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Effect of epistasis and environment on flowering time in barley reveals a novel flowering-delaying QTL allele

机译:大麦上位性和环境对开花时间的影响揭示了一个新的开花延迟QTL等位基因

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摘要

Flowering time is a complex trait and has a key role in crop yield and adaptation to environmental stressors such as heat and drought. This study aimed to better understand the interconnected dynamics of epistasis and environment and look for novel regulators. We investigated 534 spring barley MAGIC DH lines for flowering time at various environments. Analysis of quantitative trait loci (QTLs), epistatic interactions, QTL × environment (Q×E) interactions, and epistasis × environment (E×E) interactions were performed with single SNP and haplotype approaches. In total, 18 QTLs and 2420 epistatic interactions were detected, including intervals harboring major genes such as , , , and . Epistatic interactions found in field and semi-controlled conditions were distinctive. Q×E and E×E interactions revealed that temperature influenced flowering time by triggering different interactions between known and newly detected regulators. A novel flowering-delaying QTL allele was identified on chromosome 1H (named ‘HvHeading’) and was shown to be engaged in epistatic and environment interactions. Results suggest that investigating epistasis, environment, and their interactions, rather than only single QTLs, is an effective approach for detecting novel regulators. We assume that barley can adapt flowering time to the environment via alternative routes within the pathway.
机译:开花时间是一个复杂的特征,在作物产量以及对高温和干旱等环境胁迫的适应中具有关键作用。这项研究旨在更好地了解上位性与环境的相互联系,并寻找新型的调节剂。我们调查了534株大麦MAGIC DH系在不同环境下的开花时间。使用单个SNP和单倍型方法对定量性状位点(QTL),上位相互作用,QTL×环境(Q×E)相互作用和上位×环境(E×E)相互作用进行分析。总共检测到18个QTL和2420个上位性相互作用,包括带有主要基因(如,,和)的间隔。在田间和半控制条件下发现的上位相互作用是独特的。 Q×E和E×E相互作用揭示了温度通过触发已知和新发现的调节剂之间的不同相互作用来影响开花时间。在1H染色体上鉴定了一个新的延迟开花的QTL等位基因(称为“ HvHeading”),并被证明与上位性和环境相互作用。结果表明,调查上位性,环境及其相互作用,而不仅仅是单个QTL,是检测新型调节剂的有效方法。我们假设大麦可以通过途径内的其他途径使开花时间适应环境。

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