Evaluation of Prokaryotic and Eukaryotic Cell

Ravi Kumar
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引用次数: 1

Abstract

In the “ecosystems-first” approach to the origins of life, networks of noncovalent assemblies of molecules (composomes), rather than individual protocells, evolved under the constraints of molecular complementarity. Composomes evolved into the hyperstructures of modern bacteria. We extend the ecosystems-first approach to explain the origin of eukaryotic cells through the integration of mixed populations of bacteria. We suggest that mutualism and symbiosis resulted in cellular mergers entailing the loss of redundant hyperstructures, the uncoupling of transcription and translation, and the emergence of introns and multiple chromosomes. Molecular complementarity also facilitated integration of bacterial hyperstructures to perform cytoskeletal and movement functions.
原核和真核细胞的评价
在研究生命起源的“生态系统优先”方法中,在分子互补性的约束下,分子的非共价组合网络(组合体)而不是单个的原始细胞进化。合成体进化成现代细菌的上层结构。我们扩展了生态系统优先的方法,通过细菌混合种群的整合来解释真核细胞的起源。我们认为,共生和共生导致细胞合并,导致冗余超结构的丢失,转录和翻译的解耦,以及内含子和多染色体的出现。分子的互补性也促进了细菌超结构的整合,以执行细胞骨架和运动功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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