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Fine mapping of quantitative trait loci for acid phosphatase activity in maize leaf under low phosphorus stress

机译:低磷胁迫下玉米叶片酸性磷酸酶活性的数量性状基因座的精细定位

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摘要

Acid phosphatase (APase) is very important in phosphorus (P) scavenging and remobilization in plants. The aim of this study was the fine mapping of quantitative trait loci (QTL) for APase activity (APA) in maize (Zea mays L.) leaf. The QTL for APA were studied in the F2:3 population derived from the cross 082 x Ye107 under low P stress in two sites. A significant difference in APA was found between 082 (P-efficient genotype) and Ye107 (P-deficient genotype). Each environment was analyzed to identify the QTL. Six QTL for APA were found, comprising two QTL at Beibei (BB) and four QTL at Hechuan (HC), China. A QTL denoted as AP9 showed a stable expression under different environments on chromosome 9, and explained 10.21 and 16.81 % of phenotypic variation at BB and HC, respectively. For the fine mapping of this QTL, seven individuals selected via marker-assisted selection in the BC3F1 population were used to produce the BC3F2 lines by selfing and to allow recombination within the region containing the target QTL. High-resolution genetic and physical maps were further constructed for the fine mapping of AP9 using 12 simple sequence repeat markers and the BC3F2 population consisting of 1,441 individuals. As a result, the location of AP9 was narrowed down to a 546-kb fragment on chromosome 9.
机译:酸性磷酸酶(APase)在植物中磷(P)的清除和迁移中非常重要。本研究的目的是对玉米(Zea mays L.)叶片中APase活性(APA)的数量性状基因座(QTL)进行精细定位。在两个地点的低P胁迫下,在082 x Ye107杂交的F2:3种群中研究了APA的QTL。发现082(P高效基因型)和Ye107(P缺乏基因型)之间的APA差异显着。分析每个环境以识别QTL。找到了六个用于APA的QTL,其中包括位于中国北be(BB)的两个QTL和位于中国合川(HC)的四个QTL。表示为AP9的QTL在9号染色体上的不同环境中表现出稳定的表达,并分别解释了BB和HC表型变异的10.21%和16.81%。为了对该QTL进行精细定位,在BC3F1群体中通过标记辅助选择选择的7个个体用于通过自交产生BC3F2品系,并允许在包含目标QTL的区域内重组。进一步构建了高分辨率的遗传图谱和物理图谱,用于使用12个简单的序列重复标记和由1,441个个体组成的BC3F2群体对AP9进行精细定位。结果,AP9的位置缩小到9号染色体上的546kb片段。

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