MICROORGANISM STUDIES FROM VARIOUS AQUATIC AREAS IN BHILAI, CHHATTISGARH

Authors

  • Dr Saman Siddiqui HOD, AssociateProfessor, Department of Zoology,Bharti Vishwavidyalaya, Durg (CG)

DOI:

https://doi.org/10.59367/nyvmt353

Abstract

Microorganisms are usually simpleunicellular, multicellular,organismsthat are found within four kingdoms-distributed worldwide in nature. Their primary constituents include fungi, bacteria, and protozoa, many of which belong to genera that are pathogens to animals as well as human beings. It is necessary to separate out the types of microorganisms that may be observed in the various water habitat of Bhilai (C.G.). A range of free-living microorganisms, some of which are dangerous to both people and animals (protozoans, arthropods, fungi, bacteria, algae, etc.), are the focus of this research.

References

Keating JP. Giardiasis. Text book of pediatric Infectious-diseases, 4th ed. Philadelphia, WB Saunders 1998: 2400- 3.

Faye O, N’Dir O, Gaye O, Dieng TH, Bah IB. Giardiasis among child: Morbidity risk factors in Dakar urban environments. Med Afr Noire 1997; 44: 531–535.

Simsek Z, Zeyrek FY, Kurcer MA. Effect on Giardia infection on growth and psychomotor development of children aged 0-5 years. J Trop Pediatr2004; 50:90.

Bick H. (1972), Ciliated Protozoan.

Kudo R.R. (1966). Protozoology 5th ed. Springfield III Thomas (1966).

Philippe, N.; Legendre, M.; Doutre, G.; Coute, Y.; Poirot, O.; Lescot, M.; Arslan, D.; Seltzer, V.; Bertaux, L.; Bruley, C.; et al. Pandoraviruses: Amoeba viruses with genomes up to 2.5 mb reaching that of parasitic eukaryotes. Science 2013, 341, 281–286.

Allison MJ, Bergman T, Gerszten E. Further studies on parasites in antiquity. Am J ClinPathol. 1999; 112:605–609. [PubMed]

H. Abd, S. Shanan, A. Saeed, and G. Sandström, “Survival of Vibrio cholerae inside Acanthamoeba and detection of both microorganisms from natural water samples may point out the amoeba as a protozoal host for V. cholerae,” Journal of Bacteriology & Parasitology, vol. S1-003, 2012.

Cavicchioli, R., Ripple, W. J., Timmis, K. N., Azam, F., Bakken, L. R., Baylis, M., Behrenfeld, M. J., Boetius, A., Boyd, P. W., Classen, A. T., Crowther, T. W., Danovaro, R., Foreman, C. M., Huisman, J., Hutchins, D. A., Jansson, J. K., Karl, D. M., Koskella, B., Mark Welch, D. B., … Webster, N. S. (2019). Scientists’ warning to humanity: microorganisms and climate change. In Nature Reviews Microbiology (Vol. 17, Issue 9). https://doi.org/10.1038/s41579-019-0222-5

Danquah, C. A., Minkah, P. A. B., Junior, I. O. D., Amankwah, K. B., & Somuah, S. O. (2022). Antimicrobial Compounds from Microorganisms. In Antibiotics (Vol. 11, Issue 3). https://doi.org/10.3390/antibiotics11030285

Gryta, M. (2002). The assessment of microorganism growth in the membrane distillation system. Desalination, 142(1). https://doi.org/10.1016/S0011-9164(01)00427-1

Khanjani, M. H., Mohammadi, A., &Emerenciano, M. G. C. (2022). Microorganisms in biofloc aquaculture system. In Aquaculture Reports (Vol. 26). https://doi.org/10.1016/j.aqrep.2022.101300

Tamang, J. P., Shin, D. H., Jung, S. J., & Chae, S. W. (2016). Functional properties of microorganisms in fermented foods. In Frontiers in Microbiology (Vol. 7, Issue APR). https://doi.org/10.3389/fmicb.2016.00578

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Published

2023-06-30

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Articles

How to Cite

MICROORGANISM STUDIES FROM VARIOUS AQUATIC AREAS IN BHILAI, CHHATTISGARH. (2023). International Journal of Futuristic Innovation in Engineering, Science and Technology (IJFIEST), 2(2), 1-7. https://doi.org/10.59367/nyvmt353