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Third Chromosome Balancer Inversions Disrupt Protein-Coding Genes and Influence Distal Recombination Events in Drosophila melanogaster

机译:第三次染色体平衡器反转破坏果蝇果蝇的蛋白质编码基因并影响远距离重组事件。

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摘要

Balancer chromosomes are multiply inverted chromosomes that suppress meiotic crossing over and prevent the recovery of crossover products. Balancers are commonly used in Drosophila melanogaster to maintain deleterious alleles and in stock construction. They exist for all three major chromosomes, yet the molecular location of the breakpoints and the exact nature of many of the mutations carried by the second and third chromosome balancers has not been available. Here, we precisely locate eight of 10 of the breakpoints on the third chromosome balancer TM3, six of eight on TM6, and nine of 11 breakpoints on TM6B. We find that one of the inversion breakpoints on TM3 bisects the highly conserved tumor suppressor gene —a finding that may have important consequences for a wide range of studies in Drosophila. We also identify evidence of single and double crossovers between several TM3 and TM6B balancers and their normal-sequence homologs that have created genetic diversity among these chromosomes. Overall, this work demonstrates the practical importance of precisely identifying the position of inversion breakpoints of balancer chromosomes and characterizing the mutant alleles carried by them.
机译:平衡染色体是倍增的反向染色体,可抑制减数分裂的交叉并阻止交叉产物的恢复。平衡剂通常用于果蝇的果蝇中,以维持有害的等位基因和畜牧业。它们存在于所有三个主要染色体中,但尚无法获得断裂点的分子位置以及第二和第三染色体平衡器携带的许多突变的确切性质。在这里,我们精确地在第三个染色体平衡器TM3上找到10个断点中的八个,在TM6上找到八个断点中的六个,在TM6B上找到11个断点中的九个。我们发现,TM3的一个反向断裂点将高度保守的抑癌基因一分为二,这一发现可能对果蝇的广泛研究产生重要影响。我们还确定了几个TM3和TM6B平衡子与它们在这些染色体之间产生了遗传多样性的正常序列同源物之间单双交叉的证据。总的来说,这项工作证明了精确鉴定平衡染色体反转断点的位置并表征其携带的突变等位基因的实际重要性。

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