在不断变化的环境中实现可持续性的土壤微生物群落工程。

Soil microbiome engineering for sustainability in a changing environment.

作者信息

Jansson Janet K, McClure Ryan, Egbert Robert G

机构信息

Earth and Biological Sciences Directorate, Pacific Northwest National Laboratory, Richland, WA, USA.

出版信息

Nat Biotechnol. 2023 Dec;41(12):1716-1728. doi: 10.1038/s41587-023-01932-3. Epub 2023 Oct 30.

Abstract

Recent advances in microbial ecology and synthetic biology have the potential to mitigate damage caused by anthropogenic activities that are deleteriously impacting Earth's soil ecosystems. Here, we discuss challenges and opportunities for harnessing natural and synthetic soil microbial communities, focusing on plant growth promotion under different scenarios. We explore current needs for microbial solutions in soil ecosystems, how these solutions are being developed and applied, and the potential for new biotechnology breakthroughs to tailor and target microbial products for specific applications. We highlight several scientific and technological advances in soil microbiome engineering, including characterization of microbes that impact soil ecosystems, directing how microbes assemble to interact in soil environments, and the developing suite of gene-engineering approaches. This Review underscores the need for an interdisciplinary approach to understand the composition, dynamics and deployment of beneficial soil microbiomes to drive efforts to mitigate or reverse environmental damage by restoring and protecting healthy soil ecosystems.

摘要

微生物生态学和合成生物学的最新进展有潜力减轻人为活动对地球土壤生态系统造成的有害影响。在此,我们讨论利用天然和合成土壤微生物群落所面临的挑战与机遇,重点关注不同场景下的植物生长促进作用。我们探讨了土壤生态系统中微生物解决方案的当前需求、这些解决方案是如何开发和应用的,以及新生物技术突破为特定应用定制和靶向微生物产品的潜力。我们强调了土壤微生物组工程中的几项科学和技术进展,包括对影响土壤生态系统的微生物的表征、指导微生物在土壤环境中如何组装以相互作用,以及不断发展的一系列基因工程方法。本综述强调需要采用跨学科方法来理解有益土壤微生物组的组成、动态和部署,以推动通过恢复和保护健康土壤生态系统来减轻或扭转环境破坏的努力。

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