核技术在园艺:提高生产力,控制害虫,节约用水

J. Chaurasia, V. K. Tripathi, Riddhima Tripathi
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摘要

由于作物在收获前后受到病虫害的破坏,导致作物产量大幅下降,园艺面临着重大挑战。核技术已成为提高农业生产力的宝贵工具。尽管核技术通常与能源和武器联系在一起,但它在园艺中的应用是多样化和多方面的。物理诱变剂,如核辐射,包括伽马射线、x射线和紫外线,以及粒子辐射,可用于诱导染色体断裂、DNA链交联、核苷酸缺失和取代。紫外线可用于照射单核期早期或晚期的细胞悬浮液和花粉粒。通过应用核技术,可以通过增加作物产量、防治病虫害和改善水质来提高农业生产力。食品保存也可以通过食品辐照来实现,在辐照中,电离辐射应用于目标病原体以破坏其DNA键。核技术还可以通过基因改造、以绝育为基础的病虫害防治和用水管理来诱导作物产生有益的突变。总之,核技术为应对园艺挑战提供了创新和有效的解决方案,从而为全球粮食安全作出重大贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nuclear Technology in Horticulture: Boosting Productivity, Controlling Pests, Conserving Water
Horticulture faces significant challenges due to the destruction of crops by pests and diseases, both before and after harvesting, resulting in a significant reduction in crop production. Nuclear technology has emerged as a valuable tool for enhancing agricultural productivity. Despite the common association of nuclear technology with energy and weaponry, its use in Horticulture is diverse and multifaceted. Physical mutagens such as nuclear radiation, including gamma rays, X-rays, and UV light, as well as particle radiation, can be employed to induce chromosomal breakages, cross-linking of DNA strands, nucleotide deletion, and substitution. UV rays can be used to irradiate cell suspensions and pollen grains in the early or late uninucleate phases. Through the application of nuclear technology, agricultural productivity can be improved by increasing crop yields, controlling pests and diseases, and enhancing water quality. Food preservation can also be achieved through food irradiation, where ionizing radiation is applied to target pathogens to break their DNA bonds. Nuclear technology can also be utilized to induce beneficial mutations in crops through genetic modification, sterilization-based pest control, and water usage management. In conclusion, nuclear technology presents an innovative and effective solution for addressing challenges in Horticulture, thus contributing significantly to global food security.
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