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温度对烷烃生长过程中SP17形态和生物膜结构的影响。

Impact of temperature on SP17 morphology and biofilm structure during growth on alkanes.

作者信息

Branchu Priscilla, Canette Alexis, Medina Fernandez Sara, Mounier Julie, Meylheuc Thierry, Briandet Romain, Grimaud Régis, Naïtali Murielle

机构信息

Micalis Institute, INRA, AgroParisTech, Université Paris-Saclay, 78350 Jouy-en-Josas, France.

Present address: IRSD, Université de Toulouse, INSERM, INRA, ENVT, Toulouse, France.

出版信息

Microbiology (Reading). 2017 May;163(5):669-677. doi: 10.1099/mic.0.000466.

Abstract

Alkanes are widespread pollutants found in soil, freshwater and marine environments. () strain SP17 is a marine bacterium able to use many hydrophobic organic compounds, including alkanes, through the production of biofilms that allow their poor solubility to be overcome. This study pointed out that temperature is an environmental factor that strongly affects the biofilm formation and morphology of on the model alkanes, hexadecane and paraffin. We showed that biofilm formation and accumulation of intracytoplasmic inclusions are higher on solid alkanes (hexadecane at 10 °C and paraffin at 10 °C and 30 °C) than on liquid alkane (hexadecane at 30 °C) or soluble substrate (lactate at both temperatures). We also found that produces more extracellular polymeric substances at 30 °C than at 10 °C on alkanes and none on lactate. We observed that bacterial length is significantly higher at 10 °C than at 30 °C on lactate and hexadecane. On paraffin, at 30 °C, the cell morphology is markedly altered by large rounded or irregularly shaped cytoplasmic inclusions. Altogether, the results showed that is able to adapt and use alkanes as a carbon source, even at low temperature.

摘要

烷烃是在土壤、淡水和海洋环境中广泛存在的污染物。()菌株SP17是一种海洋细菌,能够通过产生生物膜来利用包括烷烃在内的许多疏水性有机化合物,从而克服其溶解性差的问题。本研究指出,温度是一个强烈影响(该菌株)在十六烷和石蜡等模型烷烃上生物膜形成和形态的环境因素。我们发现,在固体烷烃(10°C的十六烷以及10°C和30°C的石蜡)上,(该菌株的)生物膜形成和胞质内含物的积累比在液体烷烃(30°C的十六烷)或可溶性底物(两种温度下的乳酸盐)上更高。我们还发现,(该菌株)在30°C时在烷烃上产生的细胞外聚合物比在10°C时更多,而在乳酸盐上则不产生。我们观察到,在乳酸盐和十六烷上,10°C时细菌长度明显高于30°C时。在石蜡上,30°C时,细胞形态因大的圆形或不规则形状的胞质内含物而明显改变。总之,结果表明(该菌株)即使在低温下也能够适应并利用烷烃作为碳源。

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