Draft Genome Sequences of Three Bacillus Species from South African Marine Sponges

The rise in antibiotic-resistant bacteria has spurred efforts to identify novel compounds with antimicrobial activity. This brief report describes the genome sequence of three Bacillus species isolates from South African marine sponges, which produce compounds with antimicrobial activity. A search f...

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Published inGenome announcements (Washington, DC) Vol. 4; no. 2
Main Authors van Zyl, Leonardo Joaquim, Matobole, Relebohile, Augustin Nsole Biteghe, Fleury, Klein, Timothy, Kirby, Bronwyn, Trindade, Marla
Format Journal Article
LanguageEnglish
Published United States American Society for Microbiology 07.04.2016
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ISSN2169-8287
2169-8287
2576-098X
DOI10.1128/genomeA.00143-16

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Abstract The rise in antibiotic-resistant bacteria has spurred efforts to identify novel compounds with antimicrobial activity. This brief report describes the genome sequence of three Bacillus species isolates from South African marine sponges, which produce compounds with antimicrobial activity. A search for secondary metabolite clusters revealed several secondary metabolite pathways in these genomes, which may hold promise as novel antibiotics.
AbstractList The rise in antibiotic-resistant bacteria has spurred efforts to identify novel compounds with antimicrobial activity. This brief report describes the genome sequence of three Bacillus species isolates from South African marine sponges, which produce compounds with antimicrobial activity. A search for secondary metabolite clusters revealed several secondary metabolite pathways in these genomes, which may hold promise as novel antibiotics.
The rise in antibiotic-resistant bacteria has spurred efforts to identify novel compounds with antimicrobial activity. This brief report describes the genome sequence of threeBacillusspecies isolates from South African marine sponges, which produce compounds with antimicrobial activity. A search for secondary metabolite clusters revealed several secondary metabolite pathways in these genomes, which may hold promise as novel antibiotics.
The rise in antibiotic-resistant bacteria has spurred efforts to identify novel compounds with antimicrobial activity. This brief report describes the genome sequence of three Bacillus species isolates from South African marine sponges, which produce compounds with antimicrobial activity. A search for secondary metabolite clusters revealed several secondary metabolite pathways in these genomes, which may hold promise as novel antibiotics.
Author Augustin Nsole Biteghe, Fleury
Klein, Timothy
van Zyl, Leonardo Joaquim
Kirby, Bronwyn
Matobole, Relebohile
Trindade, Marla
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Copyright © 2016 van Zyl et al. This work is licensed under the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
Copyright © 2016 van Zyl et al. 2016 van Zyl et al.
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