川荞2号表型变异突变体筛选及黄酮代谢相关基因的表达分析
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1.贵州大学农学院;2.黔西南州农业农村局

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国家重点研发计划政府间国际科技创新合作/港澳台科技创新合作”重点专项(2017YFE0117600);国家重点研发计划“科技助力经济2020”重点专项(SQ2020YFF0402959);国家自然科学基金地区基金(32160669);贵州省科技支撑计划(黔科合支撑[2020]1Y051号)


Identification of 'Chuanqiao 2' Mutants with Phenotypic Variation and Expression Analysis of Flavonoid-Related Genes
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1.College of Agriculture, Guizhou University;2.Agriculture and Rural Affairs Bureau of Qianxinan Prefecture, Xingyi Guizhou

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This study was funded by the National Key R&D Program of China (No. 2017YFE0117600, SQ2020YFF0402959); the Regional Funds of the National Natural Science Foundation of China (No. 32160669) and the Guizhou Science and Technology Support Project (No. 20201Y051)

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    摘要:

    本研究以50 mmol甲磺酸乙酯(EMS)为诱变剂,构建‘川荞2号’的突变体库,并观察了M2至M3群体表型的变化情况,测定M3群体中叶片和茎秆颜色突变植株的叶绿素和花青素含量,并用qRT-PCR对叶片和茎秆颜色突变植株中的黄酮合成代谢酶基因(CHS、F3H、F3’H、FLS和UFGT)进行表达量分析。结果表明,在M2突变群体中发现茎秆、叶片和生育期的突变植株共177株,突变率为10.56 %;在M3群体中的突变类型较丰富,包括叶片、生育期、茎秆和其他类型的突变植株共665株,占M3群体的45.86 %;同时,也观察到M3代籽粒的形状、颜色和大小均发生了不同程度的突变。通过测量发现,叶绿素和花青素含量在两类突变植株中的变化趋势几乎一致,均只有叶基部红色植株的含量高于正常植株,其余类型的突变植株含量均低于正常株,其中黄绿色斑纹叶含量最低;此外,还发现CHS和F3H基因在红色茎秆植株中的表达量最高,FLS基因在黄色叶片植株中的表达量最高,而F3’H在叶片变红植株中的表达量较高,其中在叶边缘变红植株中的含量最高;由此推测,M3群体中叶片和茎秆颜色的突变可能跟黄酮合成相关基因的表达有关。本研究筛选的突变体将为下一步芦丁代谢研究工作提供了基础材料。

    Abstract:

    In this study, we generated a mutant population of tartary buckwheat cultivar 'Chuanqiao 2' treated by 50 mmol ethyl methanesulfonate (EMS) solution. We recorded the phenotypic variations of M2 to M3 lines, and also measured the content of chlorophyll and anthocyanin in the mutant plants with leaf and stem color variation in the M3 population as well as the transcription level of flavonoid synthesis and metabolite related genes (CHS, F3H, F3'H, FLS and UFGT). 177 mutant plants showing alternations on stem and/or leaf morphology and/or growth stages were found in M2 population with a mutation rate of 10.56%. 665 mutant plants in M3 population were found, including leaves, growth stages, stems, and other types of mutant plants, accounting for 45.86% of the M3 population. We also observed that the shape, color and size of grains in M3 generation changed in varying degrees. We found that the change trend of chlorophyll and anthocyanin content in plants with color variation were almost the same, the content of the red plant at the base of the leaf was higher than that of the normal plant, and the content of the other types of mutant plants were lower than that of the normal plant. Among them, the yellow-green spotted leaf had the lowest content. We also found that CHS and F3H genes had the highest expression level in red stem plants, the FLS genes had the highest expression level in yellow leaf plants, and the expression of F3'H was higher in the two types of plants with red leaf than the other types, and the content was the highest in the plants with the leaf edge turned red. It is speculated that leaf and stem color variations in the M3 population may be contributed by the expression of flavonoid synthesis-related genes. Collectively, these mutants gained from this study provided the basic material for future deciphering the rutin metabolism mechanism.

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彭 艳,刘婷婷,阮景军,等.川荞2号表型变异突变体筛选及黄酮代谢相关基因的表达分析[J].植物遗传资源学报,2022,23(5):1508-1520.

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  • 收稿日期:2022-04-07
  • 最后修改日期:2022-05-04
  • 录用日期:2022-05-22
  • 在线发布日期: 2022-09-09
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