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首页> 外文期刊>BMC Genomics >Genetic architecture is more complex for resistance to Septoria tritici blotch than to Fusarium head blight in Central European winter wheat
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Genetic architecture is more complex for resistance to Septoria tritici blotch than to Fusarium head blight in Central European winter wheat

机译:中欧冬小麦的抗小麦枯萎病遗传结构比抗枯萎病更复杂

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Fusarium head blight (FHB) and Septoria tritici blotch (STB) severely impair wheat production. With the aim to further elucidate the genetic architecture underlying FHB and STB resistance, we phenotyped 1604 European wheat hybrids and their 135 parental lines for FHB and STB disease severities and determined genotypes at 17,372 single-nucleotide polymorphic loci. Cross-validated association mapping revealed the absence of large effect QTL for both traits. Genomic selection showed a three times higher prediction accuracy for FHB than STB disease severity for test sets largely unrelated to the training sets. Our findings suggest that the genetic architecture is less complex and, hence, can be more properly tackled to perform accurate prediction for FHB than STB disease severity. Consequently, FHB disease severity is an interesting model trait to fine-tune genomic selection models exploiting beyond relatedness also knowledge of the genetic architecture.
机译:镰刀菌枯萎病(FHB)和小麦黑斑病(STB)严重损害了小麦的产量。为了进一步阐明FHB和STB抗性的遗传结构,我们对1604个欧洲小麦杂种及其135个亲本系的FHB和STB疾病严重程度进行了表型分析,并确定了17,372个单核苷酸多态性基因座的基因型。交叉验证的关联映射揭示了两个性状均不存在大的效应QTL。对于与培训集无关的测试集,基因组选择显示的FHB预测准确性比STB疾病严重程度高三倍。我们的发现表明,与STB疾病严重程度相比,遗传结构不那么复杂,因此可以更正确地解决FHB的准确预测。因此,FHB疾病严重性是微调基因组选择模型的有趣模型特征,该模型选择模型不仅利用了相关性,而且还利用了遗传结构的知识。

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