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Evidence for a Gene Involved in Multiple and Diverse Rearrangements in the Drosophila Genus

机译:参与果蝇属多种多样重排的基因的证据

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摘要

In Drosophila, chromosomes have been extensively reorganized during evolution, with most rearrangements affecting the gene order in chromosomal elements but not their gene content. The level of reorganization and the evidence for breakpoint reuse vary both between and within elements. The subito gene stands out as a gene involved in multiple rearrangements both because of its active single-gene transposition and because it is the nearest gene to diverse rearrangements breakpoints. Indeed, subito has undergone three single-gene transpositions and it is the nearest gene to the breakpoints of other single-gene transpositions and of two chromosomal inversions. Given that subito is involved in meiosis and therefore active in the female germ line, the high number of nearby fixed breakages might be related among others to the presumed high accessibility of the subito region to the machinery associated with double-strand breaks repair. A second important contributor would be the reduced and simple regulatory region of subito, which would imply that a fraction of the rearrangements originating from subito nearby breakages would have not affected either its pattern or timing of expression and would have, thus, not resulted in reduced fitness.
机译:在果蝇中,染色体在进化过程中被广泛重组,大多数重排影响染色体元件中的基因顺序,但不影响其基因含量。重组级别和断点重用的证据在元素之间和元素内部都有所不同。subito 基因作为参与多重重排的基因脱颖而出,既因为它具有活跃的单基因转座,也因为它是最接近不同重排断点的基因。事实上,subito经历了三次单基因转座,它是最接近其他单基因转座和两次染色体倒置断点的基因。鉴于 subito 参与减数分裂,因此在雌性生殖系中活跃,附近的大量固定断裂可能与推测的 subito 区域对与双链断裂修复相关的机制的高度可及性有关。第二个重要因素是subito的调控区域减少和简单,这意味着来自subito附近断裂的一小部分重排不会影响其表达模式或表达时间,因此不会导致适应性降低。

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