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预孵育条件决定了在温和静水压力下发酵罐中的发酵模式和微生物群落结构。

Pre-incubation conditions determine the fermentation pattern and microbial community structure in fermenters at mild hydrostatic pressure.

机构信息

Sanitary Engineering Section, Department of Water Management, Delft University of Technology, Delft, the Netherlands.

Faculty of Bioscience Engineering, Center for Microbial Ecology and Technology, Ghent University, Ghent, Belgium.

出版信息

Biotechnol Bioeng. 2022 Jul;119(7):1792-1807. doi: 10.1002/bit.28085. Epub 2022 Apr 1.

Abstract

Fermentation at elevated hydrostatic pressure is a novel strategy targeting product selectivity. However, the role of inoculum history and cross-resistance, that is, acquired tolerance from incubation under distinctive environmental stress, remains unclear in high-pressure operation. In our here presented work, we studied fermentation and microbial community responses of halotolerant marine sediment inoculum (MSI) and anaerobic digester inoculum (ADI), pre-incubated in serum bottles at different temperatures and subsequently exposed to mild hydrostatic pressure (MHP; < 10 MPa) in stainless steel reactors. Results showed that MHP effects on microbial growth, activity, and community structure were strongly temperature-dependent. At moderate temperature (20°C), biomass yield and fermentation were not limited by MHP; suggesting a cross-resistance effect from incubation temperature and halotolerance. Low temperatures (10°C) and MHP imposed kinetic and bioenergetic limitations, constraining growth and product formation. Fermentation remained favorable in MSI at 28°C and ADI at 37°C, despite reduced biomass yield resulting from maintenance and decay proportionally increasing with temperature. Microbial community structure was modified by temperature during the enrichment, and slight differences observed after MHP-exposure did not compromise functionality. Results showed that the relation incubation temperature-halotolerance proved to be a modifier of microbial responses to MHP and could be potentially exploited in fermentations to modulate product/biomass ratio.

摘要

在升高的静压下发酵是一种针对产物选择性的新策略。然而,在高压操作中,接种物历史和交叉抗性(即在独特的环境压力下培养获得的耐受性)的作用仍不清楚。在我们这里介绍的工作中,我们研究了在不同温度下预孵育的耐盐海洋沉积物接种物(MSI)和厌氧消化器接种物(ADI)的发酵和微生物群落响应,然后在不锈钢反应器中暴露于温和的静水压力(MHP;<10 MPa)下。结果表明,MHP 对微生物生长、活性和群落结构的影响强烈依赖于温度。在中等温度(20°C)下,微生物生长不受 MHP 影响;表明孵育温度和耐盐性的交叉抗性效应。低温(10°C)和 MHP 会产生动力学和生物能量限制,从而限制生长和产物形成。在 28°C 下的 MSI 和 37°C 下的 ADI 中,发酵仍然有利,尽管由于维持而导致生物量产量降低,并且由于温度的比例增加而导致衰减。在富集过程中,温度会改变微生物群落结构,而在暴露于 MHP 后观察到的微小差异并不会影响其功能。结果表明,孵育温度-耐盐性的关系证明是微生物对 MHP 响应的调节剂,并且可以在发酵中潜在地被利用来调节产物/生物量比。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a5d/9325544/5603a5a2667c/BIT-119-1792-g002.jpg

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