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认知、信息场与全基因组纠缠:光影中的进化

Cognition, Information Fields and Hologenomic Entanglement: Evolution in Light and Shadow.

作者信息

Miller William B

机构信息

Independent Researcher, 6526 N. 59th St., Paradise Valley, AZ 85253, USA.

出版信息

Biology (Basel). 2016 May 21;5(2):21. doi: 10.3390/biology5020021.

Abstract

As the prime unification of Darwinism and genetics, the Modern Synthesis continues to epitomize mainstay evolutionary theory. Many decades after its formulation, its anchor assumptions remain fixed: conflict between macro organic organisms and selection at that level represent the near totality of any evolutionary narrative. However, intervening research has revealed a less easily appraised cellular and microbial focus for eukaryotic existence. It is now established that all multicellular eukaryotic organisms are holobionts representing complex collaborations between the co-aligned microbiome of each eukaryote and its innate cells into extensive mixed cellular ecologies. Each of these ecological constituents has demonstrated faculties consistent with basal cognition. Consequently, an alternative hologenomic entanglement model is proposed with cognition at its center and conceptualized as Pervasive Information Fields within a quantum framework. Evolutionary development can then be reconsidered as being continuously based upon communication between self-referential constituencies reiterated at every scope and scale. Immunological reactions support and reinforce self-recognition juxtaposed against external environmental stresses.

摘要

作为达尔文主义与遗传学的首要统一体,现代综合论仍然是主流进化理论的典范。在其形成后的几十年里,其核心假设依然不变:宏观有机生物体之间的冲突以及该层面的选择几乎构成了所有进化叙事的全部内容。然而,后续研究揭示了真核生物存在的一个较难评估的细胞和微生物焦点。现在已经确定,所有多细胞真核生物都是全生物,代表着每个真核生物的共生微生物群与其固有细胞之间的复杂协作,形成广泛的混合细胞生态。这些生态成分中的每一个都表现出与基础认知相一致的能力。因此,提出了一种以认知为中心的替代性全基因组纠缠模型,并在量子框架内将其概念化为普遍信息场。进化发展可以重新被视为持续基于在每个范围和尺度上反复出现的自我指涉成分之间的通信。免疫反应支持并强化与外部环境压力相对的自我识别。

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