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Genetic determination of the enhanced drought resistance of rice maintainer HuHan2B by pedigree breeding

机译:遗传测定谱系育种水稻维护液增强抗旱性抗旱

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The ongoing deficit of fresh water resource in rice growing regions has made the selection of water-saving and drought-resistance rice (WDR) a crucial factor in developing sustainable cultivation. HuHan2B, a new japonica maintainer for WDR breeding, had the same yield potential as recurrent parent HanFengB but showed improved drought resistance in fields. We investigated the genomic content accumulation and candidate genes passed from parent to offspring using the genomic and transcriptomic approaches. The genomic constitution indicated that the genetic similarity was 84% between HuHan2B and HanFengB; additionally, 7,256 genes with specific alleles were inherited by HuHan2B from parents other than HanFengB. The differentially expressed genes (DEGs) under drought stress showed that biological function was significantly enriched for transcript regulation in HuHan2B, while the oxidation-reduction process was primarily enriched in HanFengB. Furthermore, 36 DEGs with specific inherited alleles in HuHan2B were almost involved in the regulatory network of TFs and target genes. These findings suggested that major-effect genes were congregated and transformed into offspring in manner of interacting network by breeding. Thus, exploiting the potential biological function of allelic-influencing DEGs would be of great importance for improving selection efficiency and the overall genetic gain of multiple complex traits.
机译:水稻生长区淡水资源的持续赤字使节水和抗旱水稻(WDR)的选择成为发展可持续培养的关键因素。新粳稻维特育种者Huhan2B具有与经常性父母Hanfengb的产量潜力相同,但在田地中显示出改善的抗旱性。我们调查了使用基因组和转录组方法从父母中通过的基因组含量积累和候选基因进行后代。基因组宪法表明,Huhan2B和Hanfengb之间的遗传相似性为84%;此外,来自除汉丰以外的父母的Huhan2b,Huhan2B将继承7,256个基因。干旱胁迫下的差异表达基因(DEGS)表明,Huhan2b中的转录物调节显着富集了生物学功能,而氧化还原过程主要是富含汉丰的。此外,Huhan2B中具有特异性遗传等位基因的36只待参与TFS和靶基因的调节网络。这些发现表明,通过育种方式聚集和转化为后代和转变为后代。因此,利用等位基因影响的DEG的潜在生物学功能对于提高选择效率和多重复杂性状的整体遗传增益是重要的。

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