Effect of Natural Phytohormones on Growth, Nutritional Status, and Yield of Mung Bean (Vigna radiata L.) and N Availability in Sandy-Loam Soil of Sub-Tropics

IF 2.9 Q2 SOIL SCIENCE Soil Systems Pub Date : 2023-04-10 DOI:10.3390/soilsystems7020034
Aasma Parveen, Muhammad Mahran Aslam, Rashid Iqbal, Muhammad Ali, Muhammad Kamran, M. Alwahibi, M. Akram, Mohamed S. Elshikh
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Abstract

Climate changes and poor soil nutrient profiles in sub-tropics are determinant factors to estimate crop productivity. This study aims to evaluate the impact of phytohormones, e.g., indole acetic acid (IAA) and gibberellic acid (GA3), on mung bean yield, seed nutritional profile, and soil N availability in the sub-tropical region of Pakistan. The mung bean plants were treated with three levels (0, 30, and 60 mg L−1) of IAA and GA3 individually and/or in combination using a hydraulic sprayer. The amendments were applied in the flowering stage (approximately 25 days after germination) in a randomized complete block design. The results revealed that the 60 mg L−1 concentration of IAA and GA3 led to significant changes in the growth and yield traits compared to non-treated plants. For example, GA3 positively influenced the biological yield (35.0%), total carbohydrate (7.0%), protein (16.0%), and nitrogen (14.0%) contents in mung bean seeds, compared to the control (CK). Additionally, the combined foliar treatment of IAA and GA3 (IAA2 + GA2) displayed a much stronger influence on yield attributes, such as the number of pods by 66.0%, pods’ weights by 142.0%, and seed yield by 106.5%, compared with the CK. Mung bean plants showed a significant improvement in leaf photosynthetic pigments under a higher level (60 mg L−1) of sole and combined treatments of IAA and GA3. Moreover, except abscisic acid, the endogenous concentration of IAA, GA3, and zeatin was enhanced by 193.0%, 67.0%, and 175.0% after the combined application of IAA and GA3 (IAA2 + GA2) compared to the CK treatment. In addition, soil N availability was increased by 72.8% under the IAA2 treatment and 61.5% under IAA2 + GA2, respectively, compared with the control plot. It was concluded that the combined treatment of IAA and GA3 (IAA2 + GA2) followed by the sole application of GA3 and IAA at a 60 mg L−1 concentration were most effective treatments to improve the morpho-physiology and nutrient profile of mung beans; however, the underlying molecular mechanisms need to be explored further.
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天然植物激素对亚热带沙壤土绿豆生长、营养状况、产量及氮有效性的影响
亚热带地区的气候变化和贫瘠的土壤养分状况是估计作物生产力的决定性因素。本研究旨在评估吲哚乙酸(IAA)和赤霉酸(GA3)等植物激素对巴基斯坦亚热带地区绿豆产量、种子营养状况和土壤氮有效性的影响。使用液压喷雾器分别和/或组合使用三种水平(0、30和60 mg L−1)的IAA和GA3处理绿豆植株。在开花阶段(发芽后约25天),以随机完全区组设计的方式施用改良剂。结果表明,与未处理的植物相比,60 mg L−1浓度的IAA和GA3导致生长和产量性状的显著变化。例如,与对照(CK)相比,GA3对绿豆种子的生物产量(35.0%)、总碳水化合物(7.0%)、蛋白质(16.0%)和氮(14.0%)含量产生了积极影响。此外,与对照相比,IAA和GA3(IAA2+GA2)联合叶面处理对产量属性的影响要大得多,如荚数增加了66.0%,荚重增加了142.0%,种子产量增加了106.5%。在较高水平(60 mg L−1)的IAA和GA3单独和联合处理下,绿豆植株的叶片光合色素显著改善。此外,除脱落酸外,IAA和GA3(IAA2+GA2)联合施用后,IAA、GA3和玉米素的内源浓度分别比对照提高了193.0%、67.0%和175.0%。此外,与对照相比,IAA2处理和IAA2+GA2处理的土壤氮有效性分别提高了72.8%和61.5%。结果表明,IAA和GA3联合处理(IAA2+GA2),然后单独施用浓度为60mg L−1的GA3和IAA,是改善绿豆形态生理和营养状况的最有效处理;然而,潜在的分子机制还有待进一步探索。
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来源期刊
Soil Systems
Soil Systems Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
5.30
自引率
5.70%
发文量
80
审稿时长
11 weeks
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