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Inheritance of Mesotrione Resistance in an Amaranthus tuberculatus (var. rudis) Population from Nebraska, USA

机译:来自美国内布拉斯加的 Amaranthus tuberculatus (var。 rudis )人群中甲基磺草酮抗性的遗传

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A population of Amaranthus tuberculatus (var. rudis ) evolved resistance to 4-hydroxyphenylpyruvate dioxygenase (HPPD) inhibitor herbicides (mesotrione, tembotrione, and topramezone) in Nebraska. The level of resistance was the highest to mesotrione, and the mechanism of resistance in this population is metabolism-based likely via cytochrome P450 enzymes. The increasing number of weeds resistant to herbicides warrants studies on the ecology and evolutionary factors contributing for resistance evolution, including inheritance of resistance traits. In this study, we investigated the genetic control of mesotrione resistance in an A. tuberculatus population from Nebraska, USA. Results showed that reciprocal crosses in the F1 families exhibited nuclear inheritance, which allows pollen movement carrying herbicide resistance alleles. The mode of inheritance varied from incomplete recessive to incomplete dominance depending upon the F1 family. Observed segregation patterns for the majority of the F2 and back-cross susceptible (BC/S) families did not fit to a single major gene model. Therefore, multiple genes are likely to confer metabolism-based mesotrione resistance in this A. tuberculatus population from Nebraska. The results of this study aid to understand the genetics and inheritance of a non-target-site based mesotrione resistant A. tuberculatus population from Nebraska, USA.
机译:内布拉斯加州的一群mar菜(var。rudis)进化出对4-羟苯基丙酮酸双加氧酶(HPPD)抑制剂除草剂(甲基磺草酮,替康三酮和托普拉宗)的抗性。对甲基磺草酮的抗药性最高,该人群中的抗药性机制可能是基于细胞色素P450酶的新陈代谢。对除草剂具有抗性的杂草数量不断增加,因此有必要对有助于抗性进化的生态学和进化因素进行研究,包括抗性性状的遗传。在这项研究中,我们调查了来自美国内布拉斯加州的结核曲霉种群对甲基磺草酮抗性的遗传控制。结果表明,F1家族的反向杂交表现出核遗传,这使得花粉运动携带除草剂抗性等位基因。继承方式从不完全的隐性到不完全的优势,取决于F1家族。大多数F2和回交易感(BC / S)家族的观察到的分离模式不适合单个主要基因模型。因此,在内布拉斯加州的这种结核杆菌种群中,多个基因可能赋予基于代谢的甲基磺草酮抗性。这项研究的结果有助于了解来自美国内布拉斯加州的基于非靶点的甲基磺草酮抗性曲霉种群的遗传和遗传。

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