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首页> 外文期刊>Marine Environmental Research >Microbial strains isolated from CO_2-venting Kolumbo submarine volcano show enhanced co-tolerance to acidity and antibiotics
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Microbial strains isolated from CO_2-venting Kolumbo submarine volcano show enhanced co-tolerance to acidity and antibiotics

机译:从通入CO_2的科伦坡海底火山中分离出的微生物菌株对酸度和抗生素的耐受性增强

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摘要

As ocean acidification intensifies, there is growing global concern about the impacts that future pH levels are likely to have on marine life and ecosystems. By analogy, a steep decrease of seawater pH with depth is encountered inside the Kolumbo submarine volcano (northeast Santorini) as a result of natural CO2 venting, making this system ideal for ocean acidification research. Here, we investigated whether the increase of acidity towards deeper layers of Kolumbo crater had any effect on relevant phenotypic traits of bacterial isolates. A total of 31 Pseudomonas strains were isolated from both surface- (SSL) and deep-seawater layers (DSL), with the latter presenting a significantly higher acid tolerance. In particular, the DSL strains were able to cope with H+ levels that were 18 times higher. Similarly, the DSL isolates exhibited a significantly higher tolerance than SSL strains against six commonly used antibiotics and As(III). More importantly, a significant positive correlation was revealed between antibiotics and acid tolerance across the entire set of SSL and DSL isolates. Our findings imply that Pseudomonas species with higher resilience to antibiotics could be favored by the prospect of acidifying oceans. Further studies are required to determine if this feature is universal across marine bacteria and to assess potential ecological impacts.
机译:随着海洋酸化的加剧,全球对未来pH值水平可能对海洋生物和生态系统的影响的关注日益增加。以此类推,由于自然的CO2排放,在Kolumbo海底火山(圣托里尼岛东北部)内海水pH值随深度急剧下降,这使得该系统非常适合海洋酸化研究。在这里,我们调查了酸度对科伦伯火山口深层的增加是否对细菌分离株的相关表型性状有任何影响。从表面(SSL)和深海水层(DSL)分离出总共31种假单胞菌菌株,其中后者表现出明显更高的耐酸性。特别是,DSL菌株能够应对高18倍的H +水平。类似地,与SSL菌株相比,DSL菌株对六种常用抗生素和As(III)的耐受性明显更高。更重要的是,在整个SSL和DSL分离物中,抗生素和耐酸性之间显示出显着的正相关。我们的研究结果表明,对海洋具有酸碱作用的假单胞菌对抗生素具有更高的复原力。需要进一步的研究以确定该功能是否在海洋细菌中普遍存在,并评估潜在的生态影响。

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