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Merging Genomics and Transcriptomics for Predicting Fusarium Head Blight Resistance in Wheat

机译:合并基因组学和转录组科预测小麦枯萎病

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摘要

Genomic selection with genome-wide distributed molecular markers has evolved into a well-implemented tool in many breeding programs during the last decade. The resistance against Fusarium head blight (FHB) in wheat is probably one of the most thoroughly studied systems within this framework. Aside from the genome, other biological strata like the transcriptome have likewise shown some potential in predictive breeding strategies but have not yet been investigated for the FHB-wheat pathosystem. The aims of this study were thus to compare the potential of genomic with transcriptomic prediction, and to assess the merit of blending incomplete transcriptomic with complete genomic data by the single-step method. A substantial advantage of gene expression data over molecular markers has been observed for the prediction of FHB resistance in the studied diversity panel of breeding lines and released cultivars. An increase in prediction ability was likewise found for the single-step predictions, although this can mostly be attributed to an increased accuracy among the RNA-sequenced genotypes. The usage of transcriptomics can thus be seen as a complement to already established predictive breeding pipelines with pedigree and genomic data, particularly when more cost-efficient multiplexing techniques for RNA-sequencing will become more accessible in the future.
机译:与基因组分布分子标记的基因组选择已经在过去十年中在许多繁殖计划中演变成了一种很好的工具。对小麦的抗性抗镰刀镰刀(FHB)可能是该框架内最彻底研究的系统之一。除了基因组之外,像转录组这样的其他生物学层同样在预测性育种策略中同样地显示了一些潜力,但尚未对FHB小麦菌民进行研究。因此,该研究的目的是将基因组的潜力与转录组预测进行比较,并评估通过单步法通过完全基因组数据混合不完全转录组的优异。已经观察到对分子标记物的基因表达数据的实质优势用于预测育种线的研究中的FHB抗性和释放品种。同样发现预测能力的增加对于单步预测,尽管这主要是归因于RNA测序基因型之间的准确性。因此,转录组织的用法可以被视为已经建立了具有血统和基因组数据的预测性育种管道的补充,特别是当RNA测序的更具成本效益的复用技术将来会更加可接近。

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