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QTL pyramiding for improving of cold tolerance at fertilization stage in rice

机译:利用QTL金字塔技术提高水稻受精期的耐寒性

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摘要

Vigorous cold tolerance at the fertilization stage (CTF) is a very important characteristic for stable rice production in cold temperature conditions. Because CTF is a quantitatively inherited trait, pyramiding quantitative trait loci (QTLs) using marker-assisted selection (MAS) is effective for improving CTF levels in rice breeding programs. We previously identified three QTLs controlling CTF, qCTF7, qCTF8 and qCTF12, using backcrossed inbred lines derived from a cross between rice cultivar Eikei88223 (vigorous CTF) and Suisei (very weak CTF). However, pyramiding of these QTLs for the application of MAS in practical rice breeding programs have not yet been elucidated. In this study, we examined the effect of pyramiding QTLs for improvement of CTF level using eight possible genotype classes from the 152 F3 population derived from a cross between Eikei88223 and Suisei. Increasing of CTF levels in combinations between qCTF7 and qCTF12 and between qCTF8 and qCTF12 were detected. Furthermore, we compared the haplotype pattern around the QTLs for CTF among the rice cultivars from Hokkaido. These results are useful for improvement of new cultivars with high CTF levels using MAS and identification of genetic resources with the novel QTL(s) for CTF.
机译:施肥阶段(CTF)的强烈耐寒性是在低温条件下稳定水稻生产的非常重要的特征。由于CTF是一种定量遗传性状,因此使用标记辅助选择(MAS)进行金字塔式定量性状基因座(QTL)可有效提高水稻育种计划中的CTF水平。我们先前使用从水稻品种Eikei88223(强CTF)和Suisei(极弱CTF)之间杂交得到的回交自交系,鉴定了控制CTF,qCTF7,qCTF8和qCTF12的三个QTL。但是,尚未阐明将这些QTL结合起来用于MAS在实际水稻育种计划中的应用。在这项研究中,我们使用来自Eikei88223和Suisei之间杂交的152个F3种群中的八种可能的基因型类别,研究了金字塔状QTL对改善CTF水平的影响。检测到qCTF7和qCTF12之间以及qCTF8和qCTF12之间组合的CTF水平增加。此外,我们比较了北海道水稻品种中CTF QTL周围的单倍型模式。这些结果对于使用MAS改良具有高CTF水平的新品种以及利用新型CTF QTL鉴定遗传资源很有用。

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