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Fine mapping of stable QTLs related to eating quality in rice (Oryza sativa L.) by CSSLs harboring small target chromosomal segments

机译:带有小目标染色体片段的CSSL对水稻(Oryza sativa L.)食用质量相关的稳定QTL进行精细定位

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Amylose content (AC) and viscosity profile are primary indices for evaluating eating and cooking qualities of rice grain. Using chromosome segment substitution lines (CSSLs), previous studies identified a QTL cluster of genes for rice eating and cooking quality in the interval R727–G1149 on chromosome 8. In this study we report two QTLs for viscosity parameters, respectively controlling setback viscosity (SBV) and consistency viscosity (CSV), located in the same interval using rapid viscosity analyzer (RVA) profile as an indicator of eating quality. Previously reported QTL for AC was dissected into two components with opposite genetic effects. Of four QTLs, qCSV-8 and qAC-8-2 had stable genetic effects across three and four environments, respectively. qSBV-8 , qCSV-8 and qAC-8-1 partly overlapped, but were separated from qAC-8-2 . Based on data from an Affymetrix rice GeneChip, two genes related to starch biosynthesis at the qAC-8-2 locus were chosen for further quantitative expression analysis. Both genes showed enhanced expression in sub-CSSLs carrying the target qAC-8-2 allele, but not in sub-CSSLs without the target qAC-8-2 allele, indicating their possible role in rice quality determination. Molecular markers closely linked to the two stable QTL provide the opportunity for marker-assisted selection (MAS) in breeding high quality rice.
机译:直链淀粉含量(AC)和粘度曲线是评估米粒进食和烹饪品质的主要指标。以前的研究使用染色体区段替换系(CSSLs)在8号染色体上的R727–G1149区间内鉴定了一个QTL基因簇,用于水稻的食用和烹饪质量。在这项研究中,我们报告了两个QTLs用于粘度参数,分别控制缩进粘度)和稠度粘度(CSV),以快速粘度分析仪(RVA)曲线作为饮食质量的指标,位于同一间隔内。先前报道的AC QTL分为两个具有相反遗传效应的成分。在四个QTL中,qCSV-8和qAC-8-2分别在三个和四个环境中具有稳定的遗传效应。 qSBV-8,qCSV-8和qAC-8-1部分重叠,但与qAC-8-2分开。根据来自Affymetrix水稻GeneChip的数据,选择了与qAC-8-2基因座淀粉生物合成相关的两个基因,用于进一步的定量表达分析。这两个基因均在带有目标qAC-8-2等位基因的亚CSSLs中表达增强,但在没有目标qAC-8-2等位基因的亚CSSLs中均未表达,表明它们可能在水稻品质测定中发挥作用。与两个稳定的QTL紧密相连的分子标记为优质水稻育种提供了标记辅助选择(MAS)的机会。

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