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Effects of soil and foliar applications of iron and zinc on flowering and essential oil of chamomile at greenhouse conditions

机译:洋甘菊铁和锌对温室条件开花和精油的影响

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摘要

In order to study the effects of soil and foliar applications of iron (Fe) and zinc (Zn) on flowering, flower yield and essential oil production of German chamomile a pot experiment was conducted under greenhouse conditions at the Faculty of Agriculture, University of Tabriz, Iran in 2012. The experiment was arranged as completely randomized design with 12 treatments and three replications. Treatments were as follow: T1: control – without Fe or Zn fertilizers, T2: 30 mg FeSO4.7H2O kg-1 dry soil, T3: 22 mg ZnSO4.7H2O kg-1 dry soil, T4: 30 mg FeSO4.7H2O + 22 mg ZnSO4.7H2O kg-1 dry soil, T5: foliar spraying of FeSO4.7H2O (3.5 g L-1), T6: foliar spraying of FeSO4.7H2O (7.0 g L-1), T7: foliar spraying of ZnSO4.7H2O (2.5 g L-1), T8: foliar spraying of ZnSO4.7H2O (5.0 g L-1), T9: T5+T7, T10: T5+T8, T11: T6+T7, T12: T6+T8. The foliar spraying was done two times during the growing period. The results revealed that the flower number, flower yield, essential oil content and essential oil yield were significantly increased by soil and foliar applications of Fe + Zn, compared with the control (untreated). The highest flower number (477 plant-1), flower yield (11.6 g pot-1), essential oil content (0.88 %) and essential oil yield (119 mg pot-1) were recorded for the soil application of Fe + Zn (T4) by 58, 68, 21.4 and 105 % increment compared to the control, respectively. Foliar application of Fe + Zn (T12) was placed at the next rank; however this treatment had no significant difference with the soil application of Fe + Zn (T4). Other treatments did not show significant differences with the control. Generally, the results showed that soil or foliar application of Fe + Zn can be effective on increase or improve of quantity and quality of chamomile yield. Moreover, use of foliar application as a low cost method especially in areas with alkaline or calcareous soils can be recommended.
机译:为了研究铁(Fe)和锌(Zn)对德国洋甘菊的铸造(Fe)和锌(Zn)对德国洋甘菊的开花,花卉产量和精油生产的影响,在塔德里大学农业学院的温室条件下进行了锅实验,2012年的伊朗。该实验被安排为完全随机设计,具有12种治疗和三种复制。治疗如下:T1:控制 - 无Fe或Zn肥,T2:30mg FesO4.7H2O Kg-1干燥土壤,T3:22mg ZnSO4.7H2O Kg-1干燥土壤,T4:30 mg Feso4.7h2O + 22 Mg ZnSO4.7H2O KG-1干燥土壤,T5:Feso4.7H2O(3.5g L-1),T6:Feso4.7H2O(7.0g L-1),T7:叶面喷涂ZnSO4.7H2O的叶面喷涂(2.5g L-1),T8:叶片喷涂ZnSO4.7H2O(5.0g L-1),T9:T5 + T7,T10:T5 + T8,T11:T6 + T7,T12:T6 + T8。在生长期间,叶面喷雾两次。结果表明,与对照(未处理)相比,Fe + Zn的土壤和叶面应用明显增加花序,花产量,精​​油含量和精油产量。为Fe + Zn的土壤应用记录了最高的花序(477株植物-1),花产率(11.6克壶1),精油含量(0.88%)和精油产量(119mg pot-1)(与对照相比,T4)分别为58,68,21.4和105%的增量。 Fe + Zn(T12)的叶面施用被置于下一个等级;然而,这种治疗与Fe + Zn的土壤施用没有显着差异(T4)。其他治疗与对照没有显着差异。通常,结果表明,Fe + Zn的土壤或叶面施用可以有效地增加或提高洋甘菊产量的数量和质量。此外,可以推荐使用叶面申请作为低成本方法,特别是在碱性或钙质土壤的区域。

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