Carbon Nanomaterials in Seed Priming: Current Possibilities

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-10-29 DOI:10.1021/acsomega.4c0723010.1021/acsomega.4c07230
José Daniel da Silva Fonseca, Ewa Wojciechowska, Joanna Kulesza and Bráulio Silva Barros*, 
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Abstract

The prevailing agricultural system has become deeply ingrained and insufficient due to outdated practices inherited from the Green Revolution, necessitating innovative approaches for sustainable agricultural development. Nanomaterials possess the potential to significantly improve the efficient utilization of resources while simultaneously encouraging sustainability. Among these, carbonaceous nanomaterials have found diverse applications in agriculture, exhibiting remarkable capabilities in this domain. Notably, using biowaste to produce these materials makes them both cost-effective and environmentally friendly for seed priming. Seed priming is a technique that can potentially enhance germination rates and stress tolerance by effectively regulating gene pathways and metabolism. This review provides a comprehensive summary of recent progress in the field, highlighting the challenges and opportunities of applying carbonaceous materials in seed priming to advance sustainable agriculture practices. The existing reviews provide a general overview of using carbonaceous materials (graphene and derivatives) in agriculture. Yet, they often lack a comprehensive examination of their specific application in seed-related contexts. In this review, we aim to offer a detailed analysis of the application of carbonaceous materials in seed priming and elucidate their influence on germination. Furthermore, the review shows that crop response to carbonaceous nanomaterials is linked to material concentration and crop species.

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种子催熟中的碳纳米材料:当前的可能性
由于绿色革命遗留下来的过时做法,现行农业体系已变得根深蒂固且不足,因此有必要采用创新方法来实现农业的可持续发展。纳米材料具有显著提高资源利用效率的潜力,同时还能促进可持续发展。其中,碳质纳米材料在农业领域的应用多种多样,表现出卓越的能力。值得注意的是,利用生物废弃物生产这些材料使其在种子处理方面既经济又环保。种子诱导是一种可通过有效调节基因通路和新陈代谢来提高发芽率和抗逆性的技术。本综述全面总结了该领域的最新进展,强调了在种子处理中应用碳质材料以推进可持续农业实践所面临的挑战和机遇。现有综述概述了碳质材料(石墨烯及其衍生物)在农业中的应用。然而,这些综述往往缺乏对碳质材料在种子相关领域具体应用的全面研究。在本综述中,我们旨在详细分析碳质材料在种子催芽中的应用,并阐明其对发芽的影响。此外,综述还表明,作物对碳质纳米材料的反应与材料浓度和作物种类有关。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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