Akimbekov Nuraly S, Digel Ilya, Tastambek Kuanysh T, Marat Adel K, Turaliyeva Moldir A, Kaiyrmanova Gulzhan K
Department of Biotechnology, Al-Farabi Kazakh National University, Almaty 050040, Kazakhstan.
Institute for Bioengineering, FH Aachen University of Applied Sciences, 52428 Jülich, Germany.
Biology (Basel). 2022 Sep 2;11(9):1306. doi: 10.3390/biology11091306.
It was generally believed that coal sources are not favorable as live-in habitats for microorganisms due to their recalcitrant chemical nature and negligible decomposition. However, accumulating evidence has revealed the presence of diverse microbial groups in coal environments and their significant metabolic role in coal biogeochemical dynamics and ecosystem functioning. The high oxygen content, organic fractions, and lignin-like structures of lower-rank coals may provide effective means for microbial attack, still representing a greatly unexplored frontier in microbiology. Coal degradation/conversion technology by native bacterial and fungal species has great potential in agricultural development, chemical industry production, and environmental rehabilitation. Furthermore, native microalgal species can offer a sustainable energy source and an excellent bioremediation strategy applicable to coal spill/seam waters. Additionally, the measures of the fate of the microbial community would serve as an indicator of restoration progress on post-coal-mining sites. This review puts forward a comprehensive vision of coal biodegradation and bioprocessing by microorganisms native to coal environments for determining their biotechnological potential and possible applications.
人们普遍认为,由于煤炭具有顽固的化学性质且分解程度可忽略不计,因此煤炭来源并非微生物理想的生存栖息地。然而,越来越多的证据表明,煤炭环境中存在着多样的微生物群落,它们在煤炭生物地球化学动态和生态系统功能中发挥着重要的代谢作用。低阶煤的高氧含量、有机组分和类木质素结构可能为微生物攻击提供有效途径,这在微生物学领域仍是一个尚未充分探索的前沿领域。利用天然细菌和真菌物种进行煤炭降解/转化技术在农业发展、化工生产和环境修复方面具有巨大潜力。此外,天然微藻物种可以提供可持续能源,并为适用于煤田溢漏/煤层水的生物修复提供优良策略。此外,微生物群落的命运指标可作为煤矿开采后场地恢复进展的指标。本综述对煤炭环境中的天然微生物对煤炭的生物降解和生物处理进行了全面展望,以确定其生物技术潜力和可能的应用。