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首页> 外文期刊>Crop science >A Comparative Analysis of Conventional and Marker-Assisted Selection Methods in Breeding Maize Streak Virus Resistance in Maize
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A Comparative Analysis of Conventional and Marker-Assisted Selection Methods in Breeding Maize Streak Virus Resistance in Maize

机译:常规和标记辅助选择方法在玉米抗玉米条纹病毒育种中的比较分析

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Reliable information regarding comparative advantage of marker-assisted selection (MAS) over conventional selection (CS) in breeding for maize streak virus (MSV) resistance in maize (Zea mays L.) is scarcely available. A comparative study was, therefore, conducted to determine the efficiency of both methods in breeding for MSV resistance in Uganda. Backcross and selfed-progenies were derived from inbred lines CML202 (resistant), CML321, and CML384 (susceptible) using MAS and CS. The experimental lines and their testcross progenies were evaluated for MSV resistance and yield across three locations. Although both breeding approaches were effective in generating MSV-resistant lines, disease incidence was higher in populations under CS (79%) than MAS (62%). A similar trend was observed for area under disease progress curve. However, an equal number of lines generated by MAS and CS displayed high yield potential and MVS resistance in testcrosses. Because all required DNA analysis was performed in an existing laboratory and on a well-characterized quantitative trait locus, costs of capital, equipment maintenance, and marker development were excluded in costing the MAS procedure. Considering total running costs, MAS was cheaper than CS by 26%, which was realized by using fewer plants. Therefore, when laboratory facilities are already established MAS would be recommended in breeding for MSV resistance.
机译:关于玉米(Zea mays L.)抗玉米条纹病毒(MSV)抗性育种的标记辅助选择(MAS)相对于传统选择(CS)的比较优势的可靠信息很少。因此,进行了一项比较研究,以确定这两种方法在乌干达抗MSV育种中的效率。回交和自交后代是使用MAS和CS从近交系CML202(抗性),CML321和CML384(易感)衍生而来的。评价了三个品系的实验品系和它们的testcross后代的MSV抗性和产量。尽管两种育种方法均能有效产生耐MSV的品系,但CS种群(79%)的发病率高于MAS(62%)。在疾病进展曲线下的面积观察到类似的趋势。但是,由MAS和CS产生的等量线在测试杂交中显示出高的产量潜力和MVS抗性。由于所有必需的DNA分析都是在现有实验室中进行的,并且是在特征明确的定量性状基因座上进行,因此,在进行MAS程序的成本时,不包括投资,设备维护和标记开发的成本。考虑到总运行成本,MAS比CS便宜26%,这是通过使用更少的工厂实现的。因此,在已经建立实验室设施的情况下,建议在抗MSV的育种中使用MAS。

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