Khandelwal Neha, Barbole Ranjit S, Banerjee Shashwat S, Chate Govind P, Biradar Ankush V, Khandare Jayant J, Giri Ashok P
Plant Molecular Biology, Biochemical Sciences Division, CSIR-National Chemical Laboratory, Pune 411008, Maharashtra, India.
Maharashtra Institute of Medical Education and Research (MIMER) Medical College, Talegaon Dabhade, Dist Pune 410507, India.
J Environ Manage. 2016 Dec 15;184(Pt 2):157-169. doi: 10.1016/j.jenvman.2016.09.071. Epub 2016 Sep 30.
One of the most vital supports to sustain human life on the planet earth is the agriculture system that has been constantly challenged in terms of yield. Crop losses due to insect pest attack even after excessive use of chemical pesticides, are major concerns for humanity and environment protection. By the virtue of unique properties possessed by micro and nano-structures, their implementation in Agri-biotechnology is largely anticipated. Hence, traditional pest management strategies are now forestalling the potential of micro and nanotechnology as an effective and viable approach to alleviate problems pertaining to pest control. These technological innovations hold promise to contribute enhanced productivity by providing novel agrochemical agents and delivery systems. Application of these systems engages to achieve: i) control release of agrochemicals, ii) site-targeted delivery of active ingredients to manage specific pests, iii) reduced pesticide use, iv) detection of chemical residues, v) pesticide degradation, vi) nucleic acid delivery and vii) to mitigate post-harvest damage. Applications of micro and nano-technology are still marginal owing to the perception of low economic returns, stringent regulatory issues involving safety assessment and public awareness over their uses. In this review, we highlight the potential application of micro and nano-materials with a major focus on effective pest management strategies including safe handling of pesticides.
地球上维持人类生命的最重要支撑之一是农业系统,而该系统在产量方面一直面临挑战。即使大量使用化学农药,因害虫侵袭导致的作物损失仍是人类和环境保护的主要担忧。鉴于微观和纳米结构所具有的独特性质,人们对其在农业生物技术中的应用寄予厚望。因此,传统的害虫管理策略如今正在阻碍将微纳技术作为解决害虫防治相关问题的有效可行方法的潜力。这些技术创新有望通过提供新型农用化学品和递送系统来提高生产力。这些系统的应用旨在实现:i)农用化学品的控释;ii)活性成分的靶向递送以防治特定害虫;iii)减少农药使用;iv)检测化学残留;v)农药降解;vi)核酸递送;vii)减轻收获后损失。由于认为经济回报低、涉及安全评估的严格监管问题以及公众对其使用的认知,微纳技术的应用仍然有限。在本综述中,我们重点强调微纳材料在有效害虫管理策略方面的潜在应用,包括农药的安全处理。