首页> 外文期刊>Pesticide Biochemistry and Physiology >Investigation of glyphosate resistance levels and target-site based resistance (TSR) mechanisms in Conyza canadensis (L.) from apple orchards around areas of Bohai seas and Loess Plateau in China
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Investigation of glyphosate resistance levels and target-site based resistance (TSR) mechanisms in Conyza canadensis (L.) from apple orchards around areas of Bohai seas and Loess Plateau in China

机译:中国渤海和黄土高原地区Conyza Canadensis(L.)在渤海和黄土高原地区综合征抗甘露植物耐药水平和靶位位抗性(TSR)机制研究

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摘要

The resistance levels to glyphosate and target-site based resistance mechanisms in susceptible (S) and resistant (R) Conyza canadensis (L.) populations, which were collected from apple orchards around areas of Bohai seas and Loess Plateau in China, were investigated. Among forty C. canadensis populations, eighteen populations (45%) were still susceptible; fourteen populations (35%) evolved low resistance levels resistance to glyphosate with resistance index (RI) of 2.02 to 3.90. In contrast, eight populations (20%) evolved medium resistance levels with RI of 4.35 to 8.38. The shikimic acid concentrations in R populations were highly negative relative with the glyphosate resistance levels in C. canadensis, the Pearson correlation coefficient was -0.82 treated by glyphosate at 1.8 mg/L. Three 5-enoylpyruvylshikimate 3'-phosphate synthase genes (EPSPS1, EPSPS2 and EPSPS3) were cloned in all S and glyphosate-resistant C. canadensis populations. No amino acid substitution was identified at site of 102 and 106 in three EPSPS genes, which were reported to confer glyphosate resistance in other weed species. The relative expression level of EPSPS mRNA in R populations (SD07, LN05, SHX06 and SD09) was 4.5 to 13.2 times higher than in S biotype. The Pearson correlation coefficient between EPSPS expression levels and RI was 0.79, which indicated the over expression of EPSPS mRNA may cause these R populations evolve higher resistance level to glyphosate.
机译:研究了易受影响(S)和抗性(R)Conyza Canadensis(L.)群体的抗碱和靶位点的抗性机制的抵抗水平,该群在中国渤海和黄土高原地区的苹果园收集。在四十次C. Canadensis人口中,十八个人群(45%)仍然易于影响;十四种群体(35%)进化到具有2.02至3.90的抗性指数(RI)对草甘膦的低阻力水平。相比之下,八种群体(20%)进化的中等阻力水平,Ri为4.35至8.38。 R群中的Shikimid酸浓度与C. canadensis中的草甘膦抗性水平相对应有,Pearson相关系数为-0.82,用草甘膦处理1.8mg / L.在所有S和草甘膦C的C. canadensis群体中克隆了三种5-烯库吡吡吡吡吡咯三酮3'-磷酸合酶基因(EPSPS1,EPSP2和EPSP3)。在三种EPSPS基因中,在102和106的位点,鉴定了氨基酸取代,据报道据据报道,以赋予其他杂草物种的草甘膦抗性。 R群中EPSPS mRNA的相对表达水平(SD07,LN05,SHX06和SD09)的高度高于-3至13.2倍,高于S生物型。 EPSPS表达水平和RI之间的Pearson相关系数为0.79,表明EPSPS mRNA的过度表达可能导致这些R种群对草甘膦的抗性水平发展较高。

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