Department of Bioscience and Biotechnology, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal, 721302, India.
World J Microbiol Biotechnol. 2024 Sep 16;40(10):320. doi: 10.1007/s11274-024-04132-6.
Microbial biomineralization is a phenomenon involving deposition of inorganic minerals inside or around microbial cells as a direct consequence of biogeochemical cycling. The microbial metabolic processes often create environmental conditions conducive for the precipitation of silicate, carbonate or phosphate, ferrate forms of ubiquitous inorganic ions. Till date the fundamental mechanisms underpinning two of the major types of microbial biomineralization such as, microbially controlled and microbially induced remains poorly understood. While microbially-controlled mineralization (MCM) depends entirely on the genetic makeup of the cell, microbially-induced mineralization (MIM) is dependent on factors such as cell morphology, cell surface structures and extracellular polymeric substances (EPS). In recent years, the organic template-mediated nucleation of inorganic minerals has been considered as an underlying mechanism based on the principles of solid-state bioinorganic chemistry. The present review thus attempts to provide a comprehensive and critical overview on the recent progress in holistic understanding of both MCM and MIM, which involves, organic-inorganic biomolecular interactions that lead to template formation, biomineral nucleation and crystallization. Also, the operation of specific metabolic pathways and molecular operons in directing microbial biomineralization have been discussed. Unravelling these molecular mechanisms of biomineralization can help in the biomimetic synthesis of minerals for potential therapeutic applications, and facilitating the engineering of microorganisms for commercial production of biominerals.
微生物生物矿化是一种现象,涉及无机矿物质在微生物细胞内部或周围的沉积,这是生物地球化学循环的直接结果。微生物的代谢过程通常会创造有利于硅酸盐、碳酸盐或磷酸盐沉淀的环境条件,以及铁酸盐形式的普遍存在的无机离子。迄今为止,微生物控制和微生物诱导两种主要类型的微生物生物矿化的基本机制仍然知之甚少。虽然微生物控制的矿化(MCM)完全取决于细胞的基因构成,但微生物诱导的矿化(MIM)取决于细胞形态、细胞表面结构和细胞外聚合物物质(EPS)等因素。近年来,基于固态生物无机化学原理,无机矿物的有机模板介导成核已被认为是一种潜在的机制。因此,本综述试图全面而批判性地概述对 MCM 和 MIM 的整体理解的最新进展,其中涉及导致模板形成、生物矿核和结晶的有机-无机生物分子相互作用。此外,还讨论了特定代谢途径和分子操纵子在指导微生物生物矿化中的作用。揭示这些生物矿化的分子机制可以帮助在潜在治疗应用中进行仿生合成矿物质,并促进微生物的工程化以用于生物矿物质的商业生产。