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From L'Homme Machine to metabolic closure: Steps towards understanding life

机译:从L'Homme Machine到代谢封闭:迈向生活的步骤

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The nature of life has been a topic of interest from the earliest of times, and efforts to explain it in mechanistic terms date at least from the 18th century. However, the impressive development of molecular biology since the 1950s has tended to have the question put on one side while biologists explore mechanisms in greater and greater detail, with the result that studies of life as such have been confined to a rather small group of researchers who have ignored one another's work almost completely, often using quite different terminology to present very similar ideas. Central among these ideas is that of closure, which implies that all of the catalysts needed for an organism to stay alive must be produced by the organism itself, relying on nothing apart from food (and hence chemical energy) from outside. The theories that embody this idea to a greater or less degree are known by a variety of names, including (M,R) systems, autopoiesis, the chemoton, the hypercycle, symbiosis, autocatalytic sets, sysers and RAF sets. These are not all the same, but they are not completely different either, and in this review we examine their similarities and differences, with the aim of working towards the formulation of a unified theory of life.
机译:生命的性质从最早开始就是一个有趣的话题,用机械学来解释生命的努力至少可以追溯到18世纪。然而,自1950年代以来分子生物学的惊人发展倾向于将问题放在一边,而生物学家越来越详细地探索其机制,结果是,对生命的研究仅限于一小部分研究者。他们几乎完全忽略了彼此的工作,经常使用完全不同的术语来表达非常相似的想法。这些想法的核心是封闭,这意味着生物体生存所需的所有催化剂都必须由生物体自身产生,除了食物(以及化学能)以外,什么都不依赖。各种名称都或多或少地体现了这一思想的理论,包括(M,R)系统,自生,化学物质,超循环,共生,自催化集,系统和RAF集。这些都不尽相同,但也没有完全不同,在本综述中,我们研究了它们的异同,目的是努力形成统一的生命理论。

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