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Safener responsiveness and multiple herbicide resistance in the weed black-grass (Alopecurus myosuroides)

机译:杂草黑草(Alopecurus myosuroides)的安全性和对多种除草剂的抗药性

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摘要

Safeners enhance the selectivity of graminicidal herbicides such as fenoxaprop ethyl in cereals, by increasing their rates of detoxification in the crop. While studying the selectivity of fenoxaprop ethyl in wheat, we determined that the safeners mefenpyr diethyl and fenchlorazole ethyl also enhanced herbicide tolerance in the competing weed black-grass (Alopecurus myosuroides). Fenoxaprop ethyl was detoxified by conjugation with glutathione in both wheat and black-grass, with the resulting metabolites processed to the respective cysteine derivatives, which were then N-glycosylated. in black-grass, these detoxification pathways were only slightly enhanced by safeners, suggesting that metabolism alone was unlikely to account for increased herbicide tolerance. instead, it was determined that safening was associated with an accumulation of glutathione and hydroxymethylglutathione and enzymes with antioxidant functions including phi and lambda glutathione transferases, active as glutathione peroxidases and thiol transferases respectively. These safener-induced changes closely mirrored those determined in two independent black-grass populations that had acquired multiple herbicide resistance (MHR) in the field. In addition to enhanced glutathione metabolism, both safener treatment and MHR resulted in elevated levels of flavonoids in the foliage of black-grass plants, notably flavone-C-glycosides and anthocyanins. Our results demonstrate that safening in a grass weed is associated with an. inducible activation in antioxidant and secondary metabolism which mirrors the biochemical phenotype exhibited in plants that are resistant to multiple classes of herbicides.
机译:安全剂可通过增加作物中的解毒率来提高谷物中除草剂除草剂如非诺沙丙的选择性。当研究小麦中非诺沙丙乙基的选择性时,我们确定安全剂美芬比尔二乙基和芬氯唑乙基还提高了竞争性杂草黑草(Alopecurus myosuroides)的除草剂耐受性。通过在小麦和黑草中与谷胱甘肽结合,将非诺沙丙乙酯解毒,将所得代谢物加工成各自的半胱氨酸衍生物,然后将其进行N-糖基化。在黑草中,这些排毒途径仅被安全剂略微增强,这表明单独的代谢不太可能解释除草剂耐受性的提高。相反,已确定安全性与谷胱甘肽和羟甲基谷胱甘肽以及具有抗氧化功能的酶(包括phi和λ谷胱甘肽转移酶)的积累有关,这些酶分别具有谷胱甘肽过氧化物酶和硫醇转移酶的活性。这些由安全剂引起的变化与在田间获得多重除草剂抗性(MHR)的两个独立黑草种群中确定的变化十分相似。除了增强谷胱甘肽代谢外,更安全的处理和MHR都导致黑草植物叶片中的类黄酮含量升高,尤其是黄酮C-糖苷和花色苷。我们的结果表明,草杂草的安全性与杂草有关。在抗氧化剂和次级代谢中的诱导性活化,反映了植物对多种除草剂具有抗性的生化表型。

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