首页> 外文期刊>Journal of Plant Diseases and Protection >Acetohydroxyacid synthase (AHAS) amino acid substitution Asp376Glu in Lolium perenne: effect on herbicide efficacy and plant growth
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Acetohydroxyacid synthase (AHAS) amino acid substitution Asp376Glu in Lolium perenne: effect on herbicide efficacy and plant growth

机译:多年生黑麦草中乙酰羟酸合酶(AHAS)氨基酸取代Asp376Glu:对除草剂功效和植物生长的影响

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摘要

Recently, the acetohydroxyacid synthase (AHAS) amino acid substitution Asp376Glu was detected in a Lolium perenne population originating in France. This is the first documented occurrence of the Asp376Glu single-nucleotide polymorphism in a Lolium species. The effects on herbicide efficacy and plant fitness are presented. Separation of the original population into different genetic subgroups allowed the comparison of different L. perenne AHAS genotypes according to their susceptibility to AHAS-inhibiting herbicides. Root and shoot biomass accumulation as well as tiller production was analysed for resistant and sensitive populations. Genotype-specific AHAS activity and inhibition were studied in vitro, using recombinant Arabidopsis thaliana DNA. Plants expressing the AHAS Asp376Glu genotype were resistant against mesosulfuron + iodosulfuron, pyroxsulam and propoxy-carbazone. To imazamox, reduced susceptibility for dosages below 140 g a.i. ha(-1) was observed. In the absence of herbicide, no significant impact of the Asp376Glu genotype on shoot biomass and tiller accumulation could be observed, whereas root biomass of the Asp376Glu genotype was significantly reduced by 68 % compared to the AHAS genetic wild type. The AHAS enzyme study revealed reduced AHAS enzyme rate of 48 % for the Asp376Glu genotype compared to the AHAS genetic wild type. This study highlights the role of the amino acid exchange on resistance profile against the most relevant AHAS-inhibiting herbicides. First indications were found that fitness of the Asp376Glu genotype is hampered.
机译:最近,在源自法国的黑麦草中发现了乙酰羟酸合酶(AHAS)氨基酸取代Asp376Glu。这是在黑麦草物种中首次记载Asp376Glu单核苷酸多态性。介绍了对除草剂功效和植物适应性的影响。将原始种群分为不同的遗传亚群,可以根据其对抑制AHAS的除草剂的敏感性,比较不同的百日草AHAS基因型。分析了抗性和敏感性种群的根和茎生物量积累以及分till产量。使用重组拟南芥DNA在体外研究了基因型特异性AHAS活性和抑制作用。表达AHAS Asp376Glu基因型的植物对中磺隆+碘磺隆,吡氧舒兰和丙氧基卡巴carb有抗性。对于imazamox,对于低于140 g a.i的剂量,药敏性降低。观察到ha(-1)。在没有除草剂的情况下,Asp376Glu基因型对枝条生物量和分till积累没有显着影响,而与AHAS遗传野生型相比,Asp376Glu基因型的根生物量显着减少了68%。 AHAS酶研究表明,与AHAS遗传野生型相比,Asp376Glu基因型的AHAS酶降低了48%。这项研究强调了氨基酸交换对最相关的抑制AHAS的除草剂的抗性的作用。初步发现Asp376Glu基因型的适应性受到阻碍。

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