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Molecular basis for multiple resistance to acetolactate synthase-inhibiting herbicides and atrazine in Amaranthus blitoides (prostrate pigweed)

机译:bl菜中的乙酰乳酸合成酶抑制性除草剂和at去津多重抗性的分子基础

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摘要

Amaranthus blitoides S. Watson (prostrate pigweed) populations resistant to acetolactate synthase (ALS; EC 4.1.3.18)-inhibiting herbicides and triazines (SuR/TR) were found in Israel. The Ganot population was 6- to 790-fold more resistant to ALS inhibitors than the wild type due to an altered target site. Molecular analyses showed that the Ganot population was a mixture of two biotypes: (i) SuRA/TR in which domain A of the als gene differed in one nucleotide, resulting in substitution of Pro by Ser 188; (ii) SuRB/TR in which a mutation in domain B led to a substitution of Trp by Leu 569. The mutation in domain A resulted in resistance to all ALS inhibitors except imidazolinones, whereas the mutation in domain B led to resistance to all ALS inhibitors tested. SuRA/TR and SuRB/TR are multiple-resistant with an additional single mutation in the plastidic psbA gene that changes Ser 264 to Gly in the D1 protein, leading to triazine resistance. It is evident that plants within a population exposed to a similar selection pressure may show different patterns of cross-resistance due to three different point mutations. This unique phenomenon renders planning of rational weed management difficult or even impossible.
机译:在以色列发现了对抑制乙酰乳酸合酶(ALS; EC 4.1.3.18)的除草剂和三嗪(SuR / TR)具有抗性的mar菜华信草(pro杂草)种群。由于靶位点的改变,Ganot种群对ALS抑制剂的抵抗力比野生型高6至790倍。分子分析表明,盖诺族种群是两种生物型的混合物:(i)SuRA / TR,其中als基因的结构域A在一个核苷酸上不同,导致Pro被Ser 188取代; (ii)SuRB / TR,其中结构域B的突变导致Leu 569取代Trp。结构域A的突变导致对除咪唑啉酮以外的所有ALS抑制剂的抗性,而结构域B的突变导致对所有ALS的抗性抑制剂测试。 SuRA / TR和SuRB / TR具有多重耐药性,在质体psbA基因中有一个额外的单突变,该突变使D1蛋白中的Ser 264变为Gly,导致三嗪耐药。显然,由于三个不同的点突变,处于相似选择压力的种群中的植物可能表现出不同的交叉抗性模式。这种独特的现象使合理的杂草管理计划变得困难甚至不可能。

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