Centre de Biologie Intégrative de Toulouse (CBI Toulouse), Laboratoire de Microbiologie et Génétique Moléculaires (LMGM), Université de Toulouse, UPS, CNRS, IBCG, 165 rue Marianne Grunberg-Manago, 31062 Toulouse, France.
FEMS Microbiol Rev. 2021 Jan 8;45(1). doi: 10.1093/femsre/fuaa046.
Bacterial cell proliferation is highly efficient, both because bacteria grow fast and multiply with a low failure rate. This efficiency is underpinned by the robustness of the cell cycle and its synchronization with cell growth and cytokinesis. Recent advances in bacterial cell biology brought about by single-cell physiology in microfluidic chambers suggest a series of simple phenomenological models at the cellular scale, coupling cell size and growth with the cell cycle. We contrast the apparent simplicity of these mechanisms based on the addition of a constant size between cell cycle events (e.g. two consecutive initiation of DNA replication or cell division) with the complexity of the underlying regulatory networks. Beyond the paradigm of cell cycle checkpoints, the coordination between the DNA and division cycles and cell growth is largely mediated by a wealth of other mechanisms. We propose our perspective on these mechanisms, through the prism of the known crosstalk between DNA replication and segregation, cell division and cell growth or size. We argue that the precise knowledge of these molecular mechanisms is critical to integrate the diverse layers of controls at different time and space scales into synthetic and verifiable models.
细菌细胞的增殖效率非常高,这既是因为细菌生长迅速,而且繁殖失败率低。这种高效率是由细胞周期的稳健性及其与细胞生长和胞质分裂的同步性所支撑的。近年来,在微流控室中的单细胞生理学带来的细菌细胞生物学的进展表明,在细胞尺度上存在一系列简单的现象学模型,将细胞大小和生长与细胞周期联系起来。我们将这些机制的明显简单性与潜在调控网络的复杂性进行对比,这些机制是基于细胞周期事件(例如连续两次 DNA 复制或细胞分裂的起始)之间添加一个恒定大小来实现的。除了细胞周期检查点的范例之外,DNA 和分裂周期与细胞生长之间的协调主要是通过大量其他机制来介导的。我们通过已知的 DNA 复制和分离、细胞分裂和细胞生长或大小之间的交叉对话的棱镜来提出我们对这些机制的看法。我们认为,精确了解这些分子机制对于将不同时间和空间尺度的各种控制层整合到可综合和可验证的模型中至关重要。