首页> 外文期刊>Annals of Applied Biology >Two consensus quantitative trait loci clusters controlling anthesis-silking interval, ear setting and grain yield might be related with drought tolerance in maize
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Two consensus quantitative trait loci clusters controlling anthesis-silking interval, ear setting and grain yield might be related with drought tolerance in maize

机译:控制花期间隔,穗期和籽粒产量的两个共有数量性状基因座簇可能与玉米的耐旱性有关

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摘要

Unravelling the molecular basis of drought tolerance will provide novel opportunities for improving crop yield under water-limited conditions. The present study was conducted to identify quantitative trait loci (QTLs) controlling anthesis-silking interval (ASI), ear setting percentage (ESP) and grain yield (GY). The mapping population included 234 F plants derived from the cross X178 (drought tolerant) x B73 (drought susceptible). The corresponding F: progenies, along with their parents, were evaluated for the above-mentioned traits under both well-watered and water-stressed field conditions in three different trials carried out in central and southern China. Interval mapping and composite interval mapping identified 45 and 65 QTLs for the investigated traits, respectively. Two QTL clusters influencing ASI and ESP on chromosomes 1 (bin 1.03) and 9 (bins 9.03-9.05) were identified in more than two environments, showing sizeable additive effects and contribution to phenotypic variance; these two QTL clusters influenced GY only in one environment. No significant interaction was detected between the two genomic regions. A comparative analysis of these two QTL clusters with the QTLs controlling maize drought tolerance previously described in three mapping populations confirmed and extended their relevance for marker-assisted breeding to improve maize production under water-limited conditions.
机译:阐明抗旱性的分子基础将为在缺水条件下提高作物产量提供新的机会。本研究旨在确定定量性状位点(QTL),控制花期间隔期(ASI),坐穗率(ESP)和籽粒产量(GY)。测绘种群包括来自杂交X178(耐旱)x B73(耐旱)的234 F植物。在中国中部和南部进行的三项不同试验中,在灌溉条件良好和缺水的田间条件下,评估了相应的F:后代及其亲本的上述性状。区间作图和复合区间作图分别为所研究性状鉴定了45和65个QTL。在两个以上的环境中鉴定出两个影响ASI和ESP的1号染色体(bin 1.03)和9号染色体(bins 9.03-9.05)的QTL簇,显示出可观的累加效应和对表型变异的贡献。这两个QTL集群仅在一个环境中影响GY。在两个基因组区域之间未检测到明显的相互作用。对这两个QTL集群与先前在三个测绘种群中描述的控制玉米抗旱性的QTL进行比较分析,证实并扩展了它们在标记辅助育种中的相关性,以提高限水条件下的玉米产量。

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