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在低成本厌氧平行生物反应器平台AneVO中探索C1底物共进料。

Exploring C1 substrate cofeeding in with AneVO, a low-cost anaerobic parallel bioreactor platform.

作者信息

Hoyt Kathryn O, Zhou Guanyu, Gasparrini William, Sliter Patrick J, Hart Daniel J, Khalil Ahmad S, Woolston Benjamin M

机构信息

Department of Chemical Engineering, Northeastern University.

Biological Design Center, Boston University, Boston, MA, USA.

出版信息

bioRxiv. 2025 May 2:2025.05.02.651948. doi: 10.1101/2025.05.02.651948.

Abstract

Acetogenic bacteria have emerged as attractive biocatalysts for renewable biochemical production, using the highly efficient Wood-Ljungdahl pathway to convert a range of sustainable single-carbon (C1) feedstocks. The major challenge is their energy-constrained anaerobic lifestyle, which results in slow growth and limits the product spectrum. To overcome this limitation, here we investigate substrate co-metabolism in the acetogen , cofeeding either carbon monoxide (CO) or glucose alongside the primary C1 substrate (methanol or formate). To increase experimental throughput, we developed AneVO, a parallel mini bioreactor system based on eVOLVER that enables benchtop anaerobic batch and fed-batch cultivation, along with continuous delivery of anaerobic gas blends. With all substrate pairs tested, grew faster and reached 52-254% higher cell densities with cofeeding, while maintaining or improving the volumetric uptake rate of the main C1 substrate. Product formation also improved, with an increase in volumetric acetate productivity from glucose cofeeding of 2.2-fold with formate and 2.4-fold with methanol, and 3-fold from CO cofeeding with methanol. Together these results validate AneVO as a low-cost platform for convenient benchtop cultivation of strict anaerobic microbes in multiple growth modes, and present a strategy for enhancing C1 bioconversion rates in , an emerging model acetogen.

摘要

产乙酸细菌已成为可再生生物化学产品生产中颇具吸引力的生物催化剂,它们利用高效的伍德-Ljungdahl途径来转化一系列可持续的单碳(C1)原料。主要挑战在于其能量受限的厌氧生活方式,这导致生长缓慢并限制了产品范围。为克服这一限制,我们在此研究产乙酸菌中的底物共代谢,在主要C1底物(甲醇或甲酸盐)之外同时补料一氧化碳(CO)或葡萄糖。为提高实验通量,我们开发了AneVO,这是一种基于eVOLVER的平行微型生物反应器系统,可实现台式厌氧分批和补料分批培养,以及连续输送厌氧气体混合物。在所有测试的底物组合中,共补料时生长更快,细胞密度提高了52 - 254%,同时保持或提高了主要C1底物的体积摄取率。产物形成也有所改善,与甲酸盐共补料葡萄糖时乙酸体积产率提高了2.2倍,与甲醇共补料时提高了2.4倍,与甲醇共补料CO时提高了3倍。这些结果共同验证了AneVO作为一种低成本平台,可方便地在多种生长模式下对严格厌氧微生物进行台式培养,并提出了一种提高新兴模式产乙酸菌中C1生物转化率的策略。

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