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Protein expression in the obligate hydrocarbon‐degrading psychrophile Oleispira antarctica RB‐8 during alkane degradation and cold tolerance

机译:烷烃降解和耐寒性期间专性烃降解嗜冷菌嗜油螺南极菌RB-8中的蛋白质表达

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摘要

In cold marine environments, the obligate hydrocarbon‐degrading psychrophile RB‐8, which utilizes aliphatic alkanes almost exclusively as substrates, dominates microbial communities following oil spills. In this study, LC–MS/MS shotgun proteomics was used to identify changes in the proteome induced during growth on ‐alkanes and in cold temperatures. Specifically, proteins with significantly higher relative abundance during growth on tetradecane ( ‐C ) at 16°C and 4°C have been quantified. During growth on ‐C , expressed a complete pathway for the terminal oxidation of ‐alkanes including two alkane monooxygenases, two alcohol dehydrogenases, two aldehyde dehydrogenases, a fatty‐acid‐CoA ligase, a fatty acid desaturase and associated oxidoreductases. Increased biosynthesis of these proteins ranged from 3‐ to 21‐fold compared with growth on a non‐hydrocarbon control. This study also highlights mechanisms may utilize to provide it with ecological competitiveness at low temperatures. This was evidenced by an increase in spectral counts for proteins involved in flagella structure/output to overcome higher viscosity, flagella rotation to accumulate cells and proline metabolism to counteract oxidative stress, during growth at 4°C compared with 16°C. Such species‐specific understanding of the physiology during hydrocarbon degradation can be important for parameterizing models that predict the fate of marine oil spills.
机译:在寒冷的海洋环境中,专一的可降解碳氢化合物的嗜冷菌RB-8(几乎只使用脂肪族烷烃作为底物)在溢油之后占据了微生物群落的主导地位。在这项研究中,使用LC-MS / MS shot弹枪蛋白质组学来鉴定在烷烃生长和低温下诱导的蛋白质组变化。具体来说,已量化了在16°C和4°C的十四烷(-C)上生长期间具有相对较高丰度的蛋白质。在‐C上生长期间,表达了一个完整的末端烷烃氧化途径,包括两个烷烃单加氧酶,两个醇脱氢酶,两个醛脱氢酶,一个脂肪酸CoA连接酶,一个脂肪酸脱氢酶和相关的氧化还原酶。与非烃类对照相比,这些蛋白质的生物合成增加了3到21倍。这项研究还强调了在低温下可以利用其提供生态竞争力的机制。与16°C相比,在4°C的生长过程中,鞭毛结构/输出中涉及的蛋白质的光谱计数增加可以克服较高的粘度,鞭毛旋转以积累细胞,脯氨酸代谢以抵消氧化应激,这证明了这一点。这种对烃降解过程中的物种特定生理的了解对于参数化预测海洋溢油命运的模型非常重要。

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