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盖亚作为索拉里斯:一种替代的默认进化轨迹。

Gaia as Solaris: An Alternative Default Evolutionary Trajectory.

机构信息

University Children's Hospital, Tiršova 10, 11000, Belgrade, RS, Serbia.

Faculty of Philosophy, University of Belgrade, 11000, Belgrade, RS, Serbia.

出版信息

Orig Life Evol Biosph. 2022 Sep;52(1-3):129-147. doi: 10.1007/s11084-022-09619-6. Epub 2022 Apr 20.

Abstract

Now that we know that Earth-like planets are ubiquitous in the universe, as well as that most of them are much older than the Earth, it is justified to ask to what extent evolutionary outcomes on other such planets are similar, or indeed commensurable, to the outcomes we perceive around us. In order to assess the degree of specialty or mediocrity of our trajectory of biospheric evolution, we need to take into account recent advances in theoretical astrobiology, in particular (i) establishing the history of habitable planets' formation in the Galaxy, and (ii) understanding the crucial importance of "Gaian" feedback loops and temporal windows for the interaction of early life with its physical environment. Hereby we consider an alternative macroevolutionary pathway that may result in tight functional integration of all sub-planetary ecosystems, eventually giving rise to a true superorganism at the biospheric level. The blueprint for a possible outcome of this scenario has been masterfully provided by the great Polish novelist Stanisław Lem in his 1961 novel Solaris. In fact, Solaris offers such a persuasive and powerful case for an "extremely strong" Gaia hypothesis that it is, arguably, high time to investigate it in a discursive astrobiological and philosophical context. In addition to novel predictions in the domain of potentially detectable biosignatures, some additional cognitive and heuristic benefits of studying such extreme cases of functional integration are briefly discussed.

摘要

既然我们知道类地行星在宇宙中无处不在,而且大多数类地行星都比地球古老得多,那么就有理由问一下,在其他类似的行星上,进化结果在多大程度上与我们周围所感知到的结果相似,或者确实可以相提并论。为了评估我们生物圈进化轨迹的特殊性或平庸性,我们需要考虑理论天体生物学的最新进展,特别是:(i)确定银河系中可居住行星的形成历史;(ii)理解“盖亚”反馈回路和早期生命与其物理环境相互作用的时间窗口的关键重要性。在此,我们考虑了一种可能的替代宏观进化途径,该途径可能导致所有亚行星生态系统的紧密功能整合,最终在生物圈层面上产生真正的超级生物体。这种情况的可能结果蓝图在伟大的波兰小说家斯坦尼斯瓦夫·莱姆 1961 年的小说《索拉里斯》中得到了巧妙的呈现。事实上,《索拉里斯》为“极强”盖亚假说提供了如此令人信服和有力的案例,以至于现在是时候在论述性天体生物学和哲学背景下对其进行研究了。除了在潜在可检测生物特征领域的新预测外,还简要讨论了研究这种功能整合极端案例的一些额外认知和启发式益处。

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