GALOFIL MIKROORGANIZMLARNING BIOTEXNOLOGIK SALOHIYATI

Maqolaning asosiy mazmuni

J.B. Pirmatova
A.I. Kulonov

Abstrak

Ushbu maqola galofil mikroorganizmlarning biotexnologik salohiyati, shuningdek, ularga ekstremal sharoitlarda yashab qolish imkonini beruvchi noyob fiziologik va metabolik moslashuvlari haqidagi ma'lumotlar keltirilgan adabiyot manbalariga asoslangan.

Maqola tafsilotlari

Bo'lim

16.00.00 – Veterinariya fanlari

Qanday iqtibos keltirish kerak

GALOFIL MIKROORGANIZMLARNING BIOTEXNOLOGIK SALOHIYATI. (2025). Research Focus International Scientific Journal, 4(8), 66-69. https://doi.org/10.66073/researchfocus.v4i8.1751

Adabiyotlar

DasSarma P., Coker J. A., Huse V., DasSarma S. Halophiles, industrial applications // In: Flickinge M. C. (eds). Encyclopedia of industrial biotechnology: bioprocess, bioseparation, and cell technology. John Wiley & Sons, Inc. 2009. P. 1-43. Zhang X., Lin Y., Chen G. Q. Halophiles as chassis for bioproduction // Advanced Biosystems. 2018. № 2(11). Р. 1-12.

Jiang S., Ma C., Peng Q., Huo D., Li W., Zhang J. Microbial profile and genetic polymorphism of predominant species in some traditional fermented seafoods of the Hainan area in China // Frontiers in Microbiology. 2019. № 10. Р. 1-12.

Ashwini R., Vijayanand S., Hemapriya J. Photonic potential of haloarchaeal pigment bacteriorhodopsin for future electronics: A review // Current microbiology. 2017. № 74(8). Р. 996-1002. Li Y. T., Tian Y., Tian H., Tu T., Gou G. Y., Wang Q., Qiao Y. C., Yang Y., Ren T. L. A review on bacteriorhodopsin-based bioelectronic devices // Sensors. 2018. № 18(5). Р.1-21.

Poli A., Di Donato P., Abbamondi G. R., Nicolaus B. Synthesis, production, and biotechnological applications of exopolysaccharides and polyhydroxyalkanoates by archaea // Archaea. 2011. № 2011. Р. 1-13. Biswas J., Paul A. K. Diversity and production of extracellular polysaccharide by halophilic microorganisms // Biodiversity Int. J. 2017. № 1(2). Р. 32-39.