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Quantitative Trait Loci and Epistasis for Crown Freezing Tolerance in the 'Kanota' x 'Ogle' Hexaploid Oat Mapping Population

机译:'Kanota'x'Ogle'六倍体燕麦图种群中冠耐冻性的数量性状位点和上位性

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摘要

Crown freezing tolerance is the most important factor conferring oat (Avena spp.) winter hardiness. The objective of this study was to identify quantitative trait loci (QTL) for crown freezing tolerance in the 'Kanota' x 'Ogle' recombinant inbred line (RIL) mapping population and to examine their relationship with other winter hardiness traits. One hundred thirty-five RILs were evaluated for crown freezing tolerance in a controlled environment. Previously published molecular marker and linkage map information was used for QTL detection. Seven QTL and four complementary epistatic interactions were identified that accounted for 56% of the phenotypic variation. Ogle contributed alleles for increased crown freezing tolerance at three loci, while Kanota contributed alleles for increased crown freezing tolerance at four loci. All loci where Kanota alleles increased crown freezing tolerance showed complementary epistasis for decreased crown freezing tolerance with the QTL near UMN13. Two of the major QTL identified were in the linkage groups (LG) associated with a reciprocal translocation between chromosomes 7C and 17, which was previously associated with spring growth habit in oat. The results confirm the importance of the chromosomes involved in the reciprocal 7C-17 translocation in controlling winter hardiness component traits.
机译:冠的耐冻性是赋予燕麦(Avena spp。)冬季坚韧性的最重要因素。本研究的目的是确定“ Kanota”ד Ogle”重组近交系(RIL)作图群体的冠耐冻性的数量性状基因座(QTL),并研究它们与其他耐寒性的关系。评估了135个RIL在受控环境中的胎冠耐冻性。先前发布的分子标记和连锁图信息用于QTL检测。确定了七个QTL和四个互补的上位性相互作用,占表型变异的56%。 Ogle贡献了等位基因,以增加三个位点的冠耐冻性,而Kanota贡献了等位基因,以增加了四个位点的冠耐冻性。 Kanota等位基因增加冠耐冻性的所有基因座均表现出互补的上位性,伴随着UMN13附近的QTL降低了冠耐冻性。鉴定出的两个主要QTL位于与染色体7C和17之间的相互易位相关的连锁群(LG)中,后者先前与燕麦的春季生长习性有关。结果证实了相互的7C-17易位中涉及的染色体在控制冬季抗寒成分性状中的重要性。

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