Torada Atsushi, Koike Michiya, Ikeguchi Shojiro, Tsutsui Ichiro
Hokuren Agricultural Research Institute, Higashi-5 Kita-15, Naganuma, Hokkaido, 069-1317, Japan.
Genome. 2008 Jun;51(6):426-32. doi: 10.1139/G08-007.
Seed dormancy is an important factor regulating preharvest sprouting (PHS) but is a complex trait for genetic analysis. We previously identified a major quantitative trait locus (QTL) controlling seed dormancy on the long arm of chromosome 4A (4AL) in common wheat. To transfer the QTL from the dormant lines 'OS21-5' and 'Leader' into the Japanese elite variety 'Haruyokoi', which has an insufficient level of seed dormancy, backcrossing was carried out through marker-assisted selection (MAS) using PCR-based codominant markers. Nineteen BC5F2 plants with homozygous alleles of 'OS21-5' or 'Haruyokoi' were developed and evaluated for seed dormancy under greenhouse conditions. The seeds harvested from plants with 'OS21-5' alleles showed a clearly high level of dormancy compared with seeds from plants with 'Haruyokoi' alleles. Additionally, the dormancy phenotype of BC3F3 seeds harvested from 128 BC3F2 plants with homozygous alleles of 'Leader' or 'Haruyokoi' showed a clear difference between these alleles. The QTL on 4AL confers a major gene, Phs1, which was mapped within a 2.6 cM region. The backcrossed lines developed in this study can be important sources for improving PHS resistance in Japanese wheat and for analyzing the mechanism of seed dormancy. MAS was useful for the development of near-isogenic lines in this complex trait, to facilitate the molecular dissection of genetic factors.
种子休眠是调控收获前发芽(PHS)的一个重要因素,但却是一个用于遗传分析的复杂性状。我们之前在普通小麦的4A染色体长臂(4AL)上鉴定出一个控制种子休眠的主效数量性状位点(QTL)。为了将该QTL从休眠品系‘OS21 - 5’和‘Leader’导入种子休眠水平不足的日本优良品种‘春之koi’,利用基于PCR的共显性标记通过标记辅助选择(MAS)进行回交。培育出了19株具有‘OS21 - 5’或‘春之koi’纯合等位基因的BC5F2植株,并在温室条件下对其种子休眠情况进行了评估。与具有‘春之koi’等位基因的植株所结种子相比,具有‘OS21 - 5’等位基因的植株所结种子表现出明显更高的休眠水平。此外,从128株具有‘Leader’或‘春之koi’纯合等位基因的BC3F2植株收获的BC3F3种子的休眠表型在这些等位基因之间存在明显差异。4AL上的QTL赋予一个主基因Phs1,该基因被定位在一个2.6 cM的区域内。本研究中培育的回交系对于提高日本小麦的PHS抗性以及分析种子休眠机制可能是重要的资源。在这个复杂性状中,MAS对于培育近等基因系很有用,有助于对遗传因素进行分子剖析。