Shelar Amruta, Nile Shivraj Hariram, Singh Ajay Vikram, Rothenstein Dirk, Bill Joachim, Xiao Jianbo, Chaskar Manohar, Kai Guoyin, Patil Rajendra
Department of Technology, Savitribai Phule Pune University, Pune, Maharashtra, 411007, India.
Zhejiang Provincial International S&T Cooperation Base for Active Ingredients of Medicinal and Edible Plants and Health, School of Pharmaceutical Science, Jinhua Academy, Zhejiang Chinese Medical University, Hangzhou, 310053, Zhejiang, People's Republic of China.
Nanomicro Lett. 2023 Feb 16;15(1):54. doi: 10.1007/s40820-023-01025-5.
Agro seeds are vulnerable to environmental stressors, adversely affecting seed vigor, crop growth, and crop productivity. Different agrochemical-based seed treatments enhance seed germination, but they can also cause damage to the environment; therefore, sustainable technologies such as nano-based agrochemicals are urgently needed. Nanoagrochemicals can reduce the dose-dependent toxicity of seed treatment, thereby improving seed viability and ensuring the controlled release of nanoagrochemical active ingredients However, the applications of nanoagrochemicals to plants in the field raise concerns about nanomaterial safety, exposure levels, and toxicological implications to the environment and human health. In the present comprehensive review, the development, scope, challenges, and risk assessments of nanoagrochemicals on seed treatment are discussed. Moreover, the implementation obstacles for nanoagrochemicals use in seed treatments, their commercialization potential, and the need for policy regulations to assess possible risks are also discussed. Based on our knowledge, this is the first time that we have presented legendary literature to readers in order to help them gain a deeper understanding of upcoming nanotechnologies that may enable the development of future generation seed treatment agrochemical formulations, their scope, and potential risks associated with seed treatment.
农业种子易受环境压力影响,对种子活力、作物生长和作物生产力产生不利影响。不同的基于农用化学品的种子处理方法可提高种子发芽率,但也会对环境造成损害;因此,迫切需要纳米基农用化学品等可持续技术。纳米农用化学品可以降低种子处理的剂量依赖性毒性,从而提高种子活力,并确保纳米农用化学品活性成分的控释。然而,纳米农用化学品在田间植物上的应用引发了对纳米材料安全性、暴露水平以及对环境和人类健康的毒理学影响的担忧。在本综述中,讨论了纳米农用化学品在种子处理方面的发展、范围、挑战和风险评估。此外,还讨论了纳米农用化学品用于种子处理的实施障碍、它们的商业化潜力以及制定政策法规以评估可能风险的必要性。据我们所知,这是我们首次向读者呈现这一具有传奇色彩的文献,以帮助他们更深入地了解即将出现的纳米技术,这些技术可能推动新一代种子处理农用化学品配方的开发、其范围以及与种子处理相关的潜在风险。