Author:
Paul Varun,Banerjee Yogaraj,Ghosh Prosenjit,Busi Susheel Bhanu
Abstract
AbstractThe solar salterns in Tuticorin, India, are man-made, saline to hypersaline systems hosting some uniquely adapted populations of microorganisms and eukaryotic algae that have not been fully characterized. Two visually different microbial mats (termed ‘white’ and ‘green’) developing on the reservoir ponds (53 PSU) were isolated from the salterns. Firstly, archaeal and bacterial diversity in different vertical layers of the mats were analyzed. Culture-independent 16S rRNA gene analysis revealed that both bacteria and archaea were rich in their diversity. The top layers had a higher representation of halophilic archaea Halobacteriaceae, phylum Chloroflexi, and classes Anaerolineae, Delta- and Gamma- Proteobacteria than the deeper sections, indicating that a salinity gradient exists within the mats. Limited presence of Cyanobacteria and detection of algae-associated bacteria, such as Phycisphaerae, Phaeodactylibacter and Oceanicaulis likely implied that eukaryotic algae and other phototrophs could be the primary producers within the mat ecosystem. Secondly, predictive metabolic pathway analysis using the 16S rRNA gene data revealed that in addition to the regulatory microbial functions, methane and nitrogen metabolisms were prevalent. Finally, stable carbon and nitrogen isotopic compositions determined from both mat samples showed that the δ13Corg and δ15Norg values increased slightly with depth, ranging from − 16.42 to − 14.73‰, and 11.17 to 13.55‰, respectively. The isotopic signature along the microbial mat profile followed a pattern that is distinctive to the community composition and net metabolic activities, and comparable to saline mats in other salterns. The results and discussions presented here by merging culture-independent studies, predictive metabolic analyses and isotopic characterization, provide a collective strategy to understand the compositional and functional characteristics of microbial mats in saline environments.
Funder
Office of Research and Economic Development, Mississippi State University
Ministry of Earth Sciences
Publisher
Springer Science and Business Media LLC
Reference121 articles.
1. Sorgeloos, P., Dhert, P. & Candreva, P. Use of the brine shrimp, Artemia spp., in marine fish larviculture. Aquaculture 200, 147–159 (2001).
2. Cantrell, S. A., Casillas-Martinez, L. & Molina, M. Characterization of fungi from hypersaline environments of solar salterns using morphological and molecular techniques. Mycol. Res. 110, 962–970 (2006).
3. Gunde-Cimerman, N., Oren, A. & Plemenitaš, A. Introduction in Cellular Origin Life in Extreme Habitats and Astrobiology Adaptation to Life at High Salt Concentrations in Archaea, Bacteria, and Eukarya 1–6 (Springer, Amsterdam, 2006).
4. Margesin, R. & Schinner, F. Potential of halotolerant and halophilic microorganisms for biotechnology. Extremophiles 5, 73–83 (2001).
5. Begemann, M. B., Mormile, M. R., Paul, V. G. & Vidt, D. J. Potential Enhancement of Biofuel Production Through Enzymatic Biomass Degradation Activity and Biodiesel Production by Halophilic Microorganisms. In Halophiles and Hypersaline Environments (eds Ventosa, A. et al.) 341–357 (Springer, Berlin, 2011).
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