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理解微生物生态学以恢复退化的生态系统。

Toward Understanding Microbial Ecology to Restore a Degraded Ecosystem.

机构信息

School of Resources and Environmental Engineering, Anhui University, Hefei 230039, China.

Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences, Chongqing 400714, China.

出版信息

Int J Environ Res Public Health. 2023 Mar 6;20(5):4647. doi: 10.3390/ijerph20054647.

Abstract

The microbial community plays an important role in maintaining human health, addressing climate change, maintaining environmental quality, etc. High-throughput sequencing leads to the discovery and identification of more microbial community composition and function in diverse ecosystems. Microbiome therapeutics such as fecal microbiota transplantation for human health and bioaugmentation for activated sludge restoration have drawn great attention. However, microbiome therapeutics cannot secure the success of microbiome transplantation. This paper begins with a view on fecal microbiota transplantation and bioaugmentation and is followed by a parallel analysis of these two microbial therapeutic strategies. Accordingly, the microbial ecology mechanisms behind them were discussed. Finally, future research on microbiota transplantation was proposed. Successful application of both microbial therapeutics for human disease and bioremediation for contaminated environments relies on a better understanding of the microbial "entangled bank" and microbial ecology of these environments.

摘要

微生物群落对于维持人类健康、应对气候变化、保持环境质量等方面都具有重要作用。高通量测序技术的发展促进了在不同生态系统中发现和鉴定更多的微生物群落组成和功能。微生物组治疗方法,如粪便微生物移植用于人类健康和生物增强用于活性污泥修复,已经引起了广泛关注。然而,微生物组治疗方法并不能确保微生物移植的成功。本文首先从粪便微生物移植和生物增强的角度出发,对这两种微生物治疗策略进行了平行分析。相应地,讨论了它们背后的微生物生态机制。最后,提出了对微生物组移植的未来研究方向。这两种微生物治疗方法在人类疾病和污染环境的生物修复中的成功应用都依赖于对微生物“交错区”和这些环境的微生物生态学的更好理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c312/10001736/20a212c8f7a2/ijerph-20-04647-g001.jpg

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