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All Paired Up with No Place to Go: Pairing Synapsis and DSB Formation in a Balancer Heterozygote

机译:全部配对无处可去:平衡杂合子中的配对突触和DSB形成

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摘要

The multiply inverted X chromosome balancer FM7 strongly suppresses, or eliminates, the occurrence of crossing over when heterozygous with a normal sequence homolog. We have utilized the LacI-GFP: lacO system to visualize the effects of FM7 on meiotic pairing, synapsis, and double-strand break formation in Drosophila oocytes. Surprisingly, the analysis of meiotic pairing and synapsis for three lacO reporter couplets in FM7/X heterozygotes revealed they are paired and synapsed during zygotene/pachytene in 70%–80% of oocytes. Moreover, the regions defined by these lacO couplets undergo double-strand break formation at normal frequency. Thus, even complex aberration heterozygotes usually allow high frequencies of meiotic pairing, synapsis, and double-strand break formation in Drosophila oocytes. However, the frequencies of failed pairing and synapsis were still 1.5- to 2-fold higher than were observed for corresponding regions in oocytes with two normal sequence X chromosomes, and this effect was greatest near a breakpoint. We propose that heterozygosity for breakpoints creates a local alteration in synaptonemal complex structure that is propagated across long regions of the bivalent in a fashion analogous to chiasma interference, which also acts to suppress crossing over.
机译:当与正常序列同源性杂合时,多重反向X染色体平衡器FM7强烈抑制或消除了交叉的发生。我们已经利用LacI-GFP:lacO系统可视化FM7对果蝇卵母细胞中减数分裂配对,突触和双链断裂形成的影响。出人意料的是,FM7 / X杂合子中三个lacO报告子对的减数分裂配对和突触的分析显示,它们在70%–80%的卵母细胞的合子/粗线虫期间配对并突触。此外,由这些lacO偶联定义的区域在正常频率下会发生双链断裂。因此,即使是复杂的像差杂合子,通常也能在果蝇卵母细胞中实现高频率的减数分裂配对,突触和双链断裂的形成。但是,失败配对和突触的频率仍比具有两个正常序列X染色体的卵母细胞中相应区域的观察频率高1.5至2倍,并且这种影响在断点附近最大。我们提出,对于断点而言,杂合性会在突触复合结构中产生局部改变,并以类似于chimama干扰的方式跨二价长区域传播,这也起到了抑制交叉的作用。

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