School of Agriculture, Food and Wine, The University of Adelaide, Adelaide, South Australia, Australia.
South Australian Research and Development Institute, Clare, South Australia, Australia.
Pest Manag Sci. 2019 Jun;75(6):1564-1570. doi: 10.1002/ps.5328. Epub 2019 Feb 20.
Weed competition is a major limitation to worldwide lentil (Lens culinaris Medik.) production in part due to limited effective safe herbicide options. Metribuzin is a photosystem II inhibiting herbicide that provides broad spectrum weed control, however it causes excessive injury in lentil. Dose response analysis of photosystem II inhibiting herbicides and DNA sequencing of the psbA chloroplast gene occurred to quantify the spectrum and mechanism of herbicide resistance in two ethyl-methanesulfonate (EMS) induced mutant lentils.
Compared to susceptible parent PBA Flash, the level of metribuzin resistance was 33-fold for mutant M043 and 10-fold for M009. No improvement in resistance occurred in either mutant to bromoxynil, diuron, bromacil and atrazine herbicides. Nucleotide sequencing of the psbA gene of both mutants identified a substitution at position 751 compared to PBA Flash. The resulting deduced amino acid sequence indicated an Ala Thr substitution as being most likely responsible for the high level of metribuzin resistance.
The Ala Thr substitution discovered in this study is unique in mutagenized higher plants and the first report of an induced psbA target site mutation in higher plants. This target site metribuzin resistance is likely to have a significant impact on lentil production in Australia and worldwide. © 2019 Society of Chemical Industry.
杂草竞争是全球兵豆(Lens culinaris Medik.)生产的主要限制因素,部分原因是有效安全的除草剂选择有限。苯达松是一种抑制光合作用 II 的除草剂,可提供广谱杂草控制,但会导致兵豆过度受伤。为了量化两种乙磺酸(EMS)诱导的突变兵豆中除草剂抗性的光谱和机制,对光合作用 II 抑制剂除草剂进行了剂量反应分析,并对质体 psbA 基因进行了 DNA 测序。
与敏感亲本 PBA Flash 相比,突变体 M043 的苯达松抗性水平为 33 倍,M009 为 10 倍。突变体对溴苯腈、敌草隆、溴莠定和莠去津除草剂的抗性均未提高。对两个突变体的 psbA 基因进行核苷酸测序,发现与 PBA Flash 相比,在 751 位有一个取代。所得的推断氨基酸序列表明,丙氨酸-苏氨酸取代最有可能导致高水平的苯达松抗性。
本研究中发现的丙氨酸-苏氨酸取代在诱变高等植物中是独特的,也是高等植物中首次报道的 psbA 靶位突变。这种靶位苯达松抗性很可能对澳大利亚和全球的兵豆生产产生重大影响。 © 2019 化学工业协会。