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RNA interference targeting ω-secalin genes differentially affects the processing quality in a wheat T1BL·1RS translocation line

机译:靶向ω-secalin基因的RNA干扰差异地影响小麦T1BL·1RS易位线中的加工质量

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摘要

Wheat-rye T1BL·1RS translocation lines are widely used,especially in China,but their processing quality is generally poor.An interfering expression vector targeting theω-secalin genes was constructed with the 1Bx7 seed-specific promoter.Biolistic-mediated genetic transformation of the wheat cultivar KN199 carrying the T1BL·1RS translocation generated 10 transgenic lines.Two representative transgenic lines,8-2 and 13-7,were selected for analysis.Compared with the control,the two transformants showed an up to 4.5-fold decrease in totalω-secalins and various levels of decrease inω-gliadins,γ-gliadins,and low-molecular-weight glutenins.A decrease in high molecular weight(HMW)glutenin 1Bx7 was detected only in 8-2,owing possibly to promoter methylation.Increased levels ofα-gliadins were observed in both transformants,but increased levels of HMW glutenins were observed only in 13-7.Line 13-7 showed increases in gluten index,Zeleny sedimentation value,stabilization time,and maximum resistance.Its bread volume was 849.6 mL,an 11.9%increase over that of the control.Line 8-2 showed decreases in these parameters,but its total cake-making quality score was 88,an 17.3%increase over that of the control.The study demonstrates that the same RNAi construct may produce different effects on wheat processing quality and highlights the influence of the vector promoter in RNA interference.
机译:小麦-Rye T1BL·1RS易位线被广泛使用,特别是在中国,但它们的加工质量通常是贫困的。用1BX7种子特异性启动子构建靶向ω-Secalin基因的干扰表达载体。药物介导的遗传转化携带T1BL·1RS易位的小麦品种KN199产生的10转基因型转基因系。选择试剂转基因系,8-2和13-7,用于分析。两种转化体显示出总计差异高达4.5倍以下-SeCalins和各种水平的ω-胶质蛋白,γ-胶质苷和低分子量谷丁烯。仅在8-2中检测到高分子量(HMW)甘油蛋白1bx7的降低,可能是启动子甲基化。增加水平在两种转化体中观察到α-胶质素,但仅在13-7中观察到HMW谷丁蛋白的水平增加.13-7显示谷蛋白指数,Zeleny沉降值,稳定时间和最大阻力增加。面包体积为849.6毫升,对照的增加11.9%.Line 8-2表现出这些参数的降低,但其总蛋糕质量得分为88,对照的增加17.3%。研究表明,相同的RNAi构建体可能对小麦加工质量产生不同的影响,并突出载体启动子在RNA干扰中的影响。

著录项

  • 来源
    《作物学报:英文版》 |2021年第002期|P.456-464|共9页
  • 作者单位

    Hebei Province Plant Genetic Engineering Center Institute of Genetics and Physiology Hebei Academy of Agriculture and Forestry Sciences Shijiazhuang 050051 Hebei China;

    Hebei Province Plant Genetic Engineering Center Institute of Genetics and Physiology Hebei Academy of Agriculture and Forestry Sciences Shijiazhuang 050051 Hebei China;

    Hebei Province Plant Genetic Engineering Center Institute of Genetics and Physiology Hebei Academy of Agriculture and Forestry Sciences Shijiazhuang 050051 Hebei China;

    Hebei Province Plant Genetic Engineering Center Institute of Genetics and Physiology Hebei Academy of Agriculture and Forestry Sciences Shijiazhuang 050051 Hebei China;

    Hebei Province Plant Genetic Engineering Center Institute of Genetics and Physiology Hebei Academy of Agriculture and Forestry Sciences Shijiazhuang 050051 Hebei China;

    Hebei Province Plant Genetic Engineering Center Institute of Genetics and Physiology Hebei Academy of Agriculture and Forestry Sciences Shijiazhuang 050051 Hebei China;

    Hebei Province Plant Genetic Engineering Center Institute of Genetics and Physiology Hebei Academy of Agriculture and Forestry Sciences Shijiazhuang 050051 Hebei China;

    Hebei Province Plant Genetic Engineering Center Institute of Genetics and Physiology Hebei Academy of Agriculture and Forestry Sciences Shijiazhuang 050051 Hebei China;

    Hebei Province Plant Genetic Engineering Center Institute of Genetics and Physiology Hebei Academy of Agriculture and Forestry Sciences Shijiazhuang 050051 Hebei China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 禾谷类作物;
  • 关键词

    T1BL·1RS; Quality improvement; RNA interference; Secalin; Triticum aestivum;

    机译:T1BL·1RS;质量改进;RNA干扰;Secalin;Triticum Aestivum;
  • 入库时间 2022-08-19 04:56:51
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