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首页> 外文期刊>Czech Journal of Genetics and Plant Breeding >A 1BL/1RS translocation contributing to kernel length increase in three wheat recombinant inbred line populations
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A 1BL/1RS translocation contributing to kernel length increase in three wheat recombinant inbred line populations

机译:1BL / 1RS易位有助于三个小麦重组近交系种群中的核长度增加

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The 1BL/1RS wheat-rye translocation has been widely utilized in wheat genetic improvement and breeding programs. Our understanding on the effects of the 1BL/1RS translocation on wheat kernel size (e.g. length and width) is limited despite of numerous studies reporting about the effects on kernel weight. Here, we identified a wheat 1BL/1RS translocation line 88-1643 with higher kernel length (KL) using fluorescence in situ hybridization (FISH), genomic in situ hybridization (GISH) and molecular markers. To detect the possible role of the 1BL/1RS translocation in KL, kernel width (KW), and thousand-kernel weight (TKW), three recombinant inbred line (RIL) populations were constructed by crossing 88-1643 and three other wheat lines. As expected, the results showed that the values of KL in lines carrying 1RS were significantly higher than those carrying 1BS in three RIL populations at multiple environments, indicating that a major and stably expressed allele or gene responsible for increasing KL is most likely located on 1RS from 88-1643. Additionally, in one RIL population, the increased KL contributed significantly to the increase in TKW. Collectively, the 1BL/1RS translocation reported here is of interest to reveal molecular mechanism of the gene controlling KL and will be useful for improving wheat yield.
机译:1BL / 1RS小麦-RYE易位已广泛用于小麦遗传改善和育种计划。尽管报告关于籽粒重量的影响,但我们对小麦核尺寸的1BL / 1RS易位对小麦内核大小(例如长度和宽度)的理解有限。在这里,我们用荧光原位杂交(鱼),原位杂交(GISH)和分子标记物使用荧光,鉴定了具有较高核长度(KL)的小麦1BL / 1RS易位线88-1643。为了检测k1中的1bl / 1rs易位的可能作用,通过穿过88-1643和三种其他小麦线来构建三个重组近交系(RIL)填充的粒宽度(kW)和千核重量(tkw),三种重组近交线(Ril)群。正如预期的那样,结果表明,携带1R的线的KL值显着高于多种环境中的三个RIL群体中的1Bs,表明负责增加KL的主要和稳定表达的等位基因或基因最有可能位于1RS上从88-1643。此外,在一个RIL群体中,增加的KL贡献了TKW的增加。总的来说,这里报道的1BL / 1RS易位是有意思地揭示基因控制KL的分子机制,并且可用于改善小麦产量。

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