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Mapping QTL controlling maize deep-seeding tolerance-related traits and confirmation of a major QTL for mesocotyl length

机译:定位控制玉米深种耐性相关性状的QTL并确定中胚轴长度的主要QTL

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Deep-seeding tolerant seeds can emerge from deep soil where the moisture is suitable for seed germination. Breeding deep-seeding tolerant cultivars is becoming increasingly important in arid and semi-arid regions. To dissect the quantitative trait loci (QTL) controlling deep-seeding tolerance traits, we selected a tolerant maize inbred line 3681-4 and crossed it with the elite inbred line-X178 to generate an F2 population and the derivative F2:3 families. A molecular linkage map composed of 179 molecular markers was constructed, and 25 QTL were detected including 10 QTL for sowing at 10 cm depth and 15 QTL for sowing at 20 cm depth. The QTL analysis results confirmed that deep-seeding tolerance was mainly caused by mesocotyl elongation and also revealed considerable overlap among QTL for different traits. To confirm a major QTL on chromosome 10 for mesocotyl length measured at 20 cm depth, we selected and self-pollinated a BC3F2 plant that was heterozygous at the markers around the target QTL and homozygous at other QTL to generate a BC3F3 population. We found that this QTL explained more phenotypic variance in the BC3F3 population than that in the F2 population, which laid the foundation for fine mapping and NIL (near-isogenic line) construction.
机译:耐深种子的种子可以从深层土壤中萌发,那里的水分适合种子发芽。在干旱和半干旱地区,育种耐深播种品种变得越来越重要。为了剖析控制深播耐受性状的数量性状基因座(QTL),我们选择了一个耐性玉米自交系3681-4,并将其与优良自交系X178杂交,以产生F2 种群和衍生品F2: 3 个家庭。构建了由179个分子标记组成的分子连锁图谱,检测到25个QTL,包括10 cm深度播种的10 QTL和20 cm深度播种的15 QTL。 QTL分析结果证实,深播耐受性主要是由中胚轴伸长引起的,并且还揭示了不同性状的QTL之间存在相当大的重叠。为了确认在20厘米深度处测得的中胚轴长度的10号染色体上的主要QTL,我们选择并自花授粉了在目标QTL周围的标记处杂合而在其他QTL上纯合的BC3 F2 植物产生BC3 F3 种群。我们发现,该QTL解释了BC3 F3 群体比F2 群体更多的表型变异,这为精细作图和NIL(近等基因系)构建奠定了基础。

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