首页> 外文期刊>Journal of Agricultural and Food Chemistry >Physiological and biochemical characterization of quinclorac resistance in a false cleavers (Galium spurium L.) biotype
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Physiological and biochemical characterization of quinclorac resistance in a false cleavers (Galium spurium L.) biotype

机译:假切肉刀(Galium spurium L.)生物型对喹克洛拉菌的耐药性的生理生化特征

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The physiological and biochemical basis for quinclorac resistance in a false cleavers (Galium spurium L.) biotype was investigated. There was no difference between herbicide resistant (R) and susceptible (S) false cleavers biotypes in response to 2,4-D, clopyralid, glyphosate, glufosinate-ammonium, or bentazon. On the basis of GR(50) (growth reduction of 50%) or LD50 (lethal dose to 50% of tested plants) values, the R biotype was highly resistant to the acetolactate synthase (ALS) inhibitor, thifensulfuron-methyl (GR50 resistance ratio R/S = 57), and quinolinecarboxylic acids (quinclorac R/S = 46), resistant to MCPA (R/S = 12), and moderately resistant to the auxinic herbicides picloram (R/S = 3), dicamba (R/S = 3), fluroxypyr (R/S = 3), and triclopyr (R/S = 2). The mechanism of quinclorac resistance was not due to differences in [C-14]quinclorac absorption, translocation, root exudation, or metabolism. Seventy-two hours after root application of quinclorac, ethylene increased ca. 3-fold in S but not R plants when compared to controls, while ABA increased ca. 14-fold in S as opposed to ca. 3-fold in R plants suggesting an alteration in the auxin signal transduction pathway, or altered target site causes resistance in false cleavers. The R false cleavers biotype may be an excellent model system to further examine the auxin signal transduction pathway and the mechanism of quinclorac and auxinic herbicide action.
机译:研究了假切肉刀(Galium spurium L.)生物型中喹喹啉酸抗药性的生理和生化基础。在抗除草剂(R)和敏感(S)的假砍虫生物型之间,对2,4-D,氯吡格雷,草甘膦,草铵膦-铵或苯达松的反应没有差异。根据GR(50)(生长减少50%)或LD50(致死剂量的50%的受试植物)值,R生物型对乙酰乳酸合酶(ALS)抑制剂噻吩磺隆-甲基(GR50抗性)具有高度抗性R / S = 57)和喹啉羧酸(quinclorac R / S = 46),对MCPA有抗性(R / S = 12),对中性除草剂除草剂苦味灵(R / S = 3),麦草畏(R / S = 3),氟草烟(R / S = 3)和敌百虫(R / S = 2)。喹克拉拉抗性的机制不是由于[C-14]喹克拉拉吸收,转运,根系渗出或代谢方面的差异。根喹喹啉根根施用后72小时,乙烯含量增加。与对照相比,S植株的3倍而不是R植株的3倍,而ABA则增加了约3倍。 S中的14倍而不是ca。 R植物中的3倍表明生长素信号转导途径发生了改变,或目标位点发生了改变,从而导致假切割刀产生抗性。 R假砍肉刀的生物型可能是进一步研究植物生长素信号转导途径以及喹氯拉克和植物生长素除草剂作用机理的优良模型系统。

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