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Plant Growth Hormones and Nanomaterial Interface: Exploring the connection from development to defense

机译:植物生长激素与纳米材料界面:探索从发育到防御的联系

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The global increase in nanotechnology applications has been unprecedented and has now moved into the area of agriculture and food production. Applications with promising potential in sustainable agriculture include nanobiosensors, nanofertilizers, nanopesticides, nano-mediated remediation strategies for contaminated soils and nanoscale strategies to increase crop production and protection. Given this, the impact of nanomaterials/nanoparticles (NPs) on plant species needs to be thoroughly evaluated as this represents a critical interface between the biosphere and the environment. Importantly, phytohormones represent a critical class of biomolecules to plant health and productivity; however, the impact of NPs on these molecules is poorly understood. In addition, phytohormones, and associated pathways, are widely explored in agriculture to influence several biological processes for the improvement of plant growth and productivity under natural as well as stressed conditions. However, the impact of exogenous applications of phytohormones on NP-treated plants has not been explored. The importance of hormone signaling and cross-talk with other metabolic systems makes these biomolecules ideal candidates for a thorough assessment of NP impacts on plant species. This article presents a critical evaluation of the existing yet limited literature available on NP-phytohormone interactions in plants. In addition, the developing strategy of nano-enabled precision delivery of phytohormones via nanocarriers will be explored. Finally, directions for future research and critical knowledge gaps will be identified for this important aspect of nano-enabled agriculture.
机译:全球纳米技术应用的增长是前所未有的,现在已经进入农业和食品生产领域。在可持续农业中具有巨大潜力的应用包括纳米生物传感器、纳米肥料、纳米农药、纳米介导的污染土壤修复策略以及增加作物产量和保护的纳米级策略。鉴于此,需要彻底评估纳米材料/纳米颗粒(NPs)对植物物种的影响,因为这代表了生物圈和环境之间的关键界面。重要的是,植物激素是植物健康和生产力的关键生物分子;然而,NPs对这些分子的影响知之甚少。此外,植物激素和相关途径在农业中被广泛探索,以影响多种生物过程,以改善自然和胁迫条件下的植物生长和生产力。然而,植物激素的外源性应用对NP处理植物的影响尚未得到探索。激素信号传导和与其他代谢系统的串扰的重要性使这些生物分子成为彻底评估NP对植物物种影响的理想候选者。本文对植物中NP-植物激素相互作用的现有但有限的文献进行了批判性评估。此外,还将探索通过纳米载体实现纳米化植物激素精确递送的发展策略。最后,将确定未来研究的方向和关键知识差距,以了解纳米农业的这一重要方面。

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