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在采用 MixAlco™生物转化平台运行的半工业规模设施中微生物群落的组成和动态变化。

Microbial community composition and dynamics in a semi-industrial-scale facility operating under the MixAlco™ bioconversion platform.

机构信息

Department of Soil and Crop Sciences, Texas A&M University, College Station, TX 77843-2474, USA.

出版信息

J Appl Microbiol. 2011 Feb;110(2):587-96. doi: 10.1111/j.1365-2672.2010.04919.x. Epub 2011 Jan 4.

Abstract

AIMS

To monitor microbial community dynamics in a semi-industrial-scale lignocellulosic biofuel reactor system and to improve our understanding of the microbial communities involved in the MixAlco™ biomass conversion process.

METHODS AND RESULTS

Reactor microbial communities were characterized at six time points over the course of an 80-day, mesophilic, semi-industrial-scale fermentation using community qPCR and 16S rRNA tag-pyrosequencing. We found the communities to be dynamic, bacterially dominated consortia capable of changing quickly in response to reactor conditions. Clostridia- and Bacteroidetes-like organisms dominated the reactor communities, but ultimately the communities established consortia containing complementary functional capacities for the degradation of lignocellulosic materials. Eighteen operational taxonomic units were found to share strong correlations with reactor acid concentration and may represent taxa integral to fermentor performance.

CONCLUSIONS

The results of this study indicate that the emergence of complementary functional classes within the fermentor consortia may be a trait that is consistent across scales, and they suggest that there may be flexibility with respect to the specific identities of the organisms involved in the fermentor's degradation and fermentation processes.

SIGNIFICANCE AND IMPACT OF THE STUDY

This study provides new information regarding the composition, dynamics and potential flexibility of the microbial communities associated with the MixAlco™ process and is likely to inform the improvement of this and other applications that employ mixed microbial communities.

摘要

目的

监测半工业规模木质纤维素生物燃料反应堆系统中的微生物群落动态,增进我们对参与 MixAlco™生物量转化过程的微生物群落的理解。

方法和结果

在 80 天的中温半工业规模发酵过程中,我们在六个时间点对反应堆微生物群落进行了特征描述,使用了群落 qPCR 和 16S rRNA 标签焦磷酸测序。我们发现,这些群落是动态的、以细菌为主的共生体,能够迅速响应反应堆条件而变化。拟杆菌门和厚壁菌门的类似物主宰着反应堆群落,但最终群落建立了包含互补功能能力的共生体,用于木质纤维素材料的降解。发现有 18 个操作分类单元与反应堆酸浓度有很强的相关性,它们可能代表与发酵罐性能密切相关的分类单元。

结论

这项研究的结果表明,在发酵罐共生体中出现互补功能类群可能是一种跨尺度的特征,这表明在参与发酵罐降解和发酵过程的生物体的具体身份方面可能具有灵活性。

这项研究提供了关于与 MixAlco™工艺相关的微生物群落组成、动态和潜在灵活性的新信息,这可能有助于改进该工艺和其他采用混合微生物群落的应用。

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