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Microbial specialization by prions

机译:ions病毒的微生物专长

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Microbial prions facilitate a variety of phenotypic switches. Recently-developed tools that can directly interrogate, in the living cell, the aggregation state of a protein have enabled a wider range of experiments for prion-mediated behaviors. With such tools, the roles of the yeast prion [SWI+] in migration and mating were studied. Although [SWI+] cells were consistently less fit than their [swi?] counterparts under traditional laboratory conditions, in these new phenotypic paradigms [SWI+] cells demonstrated a distinct advantage. [SWI+] cells dispersed over a larger area under conditions resembling rainfall and outcrossed more frequently. We postulate that many behaviors in microorganisms may be modulated by stochastic prion switching. In diverse and changing natural environments, prion switching at low frequency may promote greater fitness of the population by specializing a small number of individuals with altered responses to their environments.
机译:微生物病毒可促进多种表型转换。可以直接在活细胞中询问蛋白质的聚集状态的最新开发的工具,使针对病毒介导的行为的实验更加广泛。使用此类工具,研究了酵母病毒[SWI +]在迁移和交配中的作用。尽管在传统实验室条件下,[SWI +]细胞始终比[swi?]细胞适应性差,但是在这些新的表型范例中,[SWI +]细胞显示出明显的优势。 [SWI +]细胞在类似于降雨的条件下分散在更大的区域,并且越频繁地越界。我们假设微生物中的许多行为可以通过随机pr病毒转换来调节。在多样化且不断变化的自然环境中,低频病毒切换可以通过使少数个体对环境的反应有所改变来提高种群的适应性。

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