Synergistic effect of Paclobutrazol and silver nanoparticles (AgNPs) control the pod shattering in canola (Brassica napus L.) via physiological interferences: a mechanistic overview

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Habib Ali, Imran Mahmood, Ghulam Qadir, Naveed Iqbal Raja, Fozia Abasi, Mukhtar Ahmed, Muhammad Faizan Ali, Husnain Jawad, Jarosław Proćków
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Abstract

The ever-increasing impact of global climate change has profoundly affected crop growth, physiology, and yield characteristics, making them an economic hazard. Canola, a vital crop, is particularly susceptible to environmental challenges at any stage of development, which can have a negative impact on its growth, physiology, and pod formation, ultimately resulting in pod shattering and reduced yield. Canola's rate of return is decreased by mechanical harvesting, which results in pod shattering. The establishment of an abscission layer, triggered by enzymatic and hormonal disruptions, and accompanied by a decline in cell wall stickiness, exacerbates pod shattering. In this context, the potential roles of Paclobutrazol and silver nanoparticles in reinforcing pod strength to withstand shattering. The specific doses of both AgNPs and Paclobutrazol could be done on the aerial parts of plant. These elements facilitate the physiological growth of crops by mitigating the adverse effects of stress on canola, thereby reducing pod shattering and enhancing yield output. This critical review aims to comprehensively explore the physiological, enzymatic, and hormonal-based factors contributing to pod shattering under environmental stresses, while also highlighting the potential mitigation techniques employing Paclobutrazol and silver nanoparticles, to elevate canola yield production. Based on this comprehensive review, it is recommended to organize research experiment to explore the potential of AgNPs and Paclobutrazol in mitigating the pod shattering based yield losses in canola.

Abstract Image

五氯丁唑和纳米银颗粒(AgNPs)通过生理干扰控制油菜(Brassica napus L.)豆荚破碎的协同效应:机理综述
全球气候变化的影响日益加剧,对作物的生长、生理和产量特性产生了深远的影响,使其成为一种经济危害。油菜籽作为一种重要的作物,在任何生长阶段都特别容易受到环境挑战的影响,这可能会对其生长、生理和豆荚形成产生负面影响,最终导致豆荚破碎和减产。机械收割会降低油菜籽的收益率,导致豆荚破碎。由酶和荷尔蒙干扰引发的脱落层的形成,伴随着细胞壁粘性的下降,加剧了豆荚的破碎。在这种情况下,Paclobutrazol 和银纳米粒子在增强豆荚强度以抵御破碎方面具有潜在作用。特定剂量的银纳米粒子和 Paclobutrazol 可用于植物的气生部分。这些元素通过减轻压力对油菜籽的不利影响来促进作物的生理生长,从而减少豆荚破碎,提高产量。这篇重要综述旨在全面探讨环境胁迫下导致豆荚破碎的生理、酶学和激素因素,同时强调使用五氯苯甲酰肼和纳米银颗粒的潜在缓解技术,以提高油菜籽产量。在此综合综述的基础上,建议组织研究实验,探索银纳米粒子和 Paclobutrazol 在减轻油菜籽因豆荚破碎造成的产量损失方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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