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首页> 外文期刊>Planta: An International Journal of Plant Biology >Identification of the quantitative trait loci controlling spike-related traits in hexaploid wheat (Triticum aestivum L.)
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Identification of the quantitative trait loci controlling spike-related traits in hexaploid wheat (Triticum aestivum L.)

机译:鉴定六倍体小麦的定量特质控制穗状花序相关性状(Triticum aestivum L.)

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Main conclusionTotally, 48 loci responsible for six spike-related traits were identified in wheat, and a major locus QGl-4A for grain length was mapped and validated for marker-assisted selection in breeding.AbstractWheat yield is determined by the number of spikes, number of grains per spike (GN), and one-thousand kernel weight (TKW), among which GN and TKW are greatly related to the spike development and thus the spike-related traits, including spike length (SL), number of spikelet per spike (SN), grain length (GL) and grain width (GW). To identify the key loci governing the spike-related traits (SL, SN, GN, TKW, GL and GW), we conducted the quantitative trait loci (QTL) analysis combined with wheat 660K SNP chip and Kompetitive allele-specific PCR (KASP) assay, using the F-2 and F-2:3 populations derived from Luohan6 (LH6) with big spike and grain and Zhengmai366 with small spike and grain, and identified a total of 48 QTLs on 18 chromosomes. Moreover, a major stable QTL for GL on chromosome 4A, designated as QGl-4A, was mapped into a 0.37 cM interval between KASP markers Xib4A-10 and Xib4A-12, corresponding to 20 Mb physical region in the Chinese Spring genome. This QTL explained 17.30% and 5.12% of the phenotypic variation for GL in the F-2 and F-2:3 populations. Further association analysis of flanking markers Xib4A-10 and Xib4A-12 in 192 wheat varieties showed that these two markers could be used for marker-assisted selection in breeding. These results provide valuable information for map-based cloning of the target genes involved in the regulation of spike-related traits in common wheat.
机译:主要结论,在小麦中鉴定了48个负责六个与尖峰相关的性状的基因座,并且映射粒度的主要基因座QGL-4A,并验证用于育种的标记辅助选择.Abstract yeat产量由尖峰的数量决定每穗(GN)和一千个内核重量(TKW)的谷物,其中GN和TKW与尖峰发育有很大的关系,从而与尖峰相关的特征,包括尖峰长度(SL),每穗穗状花序数量(Sn),粒度长(GL)和粒度(GW)。要识别有关尖峰相关性状的关键基因座(SL,Sn,Gn,TKW,GL和GW),我们进行了定量性状基因座(QTL)分析与小麦660K SNP芯片和特定的异位等位基因特异性PCR(KASP)进行了分析测定,使用F-2和F-2:3种群体来自Luohan6(LH6),具有大穗和谷物,诸如小穗和谷物的Zhengmai366,并在18条染色体上鉴定了48个QTL。此外,将作为QGL-4A指定为QGL-4A的染色体4A的GL上的GL的主要稳定QTL被映射到KASP标记XIB4A-10和XIB4A-12之间的0.37cm间隔,对应于中国春天基因组的20mB物理区域。该QTL在F-2和F-2:3种群中解释了GL的17.30%和5.12%的表型变化。在192个小麦品种中进一步的侧翼标记和XIB4A-12和XIB4A-12的关联分析表明,这两种标记可用于育种中的标记辅助选择。这些结果提供了基于地图的克隆的有价值的信息,该靶基因涉及普通小麦中钉相关性状的调节。

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