Biopesticides.

Daniel L Sudakin
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引用次数: 78

Abstract

The term 'biopesticide' encompasses a broad array of microbial pesticides, biochemicals derived from micro-organisms and other natural sources, and processes involving the genetic incorporation of DNA into agricultural commodities that confer protection against pest damage (plant-incorporated protectants). Some microbial pesticides, such as Bacillus thuringiensis, have a long history of safe and effective use as a biological insecticide. More recent developments in microbial pest control include the utilisation of other bacterial and fungal species that may competitively inhibit the growth of pathogenic and toxigenic micro-organisms on important agricultural commodities. The use of microbes and their gene products introduces additional considerations to the toxicological dose-response relationship, including a need to determine the plausibility of infectious and immunological effects in association with human exposure to these biopesticides in food or the environment. Studies of substantial equivalence suggest that foods currently derived from plant-incorporated protectants are not likely to differ from conventional foods. However, there is general consensus that the scientific methods to assess risks from genetically modified foods and micro-organisms will continue to evolve in the future.

生物农药。
“生物农药”一词包括一系列广泛的微生物农药、来自微生物和其他自然来源的生物化学物质,以及涉及将DNA遗传结合到农产品中以保护免受虫害损害的过程(植物结合保护剂)。一些微生物杀虫剂,如苏云金芽孢杆菌,作为生物杀虫剂有着安全有效的使用历史。微生物病虫害防治的最新发展包括利用其他细菌和真菌物种,这些物种可能竞争性地抑制重要农产品上病原微生物和产毒微生物的生长。微生物及其基因产物的使用为毒理学剂量-反应关系带来了额外的考虑,包括需要确定与人类在食物或环境中接触这些生物农药有关的感染和免疫效应的合理性。实质性等效性的研究表明,目前从含有植物的保护剂中提取的食品不太可能与传统食品不同。然而,普遍的共识是,评估转基因食品和微生物风险的科学方法将在未来继续发展。
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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