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首页> 外文期刊>Theoretical and Applied Genetics >QTL controlling root and shoot traits of maize seedlings under cold stress
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QTL controlling root and shoot traits of maize seedlings under cold stress

机译:低温胁迫下控制玉米幼苗根冠性状的QTL

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摘要

The improvement of early vigour is crucial for the adaptation of maize (Zea mays L.) to the climatic conditions of central Europe and the northern Mediterranean, where early sowing is an important strategy for avoiding the effect of summer drought. The objectives of this study were to identify quantitative trait loci (QTL) controlling cold-related traits and to investigate the relationships among them. A set of 168 F2:4 families of the Lo964 × Lo1016 cross was grown in a sand–vermiculite substrate at 15/13°C (dayight) until the one-leaf stage. Twenty QTL were identified for the four shoot and two seed traits examined. Analysis of root weight and digital measurements of the length and diameter of primary and seminal roots led to the identification of 40 QTL. The operating efficiency of photosystem II (ΦPSII) was related to seedling dry weight at both the phenotypic and genetic level (r=0.46, two matching loci, respectively) but was not related to root traits. Cluster analysis and QTL association revealed that the different root traits were largely independently inherited and that root lengths and diameters were mostly negatively correlated. The major QTL for root traits detected in an earlier study in hydroponics were confirmed in this study. The length of the primary lateral roots was negatively associated with the germination index (r=−0.38, two matching loci). Therefore, we found a large number of independently inherited loci suitable for the improvement of early seedling growth through better seed vigour and/or a higher rate of photosynthesis.
机译:早期活力的提高对于使玉米(Zea mays L.)适应中欧和地中海北部的气候条件至关重要,在这些气候条件下,早期播种是避免夏季干旱的重要策略。本研究的目的是确定控制感冒相关性状的数量性状基因座(QTL),并研究它们之间的关系。 Lo964×Lo1016杂交的一组168个F2:4 家族在15-13°C(昼/夜)的砂–石基质中生长直至单叶阶段。针对所检查的四个芽和两个种子性状,鉴定出二十个QTL。对根重的分析以及对初生根和精根的长度和直径的数字测量结果确定了40个QTL。在表型和遗传水平上,光系统II(ΦPSII)的运转效率都与幼苗的干重有关(r = 0.46,分别是两个匹配的基因座),而与根系性状无关。聚类分析和QTL关联显示,不同的根系性状在很大程度上是独立遗传的,根系的长度和直径大多呈负相关。在这项研究中确认了在较早的水培法中检测到的根系性状的主要QTL。主要侧根的长度与发芽指数负相关(r = -0.38,两个匹配的基因座)。因此,我们发现大量独立遗传的位点适合通过更好的种子活力和/或更高的光合作用来改善幼苗的早期生长。

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  • 来源
    《Theoretical and Applied Genetics》 |2004年第3期|618-629|共12页
  • 作者单位

    Institute of Plant Science Swiss Federal Institute of Technology (ETH)Department of Plant Agriculture University of GuelphDepartment of Plant Agriculture University of Guelph;

    Institute of Plant Science Swiss Federal Institute of Technology (ETH);

    Institute of Plant Science Swiss Federal Institute of Technology (ETH);

    Dip. Scienze e Tecnologie Agroambientali (DiSTA) Università di Bologna;

    Dip. Scienze e Tecnologie Agroambientali (DiSTA) Università di Bologna;

    Institute of Plant Science Swiss Federal Institute of Technology (ETH);

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