Results showed that interaction of K and B on fresh and dry weight of shoots, fresh weight of roots and uptake of B, Fe, Cu, Zn and Mn was significant at different levels of salinity. Maximum fresh and dry weight of roots and shoots was observed in 8 mM K treatment. Also, maximum B, Fe and Mn uptake in shoots, and maximum B, Fe and Cu uptake by roots was observed at 4 mM K level. Uptake of B, Fe, Mn and Cu in roots was higher at salinity of 4 dS/m than 8 dS/m. At 4 dS/m salinity, maximum shoot yield and B uptake in roots, Zn uptake in shoots, and Mn uptake in roots and shoots, was observed at 8 mM K and 0.3 mg/L B. At salinity level of 8 dS/m, maximum B and Mn uptake in shoots and B and Fe uptake in roots was observed at 4 mM K and 0.3 mg/L B. According to the results this study, different levels of salinity and concentration of K and B, due to the interaction of these two elements, affect yield and uptake of plant micronutrients.
机译:由于浪费了劣质灌溉水,伊朗干旱和半干旱地区的许多农业用地都面临盐碱化现象。盐分会降低植物的生长和产量,因此,应寻求解决土壤盐分对植物生长的有害影响的方法。这些策略之一是生理预防植物中盐的积累并提高其对盐分的抗性。在该温室研究中,主要目的是研究盐分条件下钾(K)和硼(B)对萝卜根和芽的某些微量元素的产量和吸收的相互作用。该实验是基于完全随机设计的因子分解法进行的,具有三个重复,分别在3个水平的K(1、4和8 mM),3个水平的B(0.1、0.2和0.3 mg / L)和3个盐度水平下进行(1、4和8 dS / m)在石英砂培养基中。结果表明,在不同盐度下,钾和硼的交互作用对枝干鲜重,根鲜重和硼,铁,铜,锌和锰的吸收均具有显着影响。在8 mM K处理中,观察到根和芽的最大鲜重和干重。此外,在4 mM K水平下,观察到芽中最大的B,Fe和Mn吸收,以及根部的最大B,Fe和Cu吸收。盐度为4 dS / m时,根部对B,Fe,Mn和Cu的吸收高于8 dS / m。在盐度为4 dS / m的条件下,在8 mM K和0.3 mg / L B的条件下,观察到最大的枝条产量和根系中的B吸收,枝条中的Zn吸收以及根部和枝条中的Mn吸收。盐度为8 dS / m时,在4 mM K和0.3 mg / L B下观察到芽中最大的B和Mn吸收以及根中的B和Fe吸收。根据这项研究的结果,由于相互作用,钾和B的盐度和浓度不同这两个元素中的一个,影响植物微量营养素的产量和吸收。

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