首页> 外文期刊>International Journal of Agriculture and Biology >Resistance of Annual Ryegrass against Acetolactate Synthase-Inhibiting Herbicides in Wheat Fields: Field Evaluation and Molecular Analysis
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Resistance of Annual Ryegrass against Acetolactate Synthase-Inhibiting Herbicides in Wheat Fields: Field Evaluation and Molecular Analysis

机译:一年生黑麦草对小麦田中乙酰乙酸合酶抑制除草剂的抗性:田间评价和分子分析

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Resistance to acetolactate synthase (ALS) inhibiting herbicides in annual ryegrass has evolved widely in Saudi Arabia but mutations conferring resistance have never been reported. In survey of 91 fields, representing seven ecological regions in Saudi Arabia four (57%) populations had resistance; whereas two (29%) populations had tendency of resistance development against ALS-inhibition herbicides. Use of ALS-inhibiting herbicides provided up to 73% control of ryegrass. Ten base pair substitution evolved in public sphere by the alignment of ALS cDNA sequence. Phenotypic alteration found in five mutants subsequently induced changes in amino acid. The Pro-197-Thr and Pro-197-Gln in Tabouk and Harad population, respectively present at earlier reported location with novel changes in amino acid threonine was unreported. Novel ALS-allele represented by Lys-98-Met mutants had methionine amino acid observed in whole Saudi population except resistant one with lysine. From Asp-185-Tyr novel allele was identified, aspartic acid in all Saudi population as well as in resistant allele and transformed into tyrosine. There exists resistance in ryegrass against ALS-inhibiting herbicides, which suggests use of alternate herbicides and/or development of integrated weed management strategies for wheat in Saudi Arabia.
机译:一年生黑麦草中对乙酰乳酸合酶(ALS)抑制性除草剂的抗性在沙特阿拉伯已得到广泛发展,但从未报道过赋予抗性的突变。在代表沙特阿拉伯七个生态区的91个田地进行的调查中,有四个(57%)人口有抗药性;而有两个(29%)种群对ALS抑制性除草剂有抗药性发展趋势。使用抑制ALS的除草剂可控制多达73%的黑麦草。通过ALS cDNA序列的比对,在公共领域进化出十个碱基对。在五个突变体中发现的表型改变随后诱导了氨基酸的改变。尚未报道塔博克和哈拉德族人群中分别存在于较早报道的位置的Pro-197-Thr和Pro-197-Gln,氨基酸苏氨酸有新变化。以Lys-98-Met突变体为代表的新型ALS等位基因,除了对赖氨酸有抗药性的一种外,在整个沙特人群中均具有蛋氨酸氨基酸。从Asp-185-Tyr中鉴定出新的等位基因,所有沙特人群以及抗性等位基因中的天冬氨酸都转化为酪氨酸。黑麦草中存在对ALS抑制性除草剂的抗性,这表明在沙特阿拉伯小麦的替代除草剂的使用和/或小麦综合杂草处理策略的发展。

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