施用锌硼提高绿豆产量、产量构成和总收益

Aniqa Mubeen, M. Saeed, M. Saleem, M. A. Wahid
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引用次数: 2

摘要

在豆类中,绿豆在巴基斯坦被视为有价值的经济作物,但由于各种农艺和营养相关的管理因素,其生产力受到压力。本研究拟在田间和盆栽条件下评价土壤施锌和施硼的交互效应。试验地点位于北纬31°、东经73°、海拔185米的印度农业大学费萨拉巴德农艺研究区。试验处理为3种Zn(0、2、4 kg Zn ha-1)和3种B(0、2、4 kg Zn ha-1),分别施用于B0Zn0、B0Zn2、B0Zn4、B2Zn0、B2Zn2、B2Zn4、B4Zn0、B4Zn2、B4Zn4 9个组合。结果表明,田间和盆栽试验中,B0Zn4处理对单株株高(60.66 cm)和荚果长(10.17 cm)有显著的促进作用,而B2Zn4处理对单株株高(56.8 cm 27 cm)、单株荚果数(38.78 20.66 cm)、荚果长(9.28 cm 10.18 cm)、结瘤数(12.56 9)和种子产量(1402 t ha-1 6.42 g plant-1)均有显著的促进作用。田间试验中,B2Zn4处理也比对照和其他处理提高了单株结荚分枝数(9.03)和每荚种子数(8.36)。在田间条件下,B2Zn2处理对产量相关属性也有显著影响,但在两个试验条件下,其他处理对低产量及其相关属性均有负面影响。在此基础上,推荐B2Zn4给面临土壤相关锌和B缺乏问题的农民,以获得最大的绿豆经济回报。
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Zinc and Boron Application Improves Yield, Yield Components and Gross Returns of Mungbean (Vigna radiata L.)
Among pulses, mungbean is being considered as valuable cash crop in Pakistan but its productivity is under stress due to various agronomic and nutrient related management factors. Current study was planned to assess the interactive effect of soil applied zinc (Zn) and boron (B) under both field and pot managed conditions. Experiment was conducted at the Agronomic Research Area, Department of Agronomy, University of Agriculture, Faisalabad which is located at 31ᵒ North latitude and 73ᵒ East longitude with an altitude of 185 meters above sea level. The experimental treatments were comprised of three Zn (0, 2 and 4 kg Zn ha-1) and three B (0, 2 and 4 kg Zn ha-1) rates which were applied in nine combinations viz., B0Zn0, B0Zn2, B0Zn4, B2Zn0,B2Zn2,B2Zn4, B4Zn0, B4Zn2, B4Zn4. Results revealed that, variations between field and pot trials as treatment B0Zn4 helped to increase plant height (60.66 cm) and pod length (10.17 cm) in field trials while B2Zn4 positively affected plant height (56.8 cm 27 cm), number of pods per plant (38.78 20.66), pod length (9.28 cm 10.18 cm), number of nodules (12.56 9) and seed yield (1402 t ha-1 6.42 g plant-1) in both field and pot trials, respectively. Moreover, B2Zn4 treatment also improved the number of pod bearing branches per plant (9.03) and number of seeds per pod (8.36) in field trial as compared to control and other set of treatments. Yield related attributes were also significant with B2Zn2 treatment under field conditions but negative effects in terms of low yield and its related attributes were witnessed with other set of treatments under both experimental conditions. Based on this data, B2Zn4 isrecommended to farmers facing soil related Zn and B deficiency problems, to get maximum economic returns of mungbean.
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