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Prog Biophys Mol Biol. 2018 May;134:1-26. doi: 10.1016/j.pbiomolbio.2017.11.005. Epub 2017 Nov 22.
An alternative biological synthesis is presented that conceptualizes evolutionary biology as an epiphenomenon of integrated self-referential information management. Since all biological information has inherent ambiguity, the systematic assessment of information is required by living organisms to maintain self-identity and homeostatic equipoise in confrontation with environmental challenges. Through their self-referential attachment to information space, cells are the cornerstone of biological action. That individualized assessment of information space permits self-referential, self-organizing niche construction. That deployment of information and its subsequent selection enacted the dominant stable unicellular informational architectures whose biological expressions are the prokaryotic, archaeal, and eukaryotic unicellular forms. Multicellularity represents the collective appraisal of equivocal environmental information through a shared information space. This concerted action can be viewed as systematized information management to improve information quality for the maintenance of preferred homeostatic boundaries among the varied participants. When reiterated in successive scales, this same collaborative exchange of information yields macroscopic organisms as obligatory multicellular holobionts. Cognition-Based Evolution (CBE) upholds that assessment of information precedes biological action, and the deployment of information through integrative self-referential niche construction and natural cellular engineering antecedes selection. Therefore, evolutionary biology can be framed as a complex reciprocating interactome that consists of the assessment, communication, deployment and management of information by self-referential organisms at multiple scales in continuous confrontation with environmental stresses.
提出了一种替代的生物合成方法,将进化生物学概念化为集成自指信息管理的伴随现象。由于所有生物信息都具有固有歧义,因此生物体需要对信息进行系统评估,以在面对环境挑战时保持自我认同和动态平衡。通过对信息空间的自指附着,细胞成为生物作用的基石。对信息空间的个体化评估允许进行自指、自组织的生态位构建。这种信息的部署及其随后的选择,产生了占主导地位的稳定单细胞信息架构,其生物学表现形式为原核生物、古菌和真核单细胞形式。多细胞性代表了通过共享信息空间对模棱两可的环境信息进行集体评估。这种协同作用可以被视为系统化的信息管理,以提高信息质量,从而在不同参与者之间维持首选的动态平衡边界。当在连续的尺度上重复时,这种相同的信息交换产生了宏观生物体作为必需的多细胞整体共生体。基于认知的进化(CBE)认为,信息评估先于生物作用,并且通过整合的自指生态位构建和自然细胞工程进行信息部署先于选择。因此,进化生物学可以被框定为一个复杂的往复交互网络,它由自我参照生物体在多个尺度上进行信息的评估、交流、部署和管理组成,这些生物体在不断地与环境压力作斗争。