The Potential of Cold Plasma-Based Seed Treatments in Legume–Rhizobia Symbiotic Nitrogen Fixation: A Review

Crops Pub Date : 2024-03-11 DOI:10.3390/crops4010008
Dhanuja N. Abeysingha, Harleen K. Dhaliwal, Lihui Du, Chathuranga De Silva, Krzysztof Szczyglowski, M. Roopesh, M. Thilakarathna
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Abstract

The use of cold plasma (CP) seed treatment is an emerging agricultural technology that exhibits the potential to enhance nodulation and symbiotic nitrogen fixation (SNF) in legumes. CP is composed of a diverse mixture of excited atoms, molecules, ions, and radicals that have the potential to affect the physical properties of the seed and influence gene expressions that could have a lasting impact on the nodulation, SNF, growth, and yield of legumes. The direct participation of the CP in the nodulation process and its correlation with the escalation of nodules and SNF is still not fully understood. This review discussed four areas in the nodulation and SNF process that can directly or indirectly affect CP seed treatments: root–rhizobia signal exchange pathways, root/shoot growth and development, phytohormone production, and the nitrogen fixation process. We also discuss the potential challenges and future research requirements associated with plasma technology to enhance SNF in legumes.
基于冷等离子体的种子处理在豆科植物-根瘤菌共生固氮中的潜力:综述
使用冷等离子体(CP)进行种子处理是一种新兴的农业技术,具有提高豆科植物的结瘤和共生固氮(SNF)的潜力。冷等离子体由多种受激原子、分子、离子和自由基混合物组成,具有影响种子物理性质和影响基因表达的潜力,可对豆科植物的结瘤、共生固氮、生长和产量产生持久影响。氯化石蜡在拔节过程中的直接参与及其与拔节和萌发的相关性仍未得到充分了解。本综述讨论了可能直接或间接影响 CP 种子处理的四个领域:根-根瘤菌信号交换途径、根/芽生长发育、植物激素产生和固氮过程。我们还讨论了与等离子体技术相关的潜在挑战和未来研究要求,以增强豆科植物的固氮作用。
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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