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Spatial and temporal control of evolution through replication-transcription conflicts

机译:通过复制-转录冲突进行进化的时空控制

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摘要

Evolution could potentially be accelerated if an organism could selectively increase the mutation rate of specific genes that are actively under positive selection. Recently, a mechanism that cells can use to target rapid evolution to specific genes was discovered. This mechanism is driven by gene orientation-dependent encounters between DNA replication and transcription machineries. These encounters increase mutagenesis in lagging strand genes, where replication-transcription conflicts are severe. Due to the orientation and transcription-dependent nature of this process, conflict-driven mutagenesis can be used by cells to spatially (gene-specifically) and temporally (only upon transcription induction) regulate the rate of gene evolution. Here, I summarize recent findings on this topic, and discuss the implications of increasing mutagenesis rates and accelerating evolution through active mechanisms.
机译:如果有机体可以选择性地提高积极选择阳性的特定基因的突变率,则进化可能会加速。最近,发现了一种细胞可用于靶向快速进化至特定基因的机制。这种机制是由DNA复制和转录机制之间的基因方向依赖性相遇驱动的。这些相遇增加了滞后链基因的诱变,在滞后链基因中复制转录冲突非常严重。由于此过程的方向和转录依赖性,细胞可以使用冲突驱动的诱变在空间上(基因特异性)和时间上(仅在转录诱导时)调节基因进化的速率。在这里,我总结了有关该主题的最新发现,并讨论了通过主动机制提高诱变率和加速进化的含义。

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