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Colocalization of QTL for Gibberella Ear Rot Resistance and Low Mycotoxin Contamination in Early European Maize

机译:欧洲早期玉米中赤霉素耳腐病抗性和低霉菌毒素污染的QTL的共定位

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Gibberella ear rot (GER) of maize (Zea mays L.) caused by Fusarium graminearum Schwabe is a major disease in Europe that reduces grain yield and leads to contamination with deoxynivalenol (DON) and zearalenone (ZEA), two important mycotoxins. The objectives of our study were to (i) estimate quantitative-genetic parameters for GER severity and DON and ZEA contaminations, (ii) map quantitative trait loci (QTL) for GER resistance and low DON and ZEA contaminations, and (iii) examine the prospects of marker-assisted selection (MAS) for these traits. The materials comprised 150 doubled haploid lines from a cross of two maize inbreds that were evaluated in four environments under artificial inoculation with F. graminearum. On the basis of entry means across environments, heritabilities were moderately high (0.65-0.77), and QTL analyses identified four to six QTL for these traits. Colocalization of QTL in bins 1.11 and 2.04, which had large effects and together explained 29 to 35% of the total genotypic variance, suggested the presence of pleiotropic QTL. This was supported by strong genotypic correlations among these traits (0.89-0.95). In view of the lower costs of genotyping compared with field trials and mycotoxin determinations, our study showed that in breeding for GER resistance and low DON and ZEA contaminations, MAS should be conducted in off-season nurseries and MAS in combination with phenotypic selection in the crop season.
机译:禾谷镰刀菌引起的玉米(Zea mays L.)的赤霉病(Gibberella)耳腐是欧洲的一种主要疾病,它降低谷物产量并导致脱氧雪茄烯醇(DON)和玉米赤霉烯酮(ZEA)这两种重要的霉菌毒素污染。我们研究的目的是(i)估算GER严重性以及DON和ZEA污染的定量遗传参数,(ii)绘制GER抗性和DON和ZEA污染低的定量特征位点(QTL),以及(iii)检查这些特征的标记辅助选择(MAS)的前景。该材料包含来自两个玉米自交系的杂交的150个单倍体单倍体系,在禾本科镰刀菌人工接种下的四种环境中对其进行了评估。根据跨环境的进入手段,遗传力适度较高(0.65-0.77),QTL分析确定了这些特征的四到六个QTL。 QTL在1.11和2.04箱中的共定位影响很大,共同解释了总基因型变异的29%至35%,这表明存在多效性QTL。这些性状之间的强基因型相关性(0.89-0.95)支持了这一点。鉴于与现场试验和霉菌毒素测定相比,基因分型的成本较低,我们的研究表明,在GER抗性和低DON和ZEA污染的育种中,MAS应在淡季苗圃中进行,MAS应结合表型选择进行。作物季节。

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