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Quantitative trait loci influencing mycotoxin contamination of maize: analysis by linkage mapping, characterization of near-isogenic lines, and meta-analysis.

机译:影响玉米真菌毒素污染的数量性状基因座:通过连锁作图分析,近等基因系鉴定和荟萃分析。

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Mycotoxin contamination of maize (Zea mays L.) exposes people to grave health consequences in subsistence agricultural settings and to economical losses in quality-regulated markets. Genetic variation for resistance to aflatoxin accumulation in maize has been reported in many studies. Resistance can act at multiple steps at which there is fungal-plant interaction. In this study, we report the identification and mapping of quantitative trait loci (QTL) for multiple traits or components of resistance to Aspergillus flavus using different genetic tools and resources. For QTL mapping, we used a B73 x CML322 population of recombinant inbred lines. Ten QTL were found using two QTL mapping methods, six of which were located on the same chromosome segments using both approaches. These QTL were located in maize bins 4.08, 4.09, 8.02, 8.03, 10.06 and 10.07. Various sources of near-isogenic lines (NILs) for selected loci were tested. The resistance QTL located in bin 4.08 was confirmed using a NIL pair. Finally, we conducted a meta-analysis of QTL using data from 12 populations in which resistance to Aspergillus, Fusarium, or Giberella ear rots has been mapped. This meta-analysis indicated that the QTL in bin 4.08 has been reported in four mapping populations. Overall, we found evidence for significant QTL x year interactions and that QTL were distributed in a manner consistent with an infinitesimal model. The largest-effect QTL, located in bin 4.08, is a good candidate for further characterization and use.
机译:玉米(Zea mays L.)的霉菌毒素污染使人们在自给自足的农业环境中遭受严重的健康后果,并在质量监管的市场中遭受经济损失。许多研究报道了玉米对黄曲霉毒素积累的抗性的遗传变异。抗性可以在真菌-植物相互作用的多个步骤起作用。在这项研究中,我们报告了使用不同的遗传工具和资源对黄曲霉抗性的多个性状或成分的数量性状基因座(QTL)的鉴定和作图。对于QTL作图,我们使用了B73 x CML322群体的重组自交系。使用两种QTL定位方法发现了10个QTL,其中两种方法中有6个位于相同的染色体片段上。这些QTL位于玉米箱4.08、4.09、8.02、8.03、10.06和10.07中。测试了选定基因座的近等基因系(NIL)的各种来源。使用NIL对确认位于bin 4.08中的电阻QTL。最后,我们使用来自12个种群的数据进行了QTL的荟萃分析,其中已绘制了对曲霉菌,镰刀菌属或吉伯氏菌耳腐的抗性图。这项荟萃分析表明,已经在四个作图种群中报告了bin 4.08中的QTL。总体而言,我们发现了显着的QTL x年交互作用的证据,并且QTL以与无穷小模型一致的方式分布。效果最大的QTL位于bin 4.08中,是进一步表征和使用的不错选择。

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