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Darwin's aliens

机译:达尔文的外星人

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摘要

Making predictions about aliens is not an easy task. Most previous work has focused on extrapolating from empirical observations and mechanistic understanding of physics, chemistry and biology. Another approach is to utilize theory to make predictions that are not tied to details of Earth. Here we show how evolutionary theory can be used to make predictions about aliens. We argue that aliens will undergo natural selection - something that should not be taken for granted but that rests on firm theoretical grounds. Given aliens undergo natural selection we can say something about their evolution. In particular, we can say something about how complexity will arise in space. Complexity has increased on the Earth as a result of a handful of events, known as the major transitions in individuality. Major transitions occur when groups of individuals come together to form a new higher level of the individual, such as when single-celled organisms evolved into multicellular organisms. Both theory and empirical data suggest that extreme conditions are required for major transitions to occur. We suggest that major transitions are likely to be the route to complexity on other planets, and that we should expect them to have been favoured by similarly restrictive conditions. Thus, we can make specific predictions about the biological makeup of complex aliens.
机译:让关于外星人的预测不是一件容易的任务。最先前的工作侧重于从经验观察和物理,化学和生物学的机械理解外推。另一种方法是利用理论来使预测不与地球的细节相关联。在这里,我们展示了进化理论如何用于对外星人进行预测。我们认为外星人将接受自然选择 - 不应该被视为理所当然的东西,但依靠坚实的理论理由。给予外星人经过自然选择,我们可以对他们的演变说些什么。特别是,我们可以说些什么是如何在太空中出现的复杂性。由于少数事件,地球上的复杂性增加了,被称为个性的主要过渡。当个体组聚集在一起形成一个新的个体水平时,发生重大转变,例如当单细胞生物进化到多细胞生物时。理论和经验数据都表明,主要过渡需要极端条件。我们建议主要过渡可能是其他行星复杂性的途径,并且我们应该期望他们受到类似限制条件的青睐。因此,我们可以对复杂外星人的生物学构成进行具体预测。

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