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纳米肥料促进植物生产力的分子机制及其在可持续农业中的应用。

Molecular mechanisms of plant productivity enhancement by nano fertilizers for sustainable agriculture.

机构信息

Department of Bioscience and Bioengineering, Indian Institute of Technology Jodhpur, Jodhpur, Rajasthan, India.

出版信息

Plant Mol Biol. 2024 Nov 26;114(6):128. doi: 10.1007/s11103-024-01527-9.

Abstract

Essential plant nutrients encapsulated or combined with nano-dimensional adsorbents define nano fertilizers (NFs). Nanoformulation of non-essential elements enhancing plant growth and stress tolerance also comes under the umbrella of NFs. NFs have an edge over conventional chemical fertilizers, viz., higher plant biomass and yield using much lesser fertilization, thereby reducing environmental pollution. Foliar and root applications of NFs lead to their successful uptake by the plant, depending on the size, surface charge, and other physicochemical properties of NFs. Smaller NFs can pass through channels on the waxy cuticle depending on the hydrophobicity, while larger NFs pass through the stomatal conduits of leaves. Charge-based adsorption, followed by apoplastic movement and endocytosis, translocates NFs through the root, while the size of NFs influences passage into vascular tissues. Recent transcriptomic, proteomic, and metabolomic studies throw light on the molecular mechanisms of growth promotion by NFs. The expression levels of nutrient transporter genes are regulated by NFs, controlling uptake and minimizing excess nutrient toxicity. Accelerated growth by NFs is brought about by their extensive regulation of cell division, photosynthesis, carbohydrate, and nitrogen metabolism, as well as the phytohormone-dependent signaling pathways related to development, stress response, and plant defense. NFs mimic Ca, eliciting second messengers and associated proteins in signaling cascades, reaching transcription factors and finally orchestrating gene expression to enhance growth and stress tolerance. Developing advanced nano fertilizers of the future must involve exploring molecular interactions with plants to reduce toxicity and improve effectiveness.

摘要

必需的植物营养物质被包裹或与纳米尺寸的吸附剂结合定义了纳米肥料(NFs)。纳米形式的非必需元素增强植物生长和抗胁迫能力也属于 NFs 的范畴。NFs 相对于传统化肥具有优势,即使用更少的施肥就能提高植物生物量和产量,从而减少环境污染。叶面和根部施用 NFs 可根据 NFs 的大小、表面电荷和其他物理化学性质使植物成功吸收 NFs。较小的 NFs 可以通过蜡质表皮上的通道,这取决于其疏水性,而较大的 NFs 则通过叶片的气孔导管。基于电荷的吸附,随后是质外体运动和内吞作用,将 NFs 转运通过根部,而 NFs 的大小影响其进入血管组织的能力。最近的转录组学、蛋白质组学和代谢组学研究揭示了 NFs 促进生长的分子机制。NFs 调节养分转运体基因的表达水平,控制养分的吸收并最小化过量养分毒性。NFs 通过广泛调节细胞分裂、光合作用、碳水化合物和氮代谢以及与发育、应激反应和植物防御相关的依赖植物激素的信号通路,加速植物生长。未来开发先进的纳米肥料必须涉及探索与植物的分子相互作用,以降低毒性并提高有效性。

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