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Examining the Effects of Temperature on Recombination in Wheat

机译:检查温度对小麦重组的影响

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Meiotic recombination plays a crucial role in the generation of new varieties. The effectiveness of recombination is limited by the distribution of crossover events, which in wheat and many other crops is skewed toward the distal regions of the chromosomes. Whole-genome sequencing of wheat has revealed that there are numerous important genes in the pericentromeric regions, which are inaccessible to manipulation due to the lack of crossover events. Studies in barley have shown that the distribution of recombination events can be shifted toward the centromeres by increasing temperature during meiosis. Here we present an analysis of the effects of temperature on the distribution and frequency of recombination events in wheat. Our data show that although increased temperature during meiosis does cause an inward shift in recombination distribution for some chromosomes, its overall utility is limited, with many genes remaining highly linked.
机译:减数分裂重组在新品种的产生中起着至关重要的作用。重组的有效性受到交叉事件的分布的限制,在小麦中,许多其他作物朝向染色体的远端区域倾斜。小麦的全基因组测序揭示了泌乳统治区域中存在许多重要的基因,这是由于缺乏交叉事件而无法操纵。大麦的研究表明,通过在减数分裂期间的温度增加,可以通过增加温度向焦粒子转移到焦粒子。在这里,我们对温度对小麦复合事件分布和频率的影响分析。我们的数据表明,尽管减数分裂期间的温度增加确实会导致某些染色体的重组分布内的向内变化,但其整体效用是有限的,许多基因仍然是高度连接的。

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