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Detection of QTLs for traits associated with pre-harvest sprouting resistance in bread wheat (Triticum aestivum L.)

机译:面包小麦(Triticum aestivum L.)与收获前抗性相关的性状的QTL检测

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摘要

Pre-harvest sprouting (PHS) is one of the serious problems for wheat production, especially in rainy regions. Although seed dormancy is the most critical trait for PHS resistance, the control of heading time should also be considered to prevent seed maturation during unfavorable conditions. In addition, awning is known to enhance water absorption by the spike, causing PHS. In this study, we conducted QTL analysis for three PHS resistant related traits, seed dormancy, heading time and awn length, by using recombinant inbred lines from ‘Zenkouji-komugi’ (high PHS resistance) × ‘Chinese Spring’ (weak PHS resistance). QTLs for seed dormancy were detected on chromosomes 1B (QDor-1B) and 4A (QDor-4A), in addition to a QTL on chromosome 3A, which was recently cloned as TaMFT-3A. In addition, the accumulation of the QTLs and their epistatic interactions contributed significantly to a higher level of dormancy. QDor-4A is co-located with the Hooded locus for awn development. Furthermore, an effective QTL, which confers early heading by the Zenkouji-komugi allele, was detected on the short arm of chromosome 7B, where the Vrn-B3 locus is located. Understanding the genetic architecture of traits associated with PHS resistance will facilitate the marker assisted selection to breed new varieties with higher PHS resistance.
机译:收获前发芽(PHS)是小麦生产的严重问题之一,特别是在多雨地区。尽管种子休眠是PHS抗性的最关键特征,但也应考虑控制抽穗时间以防止不利条件下的种子成熟。另外,已知遮篷会增加尖峰对水的吸收,从而导致PHS。在这项研究中,我们使用'Zenkouji-komugi'(高PHS抗性)×'Chinese Spring'(弱PHS抗性)的重组近交系,对三个PHS抗性相关性状,种子休眠,抽穗时间和芒长进行了QTL分析。 。除了最近被克隆为TaMFT-3A的3A染色体上的QTL外,还在1B染色体(QDor-1B)和4A(QDor-4A)上检测到了种子休眠的QTL。此外,QTL的积累及其上位相互作用极大地促进了较高的休眠水平。 QDor-4A与Hooded位点位于同一位置,以进行遮阳篷开发。此外,在Vrn-B3基因座所在的染色体7B的短臂上检测到一个有效的QTL,该QTL赋予了Zenkouji-komugi等位基因早期的航向。了解与PHS抗性相关的性状的遗传结构将有助于标记辅助选择,以培育具有更高PHS抗性的新品种。

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