RNAi-chitosan biopesticides for managing forest insect pests: an outlook

IF 2.7 3区 农林科学 Q2 ECOLOGY
Kanakachari Mogilicherla, Amit Roy
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引用次数: 1

Abstract

The expanding world population demands superior forest protection to fulfil feasible environmental certainty. The persistent pest infestations negatively influence forest health and cause substantial economic losses. In contrast, the traditional use of conventional pesticides results in a loss of soil microbial biodiversity, a drop in the population of pollinators, and adverse effects on other non-target organisms, including humans. Global forestry is looking for solutions to reduce the adverse environmental effects of current chemical pesticides. RNAi-nanotechnology has recently drawn much attention for its use in pest management. The advantages of engineered RNAi-chitosan nano-formulations in terms of simple digestion and dissolution, non-toxicity, high adsorption power, potential biodegradation in nature, and widespread availability and cost-effectiveness, have been well documented for pest management in agroecosystems. However, deploying such control strategies in forest ecosystems is still pending and demands further research. Hence, we highlight the putative uses of RNAi-chitosan biopesticides and their preparation, characterization, and putative application methods for forest pest management. We also discussed potential environmental risks and plausible mitigation strategies.
rnai -壳聚糖生物农药防治森林害虫研究进展
不断扩大的世界人口需要优越的森林保护,以实现可行的环境确定性。持续的虫害对森林健康产生了负面影响,并造成了巨大的经济损失。相比之下,传统杀虫剂的使用会导致土壤微生物生物多样性的丧失,传粉昆虫数量的减少,并对包括人类在内的其他非目标生物产生不利影响。全球林业正在寻找减少当前化学农药对环境的不利影响的解决方案。RNAi纳米技术最近因其在害虫管理中的应用而备受关注。工程化RNAi壳聚糖纳米制剂在简单的消化和溶解、无毒、高吸附能力、在自然界中的潜在生物降解以及广泛的可用性和成本效益方面的优势,已被充分证明可用于农业生态系统中的害虫管理。然而,在森林生态系统中部署这种控制策略仍然悬而未决,需要进一步研究。因此,我们强调了RNAi壳聚糖生物农药的假定用途及其制备、表征和用于森林害虫管理的假定应用方法。我们还讨论了潜在的环境风险和合理的缓解策略。
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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来源期刊
CiteScore
4.50
自引率
6.20%
发文量
256
审稿时长
12 weeks
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