Minimizing the Effect of Low Moisture Stress in Pearl Millet (Pennisetum glaucum L.) by Regulating Growth, Yield and Antioxidant Defense System Via Foliar Applied Silicon

Muhammad Ateeq, Muhammad Ahmad, Kousar Shahzadi, Raza Ullah, Komal Murad, Tanveer Abbas Ansari
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Abstract

Most abundant element on earth crust is silicon (Si), easily available and mostly used in farming against low moisture stress in arid regions. Thus, a pot experiment was accomplished for identifying the beneficial effects of Si on the growth, productivity and activity of antioxidants in pearl millet. The millet plant was arranged in complete randomized design (CRD) under normal and drought stress condition and treated with four level of Si (0.0, 2.5, 5.0, and 7.5 mmol/L). The results revealed that foliar 5.0 mmol/L of foliar applied Si improved the growth traits (leaf fresh weight 18.99%, stem fresh weight 9.34%, root fresh weight 28.75%, root dry weight 33.11%, plant height 21.7%, and stem diameter 28.26%) and yield traits (no. of grains per spike 9.22%, and grain yield 15.89%). While it enhances the activity of antioxidants as (catalase 8.1%, peroxidase 36.84%, and ascorbate peroxidase 17.16%). In short, foliar application of Si is an effective strategy for improving all the growth and yield traits as well as some of the antioxidants in the presence of low moisture stress in pearl millet crop. In this manner, foliar applied 5.0 mmol/L of Si will be recommended as the best doze for controlling the negative impact on pearl millet crop. Hopefully, the findings of this research will be helpful for the future research against stress related challenges.
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通过叶面喷施硅调节珍珠米(Pennisetum glaucum L.)的生长、产量和抗氧化防御系统,最大程度地减轻低水分胁迫的影响
硅(Si)是地壳中最丰富的元素,很容易获得,在干旱地区多用于农业生产,以抵御低水分胁迫。因此,我们完成了一项盆栽实验,以确定硅对珍珠粟的生长、产量和抗氧化剂活性的有益影响。在正常和干旱胁迫条件下,采用完全随机设计(CRD),用四种浓度的硅(0.0、2.5、5.0 和 7.5 mmol/L)处理小米植株。结果表明,叶面喷施 5.0 mmol/L 的硅可改善生长性状(叶鲜重 18.99%、茎鲜重 9.34%、根鲜重 28.75%、根干重 33.11%、株高 21.7%、茎直径 28.26%)和产量性状(每穗粒数 9.22%、谷物产量 15.89%)。它还能提高抗氧化剂的活性(过氧化氢酶 8.1%、过氧化物酶 36.84% 和抗坏血酸过氧化物酶 17.16%)。总之,在低水分胁迫下,叶面喷施 Si 是改善珍珠粟作物所有生长和产量性状以及某些抗氧化剂的有效策略。因此,建议将叶面喷施 5.0 mmol/L 的 Si 作为控制对珍珠米作物负面影响的最佳措施。希望本研究的结果对今后应对胁迫相关挑战的研究有所帮助。
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