RAS BiologyМикробиология Microbiology

  • ISSN (Print) 0026-3656
  • ISSN (Online) 3034-5464

Bacterial Diversity of Historic Iron-Containing Water Sources of the Kaliningrad Region

PII
10.31857/S0026365624040111-1
DOI
10.31857/S0026365624040111
Publication type
Status
Published
Authors
Volume/ Edition
Volume 93 / Issue number 4
Pages
468-473
Abstract
The Kaliningrad region has a rich historical heritage, including several water sources with high iron content. Known since the end of the 19th century, they are rich in ferrous iron, which is oxidized by bacterial communities. They include many different taxonomic groups of bacteria. In this work, for the first time, profiling of microbial communities of iron-containing sources in the Kaliningrad region was carried out; During the study, 6 samples were taken from four geographical locations. Based on the results of profiling, taxonomic groups were identified belonging to the phyla Acidobacteriota, Desulfobacteriota, Cyanobacteriota, Proteobacteria, Nitrospirota, and among the predominant groups the gammaproteobacterium of the genus Gallionella stands out.
Keywords
железосодержащие источники железоокисляющие бактерии бактериальный мат хемолитоавтотроф Gallionella
Date of publication
15.07.2024
Year of publication
2024
Number of purchasers
0
Views
28

References

  1. 1. ЦВ 1.04.46-00 А “МВИ массовой концентрации железа в пробах питьевых и природных вод фотометрическим методом.” Редакция 2, 2008 г.
  2. 2. Anandan R., Dharumadurai D., Manogaran G. P. An introduction to Actinobacteria // Actinobacteria ‒ basics and biotechnological applications / Eds. D. Dhanasekaran, Y. Jiang. IntechOpen, 2016. P. 4‒5.
  3. 3. Emerson D., Scott J. J., Benes J., Bowden W. Microbial iron oxidation in the Arctic tundra and its implications for biogeochemical cycling // Appl. Environ. Microbiol. 2015. V. 81. P. 8066‒8075.
  4. 4. Emerson D., Weiss J. V. Bacterial iron oxidation in circumneutral freshwater habitats: findings from the field and the laboratory // Geomicrobiol. J. 2004. V. 21. P. 405‒414.
  5. 5. Reis M. P., Avila M. P., Costa P. S., Barbosa F. A., Laanbroek H. J., Chartone-Souza E., Nascimento A. M. The influence of human settlement on the distribution and diversity of iron-oxidizing bacteria belonging to the Gallionellaceae in tropical streams // Front. Microbiol. 2014. V. 5. Art. 630.
  6. 6. Singh V. K., Singh A. L., Singh R., Kumar A. Iron oxidizing bacteria: insights on diversity, mechanism of iron oxidation and role in management of metal pollution // Environ. Sustain. 2018. V. 1. P. 221–231.
  7. 7. Smalley N. E. Taipale S., De Marco P., Doronina N. V., Kyrpides N., Shapiro N., Kalyuzhnaya M. G. Functional and genomic diversity of methylotrophic Rhodocyclaceae: description of Methyloversatilis discipulorum sp. nov. // Int. J. Syst. Evol. Microbiol. 2015. V. 65. P. 2227‒2233.
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