Evolution of genetic switch complexity.

Bacteriophage Pub Date : 2013-01-01 DOI:10.4161/bact.24186
Gregory W Broussard, Graham F Hatfull
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引用次数: 10

Abstract

The circuitry of the phage λ genetic switch determining the outcome of lytic or lysogenic growth is well-integrated and complex, raising the question as to how it evolved. It is plausible that it arose from a simpler ancestral switch with fewer components that underwent various additions and refinements, as it adapted to vast numbers of different hosts and conditions. We have recently identified a new class of genetic switches found in mycobacteriophages and other prophages, in which immunity is dependent on integration. These switches contain only three genes (integrase, repressor and cro) and represent a major departure from the λ-like circuitry, lacking many features such as xis, cII and cIII. These small self-contained switches represent an unrealized, elegant circuitry for controlling infection outcome. In this addendum, we propose a model of possible events in the evolution of a complex λ-like switch from a simpler integration-dependent switch.

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遗传开关复杂性的进化。
噬菌体λ遗传开关的电路决定了裂解或溶原性生长的结果,它是完整而复杂的,这就提出了它是如何进化的问题。有一种说法似乎是合理的,即它起源于一种更简单的祖先开关,其成分较少,在适应大量不同的宿主和条件时,经历了各种添加和改进。我们最近在分枝噬菌体和其他噬菌体中发现了一类新的遗传开关,其中免疫依赖于整合。这些开关只包含三个基因(整合酶、抑制因子和cro),与λ样电路有很大不同,缺乏xis、cII和cIII等许多特征。这些小的独立开关代表了一种未实现的、优雅的控制感染结果的电路。在本附录中,我们提出了一个复杂λ样开关从简单的积分依赖开关进化的可能事件模型。
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