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Genetic Dissection of Stalk Lodging-Related Traits Using an IBM Syn10 DH Population in Maize Across Three Environments (zea Mays L.)

Molecular Genetics and Genomics(2019)

Key Laboratory of Biology and Genetic Improvement of Maize in Southwest Region | Department of Agronomy

Cited 15|Views82
Abstract
Stalk lodging severely limits the grain yield of maize (Zea mays L.). Mechanical stalk strength can be reflected by the traits of stalk diameter (SD), stalk bending strength (SBS), and lodging rind penetrometer resistance (RPR). To determine the genetic basis of maize stalk lodging, quantitative trait loci (QTLs) were mapped for these three traits using the IBM Syn10 DH population in three environments. The results indicated that there were strong genetic correlations among the three traits, and the analyses of phenotypic variations for SD, SBS, and RPR across the three environments showed high broad-sense heritability (0.6843, 0.5175, and 0.7379, respectively). In total, 44 significant QTLs were identified control the above traits across the 3 environments. A total of 14, 14, and 16 QTLs were identified for SD, SBS, and RPR across single-environment mapping, respectively. Notably, ten QTLs were stably expressed across multiple-environments, including two QTLs for SD, three for SBS, and five for RPR. Three major QTLs each accounting for over 10% of the phenotypic variation were qSD6-2 (10.03%), qSD8-2 (13.73%), and qSBS1-2 (11.89%). Comprehensive analysis of all QTLs in this study revealed that 5 QTL clusters including 12 QTLs were located on chromosomes 1, 3, 7, and 8, respectively. Among these 44 QTLs, 9 harbored 13 stalk lodging-associated SNPs that were detected by our recently published work, with 1 SNP successfully validated in the IBM Syn10 DH population. These chromosomal regions will be useful for marker-assisted selection and fine mapping of stalk lodging-related traits in maize.
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Maize,Stalk lodging resistance,QTLs,Candidate gene
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要点】:该研究利用IBM Syn10 DH群体在三个环境中对玉米 stalk diameter (SD)、stalk bending strength (SBS) 和 lodging rind penetrometer resistance (RPR) 进行定量性状位点(QTLs)分析,揭示了玉米茎倒伏相关性状的遗传基础,并发现了多个稳定的QTLs。

方法】:通过IBM Syn10 DH群体在三个不同环境中对SD、SBS和RPR三个性状进行QTL定位分析,并计算了遗传相关性及表型变异的广义遗传率。

实验】:实验在三个不同环境中进行,使用IBM Syn10 DH群体,共鉴定出44个显著QTLs,其中10个QTLs在多个环境中稳定表达,并确定了5个QTL簇。此外,9个QTLs携带13个与茎倒伏相关的SNPs,其中一个SNP在IBM Syn10 DH群体中得到验证。