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对二价阳离子在嗜铁素还原希瓦氏菌菌膜形成中的作用进行研究,揭示了不溶性铁的独特影响。

Investigation of roles of divalent cations in Shewanella oneidensis pellicle formation reveals unique impacts of insoluble iron.

作者信息

Yuan Jie, Chen Yiwen, Zhou Guangqi, Chen Haijiang, Gao Haichun

机构信息

Institute of Microbiology and College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, China.

出版信息

Biochim Biophys Acta. 2013 Nov;1830(11):5248-57. doi: 10.1016/j.bbagen.2013.07.023. Epub 2013 Jul 30.

Abstract

BACKGROUND

Bacteria adopt a variety of lifestyles in their natural habitats and can alternate among different lifestyles in response to environmental changes. At high cell densities, bacteria can form extracellular matrix encased cell population on submerged tangible surfaces (biofilms), or at the air-liquid interface (pellicles). Compared to biofilm, pellicle lifestyle allows for better oxygen access, but is metabolically more costly to maintain. Further understanding of pellicle formation and environmental cues that influence cellular choices between these lifestyles will definitely improve our appreciation of bacterial interaction with their environments.

METHODS

Shewanella oneidensis cells were cultured in 24-well plates with supplementation of varied divalent cations, and pellicles formed under such conditions were evaluated. Mutants defective in respiration of divalent cations were used to further characterize and confirm unique impacts of iron.

RESULTS AND CONCLUSIONS

Small amount of Fe(2+) was essential for pellicle formation, but presence of over-abundant iron (0.3mM Fe(2+) or Fe(3+)) led to pellicle disassociation without impairing growth. Such impacts were found due to S. oneidensis-mediated formation of insoluble alternative electron acceptors (i.e., Fe3O4) under physiologically relevant conditions. Furthermore, we demonstrated that cells preferred a lifestyle of forming biofilm and respiring on such insoluble electron acceptors under tested conditions, even to living in pellicles.

GENERAL SIGNIFICANCE

Our finding suggests that bacterial lifestyle choice involves balanced evaluation of multiple aspects of environmental conditions, and yet-to-be-characterized signaling mechanism is very likely underlying such processes.

摘要

背景

细菌在其自然栖息地采用多种生活方式,并可根据环境变化在不同生活方式之间转换。在高细胞密度下,细菌可在浸没的有形表面(生物膜)或气液界面(菌膜)形成被细胞外基质包裹的细胞群体。与生物膜相比,菌膜生活方式能更好地获取氧气,但维持代谢成本更高。进一步了解菌膜形成以及影响这些生活方式之间细胞选择的环境线索,肯定会增进我们对细菌与环境相互作用的认识。

方法

将嗜铁素还原希瓦氏菌细胞接种于补充了不同二价阳离子的24孔板中培养,并对在此条件下形成的菌膜进行评估。利用二价阳离子呼吸缺陷型突变体进一步表征并确认铁的独特影响。

结果与结论

少量Fe(2+)对菌膜形成至关重要,但过量铁(0.3 mM Fe(2+)或Fe(3+))的存在会导致菌膜解离,而不影响生长。发现这种影响是由于嗜铁素还原希瓦氏菌在生理相关条件下介导形成不溶性替代电子受体(即Fe3O4)所致。此外,我们证明,在测试条件下,细胞更倾向于形成生物膜并在这种不溶性电子受体上呼吸的生活方式,甚至超过生活在菌膜中的方式。

普遍意义

我们的发现表明,细菌生活方式的选择涉及对环境条件多个方面的平衡评估,而且很可能有尚未表征的信号传导机制作为这些过程的基础。

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