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Diversity, ecological distribution and biotechnological potential of Actinobacteria inhabiting seamounts and non-seamounts in the Tyrrhenian Sea. | LitMetric

Diversity, ecological distribution and biotechnological potential of Actinobacteria inhabiting seamounts and non-seamounts in the Tyrrhenian Sea.

Microbiol Res

Laboratory of Microorganisms and Active Biomolecules, Faculty of Sciences of Tunis, University of Tunis El Manar, 2092 Tunis, Tunisia; Univ. Manouba, ISBST, BVBGR-LR11ES31, Biotechpole of Sidi Thabet, 2020 Ariana, Tunisia. Electronic address:

Published: March 2017

AI Article Synopsis

  • * Phylogenetic analysis revealed significant diversity, grouping the strains into 11 genera, with Janibacter limosus being the most prevalent, particularly in seamounts, indicating it may be an endemic species of that ecosystem.
  • * Further genetic analysis of J. limosus showed high microdiversity and highlighted its potential for biosurfactant activity, suggesting it plays a crucial role in the low-nutrient environments of seamounts.

Article Abstract

In the present study, the ecological distribution of marine Actinobacteria isolated from seamount and non-seamount stations in the Tyrrhenian Sea was investigated. A collection of 110 isolates was analyzed by Automated Ribosomal Intergenic Spacer Analysis (ARISA) and 16S rRNA gene sequencing of representatives for each ARISA haplotype (n=49). Phylogenetic analysis of 16S rRNA sequences showed a wide diversity of marine isolates and clustered the strains into 11 different genera, Janibacter, Rhodococcus, Arthrobacter, Kocuria, Dietzia, Curtobacterium, Micrococcus, Citricoccus, Brevibacterium, Brachybacterium and Nocardioides. Interestingly, Janibacter limosus was the most encountered species particularly in seamounts stations, suggesting that it represents an endemic species of this particular ecosystem. The application of BOX-PCR fingerprinting on J. limosus sub-collection (n=22), allowed their separation into seven distinct BOX-genotypes suggesting a high intraspecific microdiversity among the collection. Furthermore, by screening the biotechnological potential of selected actinobacterial strains, J. limosus was shown to exhibit the most important biosurfactant activity. Our overall data indicates that Janibacter is a major and active component of seamounts in the Tyrrhenian Sea adapted to low nutrient ecological niche.

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Source
http://dx.doi.org/10.1016/j.micres.2016.03.006DOI Listing

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