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Ancient gene drives: an evolutionary paradox

机译:古代基因驱动器:进化的悖论

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Selfish genetic elements such as selfish chromosomes increase their transmission rate relative to the rest of the genome and can generate substantial cost to the organisms that carry them. Such segregation distorters are predicted to either reach fixation (potentially causing population extinction) or, more commonly, promote the evolution of genetic suppression to restore transmission to equality. Many populations show rapid spread of segregation distorters, followed by the rapid evolution of suppression. However, not all drivers display such flux, some instead persisting at stable frequencies in natural populations for decades, perhaps hundreds of thousands of years, with no sign of suppression evolving or the driver spreading to fixation. This represents a major evolutionary paradox. How can drivers be maintained in the long term at stable frequencies? And why has suppression not evolved as in many other gene drive systems? Here, we explore potential factors that may explain the persistence of drive systems, focusing on the ancient sex-ratio driver in the fly Drosophila pseudoobscura. We discuss potential solutions to the evolutionary mystery of why suppression does not appear to have evolved in this system, and address how long-term stable frequencies of gene drive can be maintained. Finally, we speculate whether ancient drivers may be functionally and evolutionarily distinct to young drive systems.
机译:自私染色体如自私的遗传元素,相对于基因组的其余部分增加其透射率,并且可以产生携带它们的生物的大量成本。预计这种分离失真预测到达到固定(可能导致人群灭绝)或更常见的是,促进遗传抑制的演变,以恢复传播到平等。许多人群显示出差异的迅速传播,其次是抑制的快速发展。然而,并非所有驱动程序都显示出这种助焊剂,而是几十年来延长了自然群体中的稳定频率,也许数十万年,没有抑制不断发展的迹象或传播到固定的司机。这代表了一个主要的进化悖论。如何在稳定的频率下长期维护司机?为什么抑制不像许多其他基因驱动系统一样进化?在这里,我们探讨了可能解释驱动系统的持久性的潜在因素,重点是狼人在苍蝇菌伪伪佛教的古老性别比率司机上。我们讨论了为什么抑制在该系统中抑制的潜在解决方案尚未在该系统中发展,并且解决了基因驱动器的长期稳定频率。最后,我们推测古代司机是否可以在功能上和发展方向上与年轻的驱动系统不同。

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