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重离子束辐照对甘薯([L.] 拉姆)的综合影响。

Comprehensive effects of heavy-ion beam irradiation on sweet potato ( [L.] Lam.).

作者信息

Park Hyungjun, Narasako Yosuke, Abe Tomoko, Kunitake Hisato, Hirano Tomonari

机构信息

Interdisciplinary Graduate School of Agriculture and Engineering, University of Miyazaki, 1-1 Gakuenkibanadainishi, Miyazaki-shi, Miyazaki 889-2192, Japan.

Kushima AoiFarm Co., 6564-12 Naru, Kushima-shi, Miyazaki 889-3531, Japan.

出版信息

Plant Biotechnol (Tokyo). 2022 Sep 25;39(3):311-316. doi: 10.5511/plantbiotechnology.22.0725a.

Abstract

Sweet potato is a major root crop with nutritious tuberous roots. The mechanism of tuberous root development has not yet been adequately elucidated. Genetic resources are required to develop the molecular understanding of sweet potato. Heavy-ion beams were applied to hexaploid sweet potato for an increase in genetic variation, after which the comprehensive effects of heavy-ion beam irradiation were investigated. In vitro cultured shoots with an axillary bud of 'Beniharuka' were irradiated with Ar-ions at a dose of 1-5 Gy and C-ions at a dose of 5-20 Gy, and three irradiated lines were separated from each irradiated shoot. The shoot regeneration was inhibited at high doses of each ion irradiation. Ar-ion irradiation had an especially high biological effect on shoot regeneration. A total of 335 lines were obtained, consisting of 104 and 231 lines derived from Ar- and C-ion irradiation, respectively. The change in the DNA content of the lines was analyzed by flow cytometry to evaluate the irradiation-induced damage to the DNA. The two lines demonstrated significant differences in the DNA content and changes at the chromosome level. The screening for the morphological mutants was conducted in the field. Some irradiated lines showed inhibited or no tuberous root phenotype as mutant candidates. Additionally, the high-yield mutant candidates were dominated by Ar-ion irradiation. It was indicated that heavy-ion beam mutagenesis is effective in broadening the range of the phenotypes corresponding to tuberous root formation in hexaploid sweet potato.

摘要

甘薯是一种重要的块根作物,其块根营养丰富。块根发育的机制尚未得到充分阐明。需要遗传资源来深入了解甘薯的分子机制。为增加遗传变异,将重离子束应用于六倍体甘薯,之后对重离子束辐照的综合效应进行了研究。用剂量为1 - 5 Gy的氩离子和5 - 20 Gy的碳离子辐照“红春”带腋芽的离体培养苗,每个辐照苗分离出3个辐照株系。高剂量的每种离子辐照均抑制了芽的再生。氩离子辐照对芽再生具有特别高的生物学效应。共获得335个株系,分别由氩离子和碳离子辐照产生的104个和231个株系组成。通过流式细胞术分析株系DNA含量的变化,以评估辐照对DNA的损伤。两个株系在DNA含量和染色体水平变化上表现出显著差异。在田间对形态突变体进行筛选。一些辐照株系表现出块根表型受抑制或无块根表型,可作为突变体候选材料。此外,高产突变体候选材料以氩离子辐照为主。结果表明,重离子束诱变有效地拓宽了六倍体甘薯块根形成相关的表型范围。

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Mutation breeding of ornamental plants using ion beams.利用离子束进行观赏植物的诱变育种。
Breed Sci. 2018 Jan;68(1):71-78. doi: 10.1270/jsbbs.17086. Epub 2018 Feb 17.

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