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Terminal Regions of Wheat Chromosomes Select Their Pairing Partners in Meiosis

机译:小麦染色体的末端区域在减数分裂中选择配对伴侣

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Many plant species, including important crops like wheat, are polyploids that carry more than two sets of genetically related chromosomes capable of meiotic pairing. To safeguard a diploid-like behavior at meiosis, many polyploids evolved genetic loci that suppress incorrect pairing and recombination of homeologues. The Ph1 locus in wheat was proposed to ensure homologous pairing by controlling the specificity of centromere associations that precede chromosome pairing. Using wheat chromosomes that carry rye centromeres, we show that the centromere associations in early meiosis are not based on homology and that the Ph1 locus has no effect on such associations. Although centromeres indeed undergo a switch from nonhomologous to homologous associations in meiosis, this process is driven by the terminally initiated synapsis. The centromere has no effect on metaphase I chiasmate chromosome associations: homologs with identical or different centromeres, in the presence and absence of Ph1 , pair the same. A FISH analysis of the behavior of centromeres and distal chromomeres in telocentric and bi-armed chromosomes demonstrates that it is not the centromeric, but rather the subtelomeric, regions that are involved in the correct partner recognition and selection.
机译:许多植物物种,包括像小麦这样的重要农作物,都是多倍体,它们携带多于两组能够进行减数分裂配对的遗传相关染色体。为了保护减数分裂时的二倍体样行为,许多多倍体进化出了遗传位点,可以抑制同源同源物的错误配对和重组。有人建议通过控制染色体配对之前着丝粒缔合的特异性来确保小麦的Ph1基因座同源。使用携带黑麦着丝粒的小麦染色体,我们显示了减数分裂早期的着丝粒关联不是基于同源性,并且Ph1基因座对这种关联没有影响。尽管着丝粒的确在减数分裂中经历了从非同源到同源的转变,但是这个过程是由终末引发的突触驱动的。着丝粒对中期I chismate染色体关联没有影响:在存在和不存在Ph1的情况下,具有相同或不同着丝粒的同系物配对相同。对端粒和双臂染色体中着丝粒和远端染色体的行为进行的FISH分析表明,参与正确的伴侣识别和选择的不是着丝粒区域,而是亚端粒区域。

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