首页> 外文期刊>Pesticide Biochemistry and Physiology >Multiple-herbicide resistance in Echinochloa crus-galli var. formosensis, an allohexaploid weed species, in dry-seeded rice
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Multiple-herbicide resistance in Echinochloa crus-galli var. formosensis, an allohexaploid weed species, in dry-seeded rice

机译:Echinochloa crus-galli var中对多种除草剂的抗药性。稻种中异六倍体杂草种formosensis

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Biotypes of Echinochloa crus-galli var. formosensis with resistance to cyhalofop-butyl, an acetyl-CoA carboxylase (ACCase) inhibitor, have been found in dry-seeded rice fields in Okayama, Japan. We collected two lines with suspected resistance (Ecf27 and Ecf108) from dry-seeded rice fields and investigated their sensitivity to cyhalofop-butyl and other herbicides. Both lines exhibited approximately 7-fold higher resistance to cyhalofop-butyl than a susceptible line. Ecf108 was susceptible to penoxsulam, an acetolactate synthase (ALS) inhibitor. On the other hand, Ecf27 showed resistance to penoxsulam and two other ALS inhibitors: propyrisulfuron and pyriminobac-methyl. The alternative herbicides butachlor, thiobencarb, and bispyribac-sodium effectively controlled both lines. To examine the molecular mechanisms of resistance, we amplified and sequenced the target-site encoding genes in Ecf27, Ecf108, and susceptible lines. Partial sequences of six ACCase genes and full-length sequences of three ALS genes were examined. One of the ACCase gene sequences encodes a truncated aberrant protein due to a frameshift mutation in both lines. Comparisons of the genes among Ecf27, Ecf108, and the susceptible lines revealed that none of the ACCases and ALSs in Ecf27 and Ecf108 have amino acid substitutions that are known to confer herbicide resistance, although a single amino acid substitution was found in each of three ACCases in Ecf108. Our study reveals the existence of a multiple-herbicide resistant biotype of E. crus-galli var. formosensis at Okayama, Japan that shows resistance to cyhalofop-butyl and several ALS inhibitors. We also found a biotype that is resistant only to cyhalofop-butyl among the tested herbicides. The resistance mechanisms are likely to be non-target-site based, at least in the multiple-herbicide resistant biotype. (C) 2015 Elsevier Inc. All rights reserved.
机译:棘壳gal的生物型在日本冈山的旱稻田中发现了对乙酰氟辅酶A羧化酶(ACCase)抑制剂环氟丁丁有抗性的台湾大黄。我们从水稻播种田中收集了两株怀疑具有抗性的品系(Ecf27和Ecf108),并研究了它们对氰氟草丁和其他除草剂的敏感性。两条线对环氟丁丁基的抗性都比易感线高大约7倍。 Ecf108对乙酰氧合酶(ALS)抑制剂戊氧舒仑敏感。另一方面,Ecf27表现出了对戊氧舒兰和其他两种ALS抑制剂的抗性:丙瑞磺隆和嘧菌甲基。替代除草剂丁草胺,硫代苯甲威和双嘧菌酸钠可有效控制两个系。为了检查抗性的分子机制,我们扩增并测序了Ecf27,Ecf108和易感株系中的目标位点编码基因。检查了六个ACCase基因的部分序列和三个ALS基因的全长序列。由于两个系中的移码突变,ACCase基因序列之一编码截短的异常蛋白。 Ecf27,Ecf108和易感品系之间的基因比较显示,尽管在三个ACCases中均发现一个氨基酸取代,但Ecf27和Ecf108中的ACCases和ALS都没有已知具有除草剂抗性的氨基酸取代。在Ecf108中。我们的研究表明,存在一种抗除草剂的生物型大肠杆菌。日本冈山市的福尔摩斯(Formosensis),对氯氟丁酯和几种ALS抑制剂具有抗性。在测试的除草剂中,我们还发现了一种仅对氟氯丁丁基具有抗性的生物型。至少在抗多除草剂的生物型中,抗药性机制可能是基于非靶点的。 (C)2015 Elsevier Inc.保留所有权利。

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