首页> 外文期刊>Weed Science: Journal of the Weed Science Society of America >Germinability and seed biochemical properties of susceptible and non-target site herbicide-resistant blackgrass (Alopecurus myosuroides) subpopulations exposed to abiotic stresses
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Germinability and seed biochemical properties of susceptible and non-target site herbicide-resistant blackgrass (Alopecurus myosuroides) subpopulations exposed to abiotic stresses

机译:暴露于非生物应激的易感和非靶位点除草剂抗性Blackgrass(Alopecurus myosuroides)群的发芽性和种子生化特性

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Quantifying the level of ecophysiological, biochemical, and agronomical fitness of herbicide-resistant (R) and herbicide-susceptible (S) weeds is useful for understanding the evolutionary development of herbicide resistance, but also for implementing herbicide-resistance management strategies. Although germination is a key fitness component in the life cycle of weeds, germinability of S and R weeds has rarely been evaluated under stressful conditions. Germinability traits of S and non-target site resistant subpopulations of blackgrass (Alopecurus myosuroides Huds.) sharing closely related genetic background were tested under salinity, drought stress, and accelerated seed-aging (i.e., exposed to 100% relative humidity at 45 C from 0 to 134 h) conditions. In addition, the activity of three antioxidant enzymes and protein concentration of accelerated aged seeds of the subpopulations were studied. There were no differences in maximum seed germination (G(max)) and time to 50% germination between the two subpopulations under optimum conditions. However, under salinity, drought stress, and accelerated aging conditions, there were differences between the subpopulations. The salinity, drought, and accelerated aging treatments reducing G(max) of the S subpopulation by 50% were 18 dS m(-1), 0.75 MPa, and 90 h, respectively, while for the R subpopulation the corresponding values were 15 dS m(-1), 0.66 MPa, and 67 h. No differences were found in the activity of the antioxidant enzymes and the content of protein between non-aged seeds of the subpopulations. The aging treatments reducing the activity of catalase and superoxide dismutase enzymes by 50% were 118 and 82 h for the S subpopulation, respectively, while they were 54 and 58 h for the R subpopulation. In contrast, there were no differences in the effect of the aging treatments on the peroxidase activity and protein content between subpopulations. The results provided clear evidence that the non-target site resistant loci of blackgrass is associated with fitness costs under environmental stress.
机译:量化除草剂(R)和除草剂易感性的生理学,生物化学和农艺学的水平,杂草可用于了解除草剂抵抗的进化发展,也可用于实施除草剂抵抗管理策略。虽然萌芽是杂草生命周期中的关键健身组分,但在压力条件下很少评估S和R杂草的发芽性。 S的黑草(Alopecurus myosuroides Huds的非靶位抗性群的发芽性状0至134小时)条件。此外,研究了三种抗氧化酶的活性和加速的群体的加速老化种子的蛋白质浓度。在最佳条件下,最大种子萌发(G(最多))和时间衍生的时间差异没有差异。然而,在盐度,干旱胁迫和加速老化条件下,群之间存在差异。将S亚级胎化的G(MAX)减少50%的盐度,干旱和加速老化处理分别为18ds m(-1),0.75MPa和90小时,而对于R亚流程,相应的值为15 ds m(-1),0.66MPa和67小时。在抗氧化酶的活性和群体的非老子种子之间的蛋白质中没有发现差异。降低过氧化氢酶和超氧化物歧化酶活性的老化处理分别为S亚贫化分别为50%,对于R亚潜水率分别为54和58小时,分别为118和82小时。相比之下,老化处理对亚磷酸化酶活性和蛋白质含量的影响没有差异。结果提供了明确的证据表明BlackGrass的非目标站点抵抗基因座与环境压力下的健身成本相关。

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