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利用伽马辐射改良未充分利用的植物品种

Use of Gamma Radiation for the Genetic Improvement of Underutilized Plant Varieties.

作者信息

Riviello-Flores María de la Luz, Cadena-Iñiguez Jorge, Ruiz-Posadas Lucero Del Mar, Arévalo-Galarza Ma de Lourdes, Castillo-Juárez Israel, Soto Hernández Marcos, Castillo-Martínez Carlos Roman

机构信息

Colegio de Postgraduados, Campus Montecillo, Km. 36.5, Carretera México-Texcoco, Montecillo, Texcoco 56230, Mexico.

Colegio de Postgraduados, Campus San Luis Potosí, Salinas de Hidalgo, San Luis Potosí 78622, Mexico.

出版信息

Plants (Basel). 2022 Apr 26;11(9):1161. doi: 10.3390/plants11091161.

Abstract

Agricultural biodiversity includes many species that have biological variants (natives, ecotypes, races, morphotypes). Their use is restricted to local areas because they do not fulfill the commercial requirements; however, it is well documented that these species are a source of metabolites, proteins, enzymes, and genes. Rescuing and harnessing them through traditional genetic breeding is time-consuming and expensive. Inducing mutagenesis may be a short-time option for its genetic improvement. A review of outstanding research was carried out, in order to become familiar with gene breeding using gamma radiation and its relevance to obtain outstanding agronomic characteristics for underutilized species. An approach was made to the global panorama of the application of gamma radiation in different conventional crop species and in vitro cultivated species, in order to obtain secondary metabolites, as well as molecular tools used for mutation screening. The varied effects of gamma radiation are essentially the result of the individual responses and phenotypic plasticity of each organism. However, even implicit chance can be reduced with specific genetic breeding, environmental adaptation, or conservation objectives.

摘要

农业生物多样性包括许多具有生物变体(本地种、生态型、品种、形态型)的物种。由于它们不符合商业要求,其使用仅限于当地;然而,有充分的文献记载,这些物种是代谢物、蛋白质、酶和基因的来源。通过传统遗传育种来拯救和利用它们既耗时又昂贵。诱变可能是对其进行遗传改良的一种短期选择。为了熟悉利用伽马辐射进行基因育种及其与获得未充分利用物种优异农艺性状的相关性,开展了一项杰出研究综述。探讨了伽马辐射在不同常规作物物种和离体培养物种中的应用的全球概况,以获得次生代谢物以及用于突变筛选的分子工具。伽马辐射的各种效应本质上是每个生物体个体反应和表型可塑性的结果。然而,通过特定的遗传育种、环境适应或保护目标,甚至隐含的偶然性也可以降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1a4/9102721/4ef572cb3abb/plants-11-01161-g001.jpg

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