Liao Hengyi, Wang Xuhao, Wang Xin, Zhang Manman, Zhang Yiji, Huang Siqi, Wang Hongyan, Jin Huijuan, Wang Jingjing, Li Xiuying, Yan Jun, Schubert Torsten, Löffler Frank E, Yang Yi
Key Laboratory of Pollution Ecology and Environmental Engineering, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang, Liaoning, China.
University of Chinese Academy of Sciences, Beijing, China.
Front Microbiol. 2024 Dec 24;15:1490849. doi: 10.3389/fmicb.2024.1490849. eCollection 2024.
Organohalide-respiring bacteria (OHRB) play a pivotal role in the transformation of organohalogens in diverse environments. This bibliometric analysis provides a timely overview of OHRB research trends and identifies knowledge gaps. Publication numbers have steadily increased since the process was discovered in 1982, with fluctuations in total citations and average citations per publication. The past decade witnessed a peak in publications, underscoring heightened research activity and extensive collaboration. Thematic analysis identified two primary research foci: mechanistic exploration of OHRB and their interplay with environmental factors. Future research should prioritize elucidating the roles OHRB's play in biogeochemical cycling, utilizing synthetic biology tools for enhanced biotransformation, deciphering OHRB's ecological interactions, unraveling their evolutionary pathways, and investigating dehalogenation capabilities in other microorganisms, including archaea. These research directions promise to advance our understanding of microbially-driven organohalide transformations, microbial ecology, and genetic engineering potential, ultimately informing natural organohalide cycling and environmental management strategies.
有机卤呼吸细菌(OHRB)在不同环境中有机卤化物的转化过程中起着关键作用。这项文献计量分析及时概述了OHRB的研究趋势,并找出了知识空白。自1982年发现该过程以来,出版物数量稳步增加,总引用量和每篇出版物的平均引用量存在波动。过去十年见证了出版物数量的峰值,凸显了研究活动的增强和广泛的合作。主题分析确定了两个主要研究重点:OHRB的机制探索及其与环境因素的相互作用。未来的研究应优先阐明OHRB在生物地球化学循环中的作用,利用合成生物学工具增强生物转化,解读OHRB的生态相互作用,揭示其进化途径,并研究其他微生物(包括古菌)的脱卤能力。这些研究方向有望推进我们对微生物驱动的有机卤化物转化、微生物生态学和基因工程潜力的理解,最终为自然有机卤化物循环和环境管理策略提供信息。