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Genetic analysis of molecular markers for propamocarb residue in Cucumis sativus using quantitative trait locus mapping

机译:利用数量性状位点作图法分析黄瓜中丙氨威残留的分子标记

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The use of pesticides to protect plants against harmful organisms, such as pathogenic microorganisms, is one of the most effective ways to improve agricultural production. However, the continuous use of pesticides might present a risk to human health, animals, and the environment. In this study, two cucumber (Cucumis sativus) varieties containing different levels of pesticide residues, D9320 and D0351, were selected to establish an F2 population. A genetic model and genetic linkage map were constructed. The results showed that the heredity of pesticide residues was dominated by an additive effect and was significantly influenced by non-additive factors in cucumber. QCp1 was detected as a quantitative trait locus (QTL) that might be involved in regulating the levels of pesticide residue in cucumber. Moreover, the cucumber genetic map was compared with the LG6 map, and the results indicated that this QTL was closely related to the level of pesticide residue in cucumber.
机译:使用农药保护植物免受病原微生物等有害生物的侵害是提高农业产量的最有效方法之一。但是,持续使用农药可能会对人类健康,动物和环境造成威胁。在这项研究中,选择了两个含有不同农药残留水平的黄瓜(Cucumis sativus)品种D9320和D0351,以建立F2种群。构建了遗传模型和遗传连锁图谱。结果表明,农药残留的遗传主要受累加效应的影响,并且受到非累加因子的显着影响。 QCp1被检测为定量性状位点(QTL),可能与调节黄瓜中的农药残留量有关。此外,将黄瓜遗传图谱与LG6图谱进行了比较,结果表明该QTL与黄瓜中农药残留水平密切相关。

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