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1.
Braz. j. microbiol ; 47(2): 345-351, Apr.-June 2016. tab, graf
Article in English | LILACS | ID: lil-780844

ABSTRACT

Abstract The development of showerhead biofilms exposes the user to repeated contact with potentially pathogenic microbes, yet we know relatively little about the content of these aggregates. The aim of the present study was to examine the microbial content of tape-like films found protruding from a domestic showerhead. Culturing showed that the films were dominated by aerobic α- and β-proteobacteria. Three isolates made up almost the entire plate count. These were a Brevundimonas species, a metalophilic Cupriavidus species and a thermophile, Geobacillus species. Furthermore, it was shown that the Cupriavidus isolate alone had a high capacity for biofilm formation and thus might be the initiator of biofilm production. A clone library revealed the same general composition. However, half of the 70 clones analyzed could not be assigned to a particular bacterial phylum and of these 29 differed from one another by only 1–2 base pairs, indicating a single species. Thus both the culture dependent and culture independent characterizations suggest a simple yet novel composition. The work is important as the biofilm is fundamentally different in form (tape-like) and content from that of all previously reported ones, where variously Mycobacterium, Methylobacterium and Xanthomonas species have dominated, and extremophiles were not reported.


Subject(s)
Biofilms , Proteobacteria/isolation & purification , Proteobacteria/physiology , Staining and Labeling , DNA, Bacterial/genetics , RNA, Ribosomal, 16S/genetics , Proteobacteria/genetics , Proteobacteria/chemistry
2.
Biol. Res ; 47: 1-6, 2014. graf, tab
Article in English | LILACS | ID: biblio-950763

ABSTRACT

BACKGROUND: Marine invertebrate-associated microbial communities are interesting examples of complex symbiotic systems and are a potential source of biotechnological products. RESULTS: In this work, pyrosequencing-based assessment from bacterial community structures of sediments, two sponges, and one zoanthid collected in the Mexican Caribbean was performed. The results suggest that the bacterial diversity at the species level is higher in the sediments than in the animal samples. Analysis of bacterial communities' structure showed that about two thirds of the bacterial diversity in all the samples belongs to the phyla Acidobacteria and Proteobacteria. The genus Acidobacteriumappears to dominate the bacterial community in all the samples, reaching almost 80% in the sponge Hyrtios. CONCLUSIONS: Our evidence suggests that the sympatric location of these benthonic species may lead to common bacterial structure features among their bacterial communities. The results may serve as a first insight to formulate hypotheses that lead to more extensive studies of sessile marine organisms' microbiomes from the Mexican Caribbean.


Subject(s)
Animals , Porifera/microbiology , Anthozoa/microbiology , Acidobacteria/physiology , Sympatry , Microbiota/physiology , Phylogeny , Porifera/classification , Symbiosis/physiology , RNA, Ribosomal, 16S/analysis , Caribbean Region , Geologic Sediments/microbiology , Proteobacteria/classification , Proteobacteria/physiology , Anthozoa/classification , Biodiversity , Mexico
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