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从不同水系统中分离和鉴定具有广谱共聚集特性的细菌,以用于生物强化的潜在应用。

Isolation and characterization of broad spectrum coaggregating bacteria from different water systems for potential use in bioaugmentation.

作者信息

Cheng Zhongqin, Meng Xiangxun, Wang Haichao, Chen Mei, Li Mengying

机构信息

School of Biology and Basic Medical Sciences, Soochow University, Suzhou, PR China.

出版信息

PLoS One. 2014 Apr 15;9(4):e94220. doi: 10.1371/journal.pone.0094220. eCollection 2014.

Abstract

The bridging bacteria with broad-spectrum coaggregation ability play an important role during multispecies-biofilm development. In this study, through a visual and semi-quantitative assay, twenty-two bacterial strains with aggregation ability were obtained from 8 different water environments, and these strains were assigned to 7 genera according to their 16S rDNA and they were Aeromonas, Bacillus, Comamonas, Exiguobacterium, Pseudomonas, Shewanella and Comamonas. Furthermore, all possible 231 pairwise combinations among these 22 strains were explored for coaggregation ability by spectrophotometric assay. Among all these strains, it was found that Bacillus cereus G5 and Bacillus megaterium T1 coaggregated with themajority of assayed other strains, 90.5% (19 of 21 strains) and 76.2% respectively (17 of 21 strains) at a higher coaggregation rates (A.I. greater than 50%), indicating they have a broad-spectrum coaggregation property. The images of coaggregates also confirmed the coexistence of G5 and T1 with their partner strains. Biofilm biomass development of G5 cocultured with each of its partner strains were further evaluateded. The results showed that 15 of 21 strains, when paired with G5, developed greater biofilm biomass than the monocultures. Furthermore, the images from both fluorescence microscopy and scanning electron microscopy (SEM) demonstrated that G5 and A3-GFP (a 3,5-dinitrobenzoic acid-degrading strain, staining with gfp),could develop a typical spatial structure of dual-species biofilm when cocultured. These results suggested that bridging-bacteria with a broad spectrum coaggregating ability, such as G5,could mediate the integration of exogenous degrading bacteria into biofilms and contribute to the bioaugmentation treatment.

摘要

具有广谱共聚集能力的桥梁细菌在多物种生物膜形成过程中发挥着重要作用。在本研究中,通过视觉和半定量分析,从8个不同的水环境中获得了22株具有聚集能力的细菌菌株,根据其16S rDNA将这些菌株归为7个属,分别是气单胞菌属、芽孢杆菌属、丛毛单胞菌属、嗜冷栖芽孢杆菌属、假单胞菌属、希瓦氏菌属和丛毛单胞菌属。此外,通过分光光度法分析了这22株菌株之间所有可能的231对组合的共聚集能力。在所有这些菌株中,发现蜡样芽孢杆菌G5和巨大芽孢杆菌T1与大多数被测其他菌株共聚集,共聚集率较高(聚集指数大于50%),分别为90.5%(21株中的19株)和76.2%(21株中的17株),表明它们具有广谱共聚集特性。共聚集物的图像也证实了G5和T1与其配对菌株的共存。进一步评估了G5与其每个配对菌株共培养时生物膜生物量的发展。结果表明,21株菌株中有15株与G5配对时,形成的生物膜生物量比单培养时更大。此外,荧光显微镜和扫描电子显微镜(SEM)的图像表明,G5和A3-GFP(一株3,5-二硝基苯甲酸降解菌株,用gfp染色)共培养时可以形成典型的双物种生物膜空间结构。这些结果表明,具有广谱共聚集能力的桥梁细菌,如G5,可以介导外源降解细菌融入生物膜,并有助于生物强化处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c175/3988075/73b0a843bd7c/pone.0094220.g001.jpg

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