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Interactions between Glu-1 and Glu-3 loci and associations of selected molecular markers with quality traits in winter wheat (Triticum aestivum L.) DH lines

机译:冬小麦DH系Glu-1和Glu-3基因座之间的相互作用以及所选的分子标记与品质性状的关联

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摘要

The quality of wheat depends on a large complex of genes and environmental factors. The objective of this study was to identify quantitative trait loci controlling technological quality traits and their stability across environments, and to assess the impact of interaction between alleles at loci Glu-1 and Glu-3 on grain quality. DH lines were evaluated in field experiments over a period of 4 years, and genotyped using simple sequence repeat markers. Lines were analysed for grain yield (GY), thousand grain weight (TGW), protein content (PC), starch content (SC), wet gluten content (WG), Zeleny sedimentation value (ZS), alveograph parameter W (APW), hectolitre weight (HW), and grain hardness (GH). A number of QTLs for these traits were identified in all chromosome groups. The Glu-D1 locus influenced TGW, PC, SC, WG, ZS, APW, GH, while locus Glu-B1 affected only PC, ZS, and WG. Most important marker-trait associations were found on chromosomes 1D and 5D. Significant effects of interaction between Glu-1 and Glu-3 loci on technological properties were recorded, and in all types of this interaction positive effects of Glu-D1 locus on grain quality were observed, whereas effects of Glu-B1 locus depended on alleles at Glu-3 loci. Effects of Glu-A3 and Glu-D3 loci per se were not significant, while their interaction with alleles present at other loci encoding HMW and LMW were important. These results indicate that selection of wheat genotypes with predicted good bread-making properties should be based on the allelic composition both in Glu-1 and Glu-3 loci, and confirm the predominant effect of Glu-D1d allele on technological properties of wheat grains.Electronic supplementary materialThe online version of this article (doi:10.1007/s13353-016-0362-5) contains supplementary material, which is available to authorized users.
机译:小麦的质量取决于大量的基因和环境因素。这项研究的目的是确定控制技术质量特征及其在整个环境中的稳定性的数量性状基因座,并评估等位基因Glu-1和Glu-3之间的相互作用对谷物品质的影响。在4年的田间实验中评估DH系,并使用简单的序列重复标记进行基因分型。分析了品系的谷物产量(GY),千粒重(TGW),蛋白质含量(PC),淀粉含量(SC),湿面筋含量(WG),Zeleny沉降值(ZS),葡萄膜参数W(APW),百克重量(HW)和晶粒硬度(GH)。在所有染色体组中都鉴定出许多针对这些性状的QTL。 Glu-D1基因座影响TGW,PC,SC,WG,ZS,APW,GH,而Glu-B1基因座仅影响PC,ZS和WG。在1D和5D染色体上发现了最重要的标记-性状关联。记录了Glu-1和Glu-3基因座之间相互作用对技术特性的显着影响,并且在所有这种相互作用类型中,均观察到Glu-D1基因座对谷物品质的积极影响,而Glu-B1基因座的影响取决于等位基因。 Glu-3基因座。 Glu-A3和Glu-D3基因座本身的影响并不明显,而它们与编码HMW和LMW的其他基因座上存在的等位基因的相互作用则很重要。这些结果表明,具有良好面包制作性能的小麦基因型的选择应基于Glu-1和Glu-3基因座中的等位基因组成,并确认Glu-D1d等位基因对小麦籽粒技术特性的主要影响。电子补充材料本文的在线版本(doi:10.1007 / s13353-016-0362-5)包含补充材料,授权用户可以使用。

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