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Advances in RNA Interference Technology and Its Impact on Nutritional Improvement, Disease and Insect Control in Plants

机译:RNA干扰技术的进展及其对植物营养改善,病虫害防治的影响

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This review highlights the advances in the knowledge of RNA interference (RNAi) and discusses recent progress on the functionality of different components RNAi machinery operating in the organisms. The silencing of genes by RNA interference has become the technology of choice for investigation of gene functions in different organisms. The refinement in the knowledge of the endogenous RNAi pathways in plants along with the development of new strategies and applications for the improvement of nutritional value of important agricultural crops through suppression of genes in different plants have opened new vistas for nutritional security. The improvement in the nutritional status of the plants and reduction in the level of toxins or antinutrients was desired for long, but the available technology was not completely successful in achieving the tissue specific regulation of some genes. In the recent years, a number of economically important crop plants have been tested successfully for improving plant nutritional value through metabolic engineering using RNAi. The implications of this technology for crop improvement programs, including nutritional enrichment, reduction of antinutrients, disease, and insect control have been successfully tested in variety of crops with commercial considerations. The enhancement of the nutraceutical traits for the desired health benefits in common crop plants through manipulation of gene expression has been elaborated in this article. The tremendous potential with RNAi technology is expected to revolutionize the modern agriculture for meeting the growing challenges is discussed.
机译:这篇综述重点介绍了RNA干扰(RNAi)知识的进步,并讨论了在生物体中操作的不同组分RNAi机械的功能方面的最新进展。 RNA干扰使基因沉默已成为研究不同生物体基因功能的首选技术。植物内源RNAi途径知识的完善,以及通过抑制不同植物中的基因来提高重要农作物营养价值的新策略和应用的开发,为营养安全性开辟了新的前景。长期以来,一直希望改善植物的营养状况并减少毒素或抗营养素的含量,但是可用的技术并不能完全成功地实现某些基因的组织特异性调节。近年来,已经成功测试了许多具有经济意义的农作物,可通过使用RNAi的代谢工程来改善植物的营养价值。这项技术对作物改良计划的影响,包括营养丰富,减少抗营养物质,疾病和害虫防治,已经在商业上成功地在多种作物中进行了测试。本文已经详细阐述了通过操纵基因表达来增强普通作物中所需保健功效的营养保健性状。讨论了RNAi技术的巨大潜力,有望彻底改变现代农业,以应对日益严峻的挑战。

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