Caliari Adriano, Xu Jian, Yomo Tetsuya
School of Software Engineering, East China Normal University, Shanghai 200062, PR China.
Laboratory of Biology and Information Science, Biomedical Synthetic Biology Research Center, School of Life Sciences, East China Normal University, Shanghai 200062, PR China.
Comput Struct Biotechnol J. 2021 Apr 17;19:2202-2212. doi: 10.1016/j.csbj.2021.04.030. eCollection 2021.
The history of modern biochemistry started with the cellular theory of life. By putting aside the holistic protoplasmic theory, scientists of the XX century were able to advance the functional classification of cellular components significantly. The cell became the unit of the living. Current theories on the abiogenesis of life must account for a moment in evolution (chemical or biological) when this was not the case. Investigating the role of compartments and membranes along chemical and biotic evolution can lead a more generalised idea of living organisms that is fundamental to advance our efforts in astrobiology, origin of life and artificial life studies. Furthermore, it may provide insights in unexplained evolutionary features such as the lipid divide between Archaea and Eubacteria. By surveying our current understanding of the involvement of compartments in abiogenesis and evolution, the idea of cells as atomistic units of a general theory of biology will be discussed. The aim is not to undermine the validity of the cellular theory of life, but rather to elucidate possible biases with regards to cellularity and the origin of life. An open discussion in these regards could show the inherent limitations of non-cellular compartmentalization that may lead to the necessity of cellular structures to support complex life.
现代生物化学的历史始于生命的细胞学说。通过摒弃整体原生质理论,20世纪的科学家得以显著推进细胞成分的功能分类。细胞成为了生命的基本单位。当前关于生命起源的理论必须解释进化过程(化学或生物)中的某个阶段,那时情况并非如此。沿着化学和生物进化过程研究区室和膜的作用,可以形成关于生物体更广义的概念,这对于推进我们在天体生物学、生命起源和人工生命研究方面的工作至关重要。此外,它可能为诸如古细菌和真细菌之间的脂质差异等无法解释的进化特征提供见解。通过审视我们目前对区室在生命起源和进化中作用的理解,将讨论细胞作为生物学一般理论的原子单位这一概念。目的不是要削弱生命细胞学说的有效性,而是要阐明关于细胞性和生命起源可能存在的偏见。在这些方面进行公开讨论可能会揭示非细胞区室化的固有局限性,这可能导致需要细胞结构来支持复杂生命。