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混合和膜分离培养合成蓝细菌-酵母共生体揭示了模拟天然蓝藻地衣的代谢串扰。

Mixed and membrane-separated culturing of synthetic cyanobacteria-yeast consortia reveals metabolic cross-talk mimicking natural cyanolichens.

机构信息

Earth and Biological Sciences Directorate, Pacific Northwest National Laboratory, Richland, WA, 99354, USA.

Department of Biological Systems Engineering, Washington State University, Pullman, WA, 99164, USA.

出版信息

Sci Rep. 2024 Oct 25;14(1):25303. doi: 10.1038/s41598-024-74743-4.

Abstract

Metabolite exchange mediates crucial interactions in microbial communities, significantly impacting global carbon and nitrogen cycling. Understanding these chemically-mediated interactions is essential for elucidating natural community functions and developing engineered synthetic communities. This study investigated membrane-separated bioreactors (mBRs) as a novel tool to identify transient metabolites and their producers/consumers in mixed microbial communities. We compared three co-culture methods (direct mixed, 2-chamber mBR, and 3-chamber mBR) to grow a synthetic binary community of the cyanobacterium Synechococcus elongatus PCC 7942 and the fungus Rhodotorula toruloides NBRC 0880, as well as axenic S. elongatus. Despite not being natural lichen constituents, these organisms exhibited interactions resembling those in cyanolichens. S. elongatus fixed CO into sugars as the primary shared metabolite, while R. toruloides secreted various biochemicals, predominantly sugar alcohols, mirroring the metabolite exchange observed in natural lichens. The mBR systems successfully captured metabolite gradients and revealed rapidly consumed compounds, including TCA cycle intermediates and amino acids. Our approach demonstrated that the 2-chamber mBR optimally balanced metabolite exchange and growth dynamics. This study provides insights into cross-species metabolic interactions and presents a valuable tool for investigating and engineering synthetic microbial communities with potential applications in biotechnology and environmental science.

摘要

代谢物交换介导微生物群落中的关键相互作用,对全球碳氮循环有重大影响。理解这些化学介导的相互作用对于阐明自然群落功能和开发工程合成群落至关重要。本研究利用膜分离生物反应器(mBR)作为一种新工具,来鉴定混合微生物群落中的瞬态代谢物及其产生者/消耗者。我们比较了三种共培养方法(直接混合、两室 mBR 和三室 mBR),以生长合成二元群落,其中包括蓝藻 Synechococcus elongatus PCC 7942 和真菌 Rhodotorula toruloides NBRC 0880,以及无菌的 S. elongatus。尽管这些生物不是天然地衣的组成部分,但它们表现出的相互作用类似于蓝藻地衣。S. elongatus 将 CO2 固定为糖,作为主要的共享代谢物,而 R. toruloides 则分泌各种生化物质,主要是糖醇,与天然地衣中观察到的代谢物交换相呼应。mBR 系统成功地捕捉到了代谢物梯度,并揭示了快速消耗的化合物,包括 TCA 循环中间体和氨基酸。我们的方法表明,两室 mBR 最佳地平衡了代谢物交换和生长动态。本研究深入了解了种间代谢相互作用,并提供了一种有价值的工具,用于研究和工程合成微生物群落,具有在生物技术和环境科学中的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cd6/11511929/eb65cc874735/41598_2024_74743_Fig1_HTML.jpg

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