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Characterization of airborne ice-nucleation-active bacteria and bacterial fragments

机译:机载冰核活性细菌和细菌碎片的表征

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Some bacteria have the unique capacity of synthesising ice-nucleation-active (INA) proteins and exposing them at their outer membrane surface. As INA bacteria enter the atmosphere, they may impact the formation of clouds and precipitation. We studied members of airborne bacterial communities for their capacity to catalyse ice formation and we report on the excretion of INA proteins by airborne Pseudomonas sp. We also observed for the first time that INA biological fragments <220 nm were present in precipitation samples (199 and 482 INA fragments per L of precipitation), which confirms the presence of submicron INA biological fragments in the atmosphere. During 14 precipitation events, strains affiliated with the genus Pseudomonas, which are known to carry ina genes, were dominant. A screening for INA properties revealed that similar to 12% of the cultivable bacteria caused ice formation at <=-7 degrees C. They had likely been emitted to the atmosphere from terrestrial surfaces, e.g. by convective transport. We tested the ability of isolated INA strains to produce outer membrane vesicles and found that two isolates could do so. However, only very few INA vesicles were released per INA cell. Thus, the source of the submicron INA proteinaceous particles that we detected in the atmosphere remains to be elucidated. (C) 2015 Elsevier Ltd. All rights reserved.
机译:一些细菌具有合成冰核活性(INA)蛋白并将其暴露在其外膜表面的独特能力。随着INA细菌进入大气层,它们可能会影响云的形成和降水。我们研究了空气传播细菌群落成员催化冰形成的能力,并报告了空气传播的假单胞菌sp分泌INA蛋白的情况。我们还首次观察到降水样品中存在<220 nm的INA生物片段(每L沉淀199和482个INA片段),这证实了大气中亚微米INA生物片段的存在。在14次降水事件中,与Pseudomonas属相关的菌株(已知携带ina基因)占主导地位。对INA特性的筛选显示,大约12%的可培养细菌会在<=-7摄氏度下导致冰形成。它们很可能是从陆地表面排放到大气中的,例如通过对流运输。我们测试了分离的INA菌株产生外膜囊泡的能力,发现两个分离株可以做到。但是,每个INA细胞只有很少的INA囊泡被释放。因此,我们在大气中检测到的亚微米INA蛋白粒子的来源仍有待阐明。 (C)2015 Elsevier Ltd.保留所有权利。

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