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微切片结合微阵列分析评估 Geobacter sulfurreducens 生物膜的空间代谢状态。

Microtoming coupled to microarray analysis to evaluate the spatial metabolic status of Geobacter sulfurreducens biofilms.

机构信息

Department of Microbiology, University of Massachusetts, Amherst, MA, USA.

出版信息

ISME J. 2010 Apr;4(4):509-19. doi: 10.1038/ismej.2009.137. Epub 2009 Dec 24.

Abstract

Further insight into the metabolic status of cells within anode biofilms is essential for understanding the functioning of microbial fuel cells and developing strategies to optimize their power output. Cells throughout anode biofilms of Geobacter sulfurreducens reduced the metabolic stains: 5-cyano-2,3-ditolyl tetrazolium chloride and Redox Green, suggesting metabolic activity throughout the biofilm. To compare the metabolic status of cells growing close to the anode versus cells in the outer portion of the anode biofilm, anode biofilms were encased in resin and sectioned into inner (0-20 microm from anode surface) and outer (30-60 microm) fractions. Transcriptional analysis revealed that, at a twofold threshold, 146 genes had significant (P<0.05) differences in transcript abundance between the inner and outer biofilm sections. Only 1 gene, GSU0093, a hypothetical ATP-binding cassette transporter, had significantly higher transcript abundances in the outer biofilm. Genes with lower transcript abundance in the outer biofilm included genes for ribosomal proteins and NADH dehydrogenase, suggesting lower metabolic rates. However, differences in transcript abundance were relatively low (<threefold) and the expression of genes for the tricarboxylic acid cycle enzymes was not significantly lower. Lower expression of genes involved in stress responses in the outer biofilm may reflect the development of low pH near the surface of the anode. The results of this study suggest that cells throughout the biofilm are metabolically active and can potentially contribute to current production. The microtoming/microarray strategy described here may be useful for evaluating gene expression with depth in a diversity of microbial biofilms.

摘要

进一步了解阳极生物膜内细胞的代谢状态对于理解微生物燃料电池的工作原理和开发优化其功率输出的策略至关重要。在 Geobacter sulfurreducens 的阳极生物膜中,细胞还原代谢染色剂:5-氰基-2,3-二苯基四氮唑氯化物和 Redox Green,表明整个生物膜都具有代谢活性。为了比较靠近阳极的细胞和阳极生物膜外部细胞的代谢状态,将阳极生物膜用树脂包裹并切成内部(距阳极表面 0-20 微米)和外部(30-60 微米)部分。转录分析显示,在两倍阈值下,146 个基因的转录丰度在内膜和外膜部分之间有显著差异(P<0.05)。只有一个基因,GSU0093,一个假设的 ATP 结合盒转运蛋白,在外膜中的转录丰度显著更高。在外膜中转录丰度较低的基因包括核糖体蛋白和 NADH 脱氢酶基因,表明代谢率较低。然而,外膜中基因转录丰度的差异相对较小(<三倍),三羧酸循环酶的基因表达并没有显著降低。外膜中参与应激反应的基因表达较低可能反映了阳极表面附近 pH 值的降低。这项研究的结果表明,生物膜中的细胞具有代谢活性,并且可能有助于电流产生。这里描述的微切割/微阵列策略可能有助于评估不同微生物生物膜中深度的基因表达。

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