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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Evolutionary transitions during RNA virus experimental evolution
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Evolutionary transitions during RNA virus experimental evolution

机译:RNA病毒实验进化过程中的进化转变

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摘要

In their search to understand the evolution of biological complexity, John Maynard Smith and Eors Szathmary put forward the notion of major evolutionary transitions as those in which elementary units get together to generate something new, larger and more complex. The origins of chromosomes, eukaryotic cells, multicellular organisms, colonies and, more recently, language and technological societies are examples that clearly illustrate this notion. However, a transition may be considered as anecdotal or as major depending on the specific level of biological organization under study. In this contribution, I will argue that transitions may also be occurring at a much smaller scale of biological organization: the viral world. Not only that, but also that we can observe in real time how these major transitions take place during experimental evolution. I will review the outcome of recent evolution experiments with viruses that illustrate four major evolutionary transitions: (i) the origin of a new virus that infects an otherwise inaccessible host and completely changes the way it interacts with the host regulatory and metabolic networks, (ii) the incorporation and loss of genes, (iii) the origin of segmented genomes from a non-segmented one, and (iv) the evolution of cooperative behaviour and cheating between different viruses or strains during co-infection of the same host.
机译:在寻求了解生物复杂性进化的过程中,约翰·梅纳德·史密斯(John Maynard Smith)和Eors Szathmary提出了主要进化转变的概念,即基本单位聚集在一起以产生新的,更大的和更复杂的东西。染色体,真核细胞,多细胞生物,菌落以及最近的语言和技术社会的起源就是清楚地说明了这一概念的例子。但是,根据所研究的生物学组织的具体水平,过渡可能被认为是轶事或主要的。在这一贡献中,我将论证说,过渡还可能发生在规模较小的生物组织:病毒世界。不仅如此,我们还可以实时观察这些主要转变在实验进化过程中如何发生。我将回顾最近使用病毒进行的进化实验的结果,这些实验说明了四个主要的进化过渡:(i)一种新病毒的起源,该病毒感染原本无法进入的宿主,并完全改变了其与宿主调节和代谢网络相互作用的方式,(ii )基因的掺入和丢失;(iii)来自非分段基因组的分段基因组的起源,以及(iv)在同一宿主共感染期间不同病毒或毒株之间协同行为和作弊的进化。

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