Dalakouras Athanasios, Koidou Venetia, Papadopoulou Kalliope
ELGO-DIMITRA, Institute of Industrial and Forage Crops, Larissa, Greece.
ELGO-DIMITRA, Institute of Industrial and Forage Crops, Larissa, Greece; University of Thessaly, Department of Biochemistry and Biotechnology, Larissa, Greece.
Chemosphere. 2024 Mar;352:141530. doi: 10.1016/j.chemosphere.2024.141530. Epub 2024 Feb 22.
In view of the ongoing climate change and the ever-growing world population, novel agricultural solutions are required to ensure sustainable food supply. Microbials, natural substances, semiochemicals and double stranded RNAs (dsRNAs) are all considered potential low risk pesticides. DsRNAs function at the molecular level, targeting specific regions of specific genes of specific organisms, provided that they share a minimal sequence complementarity of approximately 20 nucleotides. Thus, dsRNAs may offer a great alternative to conventional chemicals in environmentally friendly pest control strategies. Any low-risk pesticide needs to be efficient and exhibit low toxicological potential and low environmental persistence. Having said that, in the current review, the mode of dsRNA action is explored and the parameters that need to be taken into consideration for the development of efficient dsRNA-based pesticides are highlighted. Moreover, since dsRNAs mode of action differs from those of synthetic pesticides, custom-made risk assessment schemes may be required and thus, critical issues related to the risk assessment of dsRNA pesticides are discussed here.
鉴于当前的气候变化和不断增长的世界人口,需要新的农业解决方案来确保可持续的粮食供应。微生物、天然物质、信息素和双链RNA(dsRNA)都被认为是潜在的低风险农药。只要双链RNA与特定生物体特定基因的特定区域具有约20个核苷酸的最小序列互补性,它们就会在分子水平上发挥作用,靶向这些区域。因此,在环境友好型害虫控制策略中,双链RNA可能是传统化学物质的一个很好的替代品。任何低风险农药都需要高效,且具有低毒理学潜力和低环境持久性。话虽如此,在本综述中,我们探讨了双链RNA的作用模式,并强调了开发高效双链RNA农药需要考虑的参数。此外,由于双链RNA的作用模式与合成农药不同,可能需要定制的风险评估方案,因此,本文讨论了与双链RNA农药风险评估相关的关键问题。