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From Classical Radiation to Modern Radiation: Past, Present, and Future of Radiation Mutation Breeding

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FRONTIERS IN PUBLIC HEALTH
卷 9, 期 -, 页码 -

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FRONTIERS MEDIA SA
DOI: 10.3389/fpubh.2021.768071

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mutation breeding; classical radiation; particle radiation; space radiation; mutagenesis

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Radiation mutation breeding, which has been used for nearly 100 years, successfully improves crops by increasing genetic variation. Despite advancements in gene editing, mutation-induced germplasm diversity remains essential in modern and classical radiation breeding to produce random mutations in the whole genome and address challenges in global food production.
Radiation mutation breeding has been used for nearly 100 years and has successfully improved crops by increasing genetic variation. Global food production is facing a series of challenges, such as rapid population growth, environmental pollution and climate change. How to feed the world's enormous human population poses great challenges to breeders. Although advanced technologies, such as gene editing, have provided effective ways to breed varieties, by editing a single or multiple specific target genes, enhancing germplasm diversity through mutation is still indispensable in modern and classical radiation breeding because it is more likely to produce random mutations in the whole genome. In this short review, the current status of classical radiation, accelerated particle and space radiation mutation breeding is discussed, and the molecular mechanisms of radiation-induced mutation are demonstrated. This review also looks into the future development of radiation mutation breeding, hoping to deepen our understanding and provide new vitality for the further development of radiation mutation breeding.

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