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The Selfish Gene Revisited: Reconciliation of Williams-Dawkins and Conventional Definitions

机译:再谈自私的基因:威廉姆斯-道金斯与传统定义的和解

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Sightings of the revolutionary comet that appeared in the skies of evolutionary biology in 1976-the selfish gene-date back to the 19th and early 20th centuries. It became generally recognized that genes were located on chromosomes and compete with each other in a manner consistent with the later appellation "selfish." Chromosomes were seen as disruptable by the apparently random "cut and paste" process known as recombination. However, each gene was only a small part of its chromosome. On a statistical basis a gene should escape disruption for many generations. This led George Williams and Richard Dawkins to a new definition of the gene, differing from conventional biochemical definitions in that there were no consistent genic boundaries. There had been no previous sightings of another revolutionary, albeit less verbally spectacular, comet that appeared in 1975-the homostability principle of Akiyoshi Wada. Each gene has a base composition "accent" that distinguishes it from its neighbors. We now see that recombination can be triggered by the shift in base composition at genic boundaries. Hence, the Williams-Dawkins definition approaches the conventional definitions.
机译:1976年进化生物学的天空中出现了革命彗星的踪迹-自私的基因可以追溯到19世纪和20世纪初。人们普遍认识到基因位于染色体上,并且以与后来的称呼“自私”相一致的方式相互竞争。染色体可以被称为重组的明显随机的“剪切和粘贴”过程破坏。但是,每个基因只是其染色体的一小部分。从统计学的角度来看,一个基因应该可以逃脱许多代的破坏。这导致乔治·威廉姆斯(George Williams)和理查德·道金斯(Richard Dawkins)对基因有了新的定义,与传统的生化定义不同,因为没有一致的基因边界。以前从未见过另一种革命性的彗星,虽然口头上不太壮观,但它出现在1975年-和田明义的同质性原理。每个基因都有一个碱基组成的“重音”,可将其与邻居区分开。我们现在看到重组可以通过基因边界处碱基组成的变化来触发。因此,威廉姆斯-道金斯的定义接近传统的定义。

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