首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Synergistic mutations of two rapeseed AHAS genes confer high resistance to sulfonylurea herbicides for weed control
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Synergistic mutations of two rapeseed AHAS genes confer high resistance to sulfonylurea herbicides for weed control

机译:两种菜籽AHAS基因的协同突变赋予杂草对照的高抗磺酰脲类除草剂

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Key message A double mutant 5N of rapeseed was obtained with a synergistic effect of high resistance to sulfonylurea herbicide. Excellent weed control was observed in Ning R201 created by 5N resources. Sulfonylurea herbicides, which inhibit acetohydroxyacid synthase (AHAS), have become the most widely used herbicides worldwide. However, weed control in rapeseed crop production remains challenging in China due to the shortage of available herbicide-resistant cultivars. In this study, we developed a rapeseed line (PN19) with sulfonylurea herbicide resistance through seed mutagenesis. Molecular analysis revealed a Trp-574-Leu mutation inBnAHAS1-2Rof PN19 according to the sequence ofArabidopsis thaliana, and an allele-specific cleaved amplified polymorphic sequence marker was developed to target the point mutation. A double mutant (5N) with very high sulfonylurea resistance was then created through pyramiding two mutant genes of PN19 and M342 by molecular marker-assisted selection. Herbicide resistance identification, toxicology testing, and an in vitro enzyme activity assay of AHAS in 5N indicated that each mutant was four and eight times more resistant to sulfonylurea than M342 and PN19, respectively. Protein structure analysis of AHAS1 demonstrated that the leucine of mutant Trp-574-Leu destroyed the original pi-plane stacking effect of the local region for tribenuron-methyl binding, leading to herbicide tolerance. Isobole graph analysis showed a significant synergistic effect of the combination of two mutant genes in 5N for improved tolerance to sulfonylurea herbicides. Finally, we bred rapeseed variety Ning R201 using 5N herbicide resistance resources, and observed excellent weed control performance. Together, these results demonstrate the practical value of 5N application for optimizing and simplifying rapeseed cultivation in China.
机译:关键消息通过对磺酰脲除草剂的高抗性的协同作用获得了油菜籽的双突变体5N。在5N资源创建的NING R201中观察到出色的杂草控制。抑制乙酰羟基酸合酶(AHAs)的磺酰脲除草剂已成为全球最广泛使用的除草剂。然而,由于可用的除草剂的品种短缺,在中国的杂草控制在中国仍然具有挑战性。在这项研究中,我们通过种子诱变开发了一种油菜籽(PN19),通过种子诱变,用磺酰脲类除草剂抗性。分子分析揭示了根据Arabopsis Thaliana的序列的TRP-574-Leu突变,并且开发了等位基因特异性切割的扩增的多晶晶序列标记以靶向点突变。然后通过分子标记辅助选择通过径向两种PN19和M342的突变基因产生具有非常高的磺酰脲抗性的双突变体(5N)。除草剂抗性鉴定,毒理学测试和5N中Ahas的体外酶活性测定表明,每个突变体分别比M342和PN19耐磺酰脲的耐4倍和八倍。 AHAS1的蛋白质结构分析证明突变体TRP-574-LEU的亮氨酸破坏了局部区域的原始PI平面堆叠效果,用于呋喃酸甲基结合,导致除草剂耐受性。 Isobole图分析显示了5N中的两个突变基因组合的显着协同效应,以改善对磺酰脲除草剂的耐受性。最后,我们使用5N除草剂抵抗资源进行了油菜籽品种宁R201,并观察了出色的杂草控制性能。这些结果在一起表明了5N申请优化和简化了中国油菜栽培的实际价值。

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    Jiangsu Acad Agr Sci Inst Ind Crops Natl Ctr Oil Crops Improvement Nanjing Subctr Key Lab Cotton &

    Rapeseed Nanjing Minist Agr Nanjing 210014 Peoples R China;

    Jiangsu Acad Agr Sci Inst Ind Crops Natl Ctr Oil Crops Improvement Nanjing Subctr Key Lab Cotton &

    Rapeseed Nanjing Minist Agr Nanjing 210014 Peoples R China;

    Jiangsu Acad Agr Sci Inst Ind Crops Natl Ctr Oil Crops Improvement Nanjing Subctr Key Lab Cotton &

    Rapeseed Nanjing Minist Agr Nanjing 210014 Peoples R China;

    Jiangsu Acad Agr Sci Inst Ind Crops Natl Ctr Oil Crops Improvement Nanjing Subctr Key Lab Cotton &

    Rapeseed Nanjing Minist Agr Nanjing 210014 Peoples R China;

    Jiangsu Acad Agr Sci Inst Ind Crops Natl Ctr Oil Crops Improvement Nanjing Subctr Key Lab Cotton &

    Rapeseed Nanjing Minist Agr Nanjing 210014 Peoples R China;

    Jiangsu Acad Agr Sci Inst Ind Crops Natl Ctr Oil Crops Improvement Nanjing Subctr Key Lab Cotton &

    Rapeseed Nanjing Minist Agr Nanjing 210014 Peoples R China;

    Jiangsu Acad Agr Sci Inst Ind Crops Natl Ctr Oil Crops Improvement Nanjing Subctr Key Lab Cotton &

    Rapeseed Nanjing Minist Agr Nanjing 210014 Peoples R China;

    Jiangsu Acad Agr Sci Inst Ind Crops Natl Ctr Oil Crops Improvement Nanjing Subctr Key Lab Cotton &

    Rapeseed Nanjing Minist Agr Nanjing 210014 Peoples R China;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
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