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RNA病毒的适应性因穆勒棘轮效应而降低。

Fitness of RNA virus decreased by Muller's ratchet.

作者信息

Chao L

机构信息

Department of Zoology, University of Maryland, College Park 20742.

出版信息

Nature. 1990 Nov 29;348(6300):454-5. doi: 10.1038/348454a0.

Abstract

Why sex exists remains an unsolved problem in biology. If mutations are on the average deleterious, a high mutation rate can account for the evolution of sex. One form of this mutational hypothesis is Muller's ratchet. If the mutation rate is high, mutation-free individuals become rare and they can be lost by genetic drift in small populations. In asexual populations, as Muller noted, the loss is irreversible and the load of deleterious mutations increases in a ratchet-like manner with the successive loss of the least-mutated individuals. Sex can be advantageous because it increases the fitness of sexual populations by re-creating mutation-free individuals from mutated individuals and stops (or slows) Muller's ratchet. Although Muller's ratchet is an appealing hypothesis, it has been investigated and documented experimentally in only one group of organisms--ciliated protozoa. I initiated a study to examine the role of Muller's ratchet on the evolution of sex in RNA viruses and report here a significant decrease in fitness due to Muller's ratchet in 20 lineages of the RNA bacteriophage phi 6. These results show that deleterious mutations are generated at a sufficiently high rate to advance Muller's ratchet in an RNA virus and that beneficial, backward and compensatory mutations cannot stop the ratchet in the observed range of fitness decrease.

摘要

性为何存在仍是生物学中一个尚未解决的问题。如果突变平均而言是有害的,那么高突变率可以解释性的进化。这种突变假说的一种形式是穆勒棘轮效应。如果突变率很高,无突变个体就会变得稀少,并且它们可能会在小群体中因遗传漂变而丢失。正如穆勒所指出的,在无性繁殖群体中,这种损失是不可逆的,有害突变的负担会随着最不易突变个体的相继丢失而以类似棘轮的方式增加。有性生殖可能具有优势,因为它通过从突变个体中重新产生无突变个体来提高有性生殖群体的适应性,并阻止(或减缓)穆勒棘轮效应。尽管穆勒棘轮效应是一个很有吸引力的假说,但仅在一类生物体——纤毛原生动物中进行过实验研究和记录。我开展了一项研究,以检验穆勒棘轮效应在RNA病毒性进化中的作用,并在此报告,由于穆勒棘轮效应,RNA噬菌体φ6的20个谱系的适应性显著下降。这些结果表明,有害突变以足够高的速率产生,从而在RNA病毒中推动穆勒棘轮效应,并且在观察到的适应性下降范围内,有益的、反向的和补偿性突变无法阻止棘轮效应。

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