Author:
Reang Likhindra,Bhatt Shraddha,Tomar Rukam Singh,Joshi Kavita,Padhiyar Shital,Bhalani Hiren,Kheni JasminKumar,Vyas U. M.,Parakhia M. V.
Abstract
AbstractHalophiles are one of the classes of extremophilic microorganisms that can flourish in environments with very high salt concentrations. In this study, fifteen bacterial strains isolated from various crop rhizospheric soils of agricultural fields along the Southwest coastline of Saurashtra, Gujarat, and identified by 16S rRNA gene sequencing as Halomonas pacifica, H. stenophila, H. salifodinae, H. binhaiensis, Oceanobacillus oncorhynchi, and Bacillus paralicheniformis were investigated for their potentiality to produce extremozymes and compatible solute. The isolates showed the production of halophilic protease, cellulase, and chitinase enzymes ranging from 6.90 to 35.38, 0.004–0.042, and 0.097–0.550 U ml−1, respectively. The production of ectoine-compatible solute ranged from 0.01 to 3.17 mg l−1. Furthermore, the investigation of the ectoine-compatible solute production at the molecular level by PCR showed the presence of the ectoine synthase gene responsible for its biosynthesis in the isolates. Besides, it also showed the presence of glycine betaine biosynthetic gene betaine aldehyde dehydrogenase in the isolates. The compatible solute production by these isolates may be linked to their ability to produce extremozymes under saline conditions, which could protect them from salt-induced denaturation, potentially enhancing their stability and activity. This correlation warrants further investigation.
Publisher
Springer Science and Business Media LLC
Reference66 articles.
1. Merino, N. et al. Living at the Extremes: Extremophiles and the limits of life in a planetary context. Front. Microbiol. 10, 780 (2019).
2. Rothschild, L. & Mancinelli, R. Life in extreme environments. Nature 409(6823), 1092–1101 (2001).
3. Rampelotto, P. H. Extremophiles and extreme environments. Life 3, 482–485 (2013).
4. Mesbah, N. M., Hanelt, I., Zhao, B. & Muller, V. Microbial adaptation to saline environments: Lessons from the genomes of Natranaerobius thermophilus and Halobacillus halophilus. In Halophiles: Genetics and Genomes (eds. Papke, R. T. & Oren, A.) (Caister Academic Press, 2013)
5. Patel, S. & Saraf, M. Perspectives and application of halophilic enzymes. In Halophiles. Sustainable Development and Biodiversity, vol 6 (eds. Maheshwari, D. & Saraf, M.) (Springer, 2015).