Author:
Leunda-Esnaola Amaia,Bunin Evgeni,Arrufat Pablo,Pearman Peter B.,Kaberdin Vladimir R.
Abstract
AbstractAlthough the 16S rRNA gene is frequently used as a phylogenetic marker in analysis of environmental DNA, this marker often fails to distinguish closely related species, including those in the genus Vibrio. Here, we investigate whether inclusion and analysis of 23S rRNA sequence can help overcome the intrinsic weaknesses of 16S rRNA analyses for the differentiation of Vibrio species. We construct a maximum likelihood 16S rRNA gene tree to assess the use of this gene to identify clades of Vibrio species. Within the 16S rRNA tree, we identify the putative informative bases responsible for polyphyly, and demonstrate the association of these positions with tree topology. We demonstrate that concatenation of 16S and 23S rRNA genes increases the number of informative nucleotide positions, thereby overcoming ambiguities in 16S rRNA-based phylogenetic reconstructions. Finally, we experimentally demonstrate that this approach considerably improves the differentiation and identification of Vibrio species in environmental samples.
Funder
Gobierno Vasco
Ministerio de Ciencia e Innovación
Erasmus Mundus Joint Master Degree ECT+ scholarship, European Union
Publisher
Springer Science and Business Media LLC
Reference59 articles.
1. Ma, F. et al. Development of microbial indicators in ecological systems. IJERPH 19, 13888 (2022).
2. IPCC. IPCC, 2014: Climate Change 2014: Synthesis Report. Contribution of Working Groups I, II and III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Core Writing team, R. K. Pachauri and L.A. Meyer (eds.)]. IPCC, Geneva, Switzerland, 151 pp. (2014).
3. Costa, R. A., Silva, G. C., Peixoto, J. R. O., Vieira, G. H. F. & Vieira, R. H. S. F. Quantification and distribution of vibrio species in water from an estuary in Ceará-Brazil impacted by shrimp farming. Braz. J. Oceanogr. 58, 183–188 (2010).
4. Jesser, K. J. & Noble, R. T. Vibrio ecology in the neuse river estuary, north carolina, characterized by next-generation amplicon sequencing of the gene encoding heat shock protein 60 (hsp60). Appl. Environ. Microbiol. 84, e00333-e418 (2018).
5. Keyhani, N. Physiological aspects of chitin catabolism in marine bacteria. Biochim. Biophys. Acta (BBA) Gen. Subjects 1473, 108–122 (1999).
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