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插入序列(IS)元件诱导的奥奈达希瓦氏菌 MR-1 生物膜形成能力和电活性下降。

Deteriorated biofilm-forming capacity and electroactivity of Shewanella oneidnsis MR-1 induced by insertion sequence (IS) elements.

机构信息

School of Life Sciences, University of Science and Technology of China, Hefei, 230026, China.

CAS Key Laboratory of Urban Pollutant Conversion, Department of Applied Chemistry, University of Science and Technology of China, Hefei, 230026, China.

出版信息

Biosens Bioelectron. 2020 May 15;156:112136. doi: 10.1016/j.bios.2020.112136. Epub 2020 Mar 9.

Abstract

Shewanella oneidensis MR-1, a model species of exoelectrogenic bacteria (EEB), has been widely applied in bioelectrochemical systems. Biofilms of EEB grown on electrodes are essential in governing the current output and power density of bioelectrochemical systems. The MR-1 genome is exceptionally dynamic due to the existence of a large number of insertion sequence (IS) elements. However, to date, the impacts of IS elements on the biofilm-forming capacity of EEB and performance of bioelectrochemical systems remain unrevealed. Herein, we isolated a non-motile mutant (NMM) with biofilm-deficient phenotype from MR-1. We found that the insertion of an ISSod2 element into the flrA (encoding the master regulator for flagella synthesis and assembly) of MR-1 resulted in the non-motile and biofilm-deficient phenotypes in NMM cells. Notably, such a variant was readily confused with the wild-type strain because there were no obvious differences in growth rates and colonial morphologies between the two strains. However, the reduced biofilm formation on the electrodes and the deteriorated performances of bioelectrochemical systems and Cr(VI) immobilization for the strain NMM were observed. Given the wide distribution of IS elements in EEB, appropriate cultivation and preservation conditions should be adopted to reduce the likelihood that IS elements-mediated mutation occurs in EEB. These findings reveal the negative impacts of IS elements on the biofilm-forming capacity of EEB and performance of bioelectrochemical systems and suggest that great attention should be given to the actual physiological states of EEB before their applications.

摘要

希瓦氏菌属(Shewanella oneidensis)MR-1 是一种典型的产电细菌(EEB),已被广泛应用于生物电化学系统。在电极上生长的 EEB 生物膜对于控制生物电化学系统的电流输出和功率密度至关重要。由于存在大量插入序列(IS)元件,MR-1 基因组具有极高的动态性。然而,迄今为止,IS 元件对 EEB 生物膜形成能力和生物电化学系统性能的影响仍未被揭示。在此,我们从 MR-1 中分离出一个具有生物膜缺陷表型的非运动突变体(NMM)。我们发现,IS-Sod2 元件插入 MR-1 的 flrA(编码鞭毛合成和组装的主调控因子)中,导致 NMM 细胞失去运动性和生物膜缺陷表型。值得注意的是,这种变体很容易与野生型菌株混淆,因为这两株菌的生长速率和菌落形态没有明显差异。然而,我们观察到 NMM 菌株在电极上的生物膜形成减少,生物电化学系统的性能和 Cr(VI)固定化能力恶化。鉴于 IS 元件在 EEB 中的广泛分布,应采用适当的培养和保存条件,以降低 EEB 中 IS 元件介导的突变发生的可能性。这些发现揭示了 IS 元件对 EEB 生物膜形成能力和生物电化学系统性能的负面影响,并表明在应用 EEB 之前,应高度关注其实际生理状态。

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