Montana State University-Bozeman, Department of Research Centers, Southern Agricultural Research Center, Huntley, MT, USA.
Pest Manag Sci. 2017 Dec;73(12):2585-2591. doi: 10.1002/ps.4673. Epub 2017 Aug 29.
Bromus tectorum L. is one of the most troublesome grass weed species in cropland and non-cropland areas of the northwestern USA. In summer 2016, a B. tectroum accession (R) that survived imazamox at the field-use rate (44 g ha ) in an imidazolinone-tolerant (IMI-tolerant or Clearfield™) winter wheat field was collected from a wheat field in Carter County, MT, USA. The aim of this study was to determine the resistance profile of the B. tectroum R accession to imazamox and other ALS inhibitors, and investigate the mechanism of resistance to imazamox.
The R B. tectorum accession had a high-level resistance (110.1-fold) to imazamox (IMI) and low to moderate-levels cross-resistance to pyroxsulam (TP) (4.6-fold) and propoxycarbazone (SCT) (13.9-fold). The R accession was susceptible to sulfosulfuron (SU) and quizalofop and clethodim (ACCase inhibitors), paraquat (PS I inhibitor), glyphosate (EPSPS inhibitor) and glufosinate (GS inhibitor). Sequence analysis of the ALS gene revealed a single, target-site Ser653Asn mutation in R plants. Pretreatment of malathion followed by imazamox at 44 or 88 g ha did not reverse the resistance phenotype.
This is the first report of evolution of cross-resistance to ALS-inhibiting herbicides in B. tectorum. A single-point mutation, Ser653Asn, was identified, conferring the high-level resistance to imazamox. © 2017 Society of Chemical Industry.
多枝赖草是美国西北部农田和非农田地区最麻烦的草害之一。2016 年夏,从美国蒙大拿州卡特县的冬小麦田中采集到了一个在田间使用剂量(44g/ha)下耐受咪草烟(imidazolinone-tolerant 或 ClearfieldTM)的多枝赖草品系(R)。本研究旨在确定多枝赖草 R 品系对咪草烟和其他 ALS 抑制剂的抗药性特征,并研究其对咪草烟的抗药性机制。
R 多枝赖草品系对咪草烟(IMI)具有高水平抗性(110.1 倍),对吡氟禾草灵(TP)(4.6 倍)和丙炔恶草酮(SCT)(13.9 倍)具有低至中水平的交叉抗性。R 品系对磺酰磺隆(SU)和精喹禾灵和烯草酮(ACCase 抑制剂)、敌草快(PS I 抑制剂)、草甘膦(EPSPS 抑制剂)和草铵膦(GS 抑制剂)敏感。ALS 基因序列分析显示 R 植株中存在一个单一的靶标位点 Ser653Asn 突变。马拉硫磷预处理后再用 44 或 88g/ha 的咪草烟处理不能逆转抗性表型。
这是首次报道多枝赖草对 ALS 抑制性除草剂产生交叉抗性的进化。鉴定出一个单点突变 Ser653Asn,导致对咪草烟产生高水平抗性。© 2017 英国化学学会。