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Sequencing of Single Pollen Nuclei Reveals Meiotic Recombination Events at Megabase Resolution and Circumvents Segregation Distortion Caused by Postmeiotic Processes

机译:单花粉核的测序显示兆碱基分辨率下的减数分裂重组事件和由减数分裂过程引起的绕开偏析变形。

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摘要

Meiotic recombination is a fundamental mechanism to generate novel allelic combinations which can be harnessed by breeders to achieve crop improvement. The recombination landscape of many crop species, including the major crop barley, is characterized by a dearth of recombination in 65% of the genome. In addition, segregation distortion caused by selection on genetically linked loci is a frequent and undesirable phenomenon in double haploid populations which hampers genetic mapping and breeding. Here, we present an approach to directly investigate recombination at the DNA sequence level by combining flow-sorting of haploid pollen nuclei of barley with single-cell genome sequencing. We confirm the skewed distribution of recombination events toward distal chromosomal regions at megabase resolution and show that segregation distortion is almost absent if directly measured in pollen. Furthermore, we show a bimodal distribution of inter-crossover distances, which supports the existence of two classes of crossovers which are sensitive or less sensitive to physical interference. We conclude that single pollen nuclei sequencing is an approach capable of revealing recombination patterns in the absence of segregation distortion.
机译:减数分裂重组是产生新的等位基因组合的基本机制,育种者可以利用该组合来实现作物改良。许多作物物种(包括主要的大麦)的重组格局的特征是基因组中65%的重组缺乏。另外,在双单倍体群体中,由遗传连锁基因座的选择引起的分离畸变是常见且不希望的现象,这阻碍了遗传图谱和育种。在这里,我们提出一种方法,通过将大麦的单倍体花粉核的流量排序与单细胞基因组测序相结合来直接研究DNA序列水平上的重组。我们以兆碱基分辨率确认了重组事件偏向远端染色体区域的偏态分布,并表明如果直接在花粉中测量,则几乎不存在偏析变形。此外,我们显示了交叉距离之间的双峰分布,这支持了对物理干扰敏感或较不敏感的两类交叉的存在。我们得出的结论是,单花粉核测序是一种能够在不存在分离畸变的情况下揭示重组模式的方法。

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