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Genetic Architecture of Phosphorus Use Efficiency in Tropical Maize Cultivated in a Low-P Soil

机译:低磷土壤中热带玉米磷利用效率的遗传结构

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Phosphorus (P) deficiency is a major limiting factor for crop production in several countries. A better understanding of the genetic components of P use efficiency (PUE) is required to improve crop performance in low-P soils. To date, no QTLs (quantitative trait loci) were mapped for PUE using grain yield and other late phenotypic data in tropical conditions. Thus, we evaluated the genetic architecture of PUE in tropical maize (Zea mays L.) using multiple interval mapping for design III in a population of 140 RILs (recombinant inbred lines) backcrossed with both parental lines. The parental lines contrasted for yield and for PUE, a phenotypic index that was further decomposed into P acquisition efficiency (PAE) and P utilization efficiency. Our results showed that dominance effects were more important than additive effects for explaining the variations in PUE and its components. Approximately 80% of the QTLs mapped for PAE co-localized with those for PUE, indicating that the efficiency in acquiring P is the main determinant of PUE in tropical maize. Also, QTLs for PUE and PAE were located near to candidate genes previously associated with root development. Thus, we present important information to guide breeding strategies for the development of maize cultivars more adapted to P deficiency
机译:磷缺乏是几个国家作物生产的主要限制因素。需要更好地了解磷利用效率(PUE)的遗传成分,以改善低磷土壤中的作物生长性能。迄今为止,在热带条件下,没有使用谷物产量和其他晚期表型数据为PUE绘制QTL(定量性状基因座)。因此,我们在140个与两个亲本系回交的RIL(重组自交系)群体中使用设计III的多区间作图评估了热带玉米(Zea mays L.)中PUE的遗传结构。亲本系对产量和PUE(表型指数)进行了对比,该表型指数进一步分解为P采集效率(PAE)和P利用率。我们的结果表明,优势效应比加性效应对解释PUE及其成分的变化更为重要。定位于PAE的QTL约80%与定位PUE的QTL共定位,这表明获取P的效率是热带玉米中PUE的主要决定因素。而且,PUE和PAE的QTL位于先前与根发育相关的候选基因附近。因此,我们提出了重要的信息,以指导育种策略,以适应更缺乏磷的玉米品种的发展。

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