SELECTION OF NUTRIENT MEDIUM THAT ENSURES MODERATE GROWTH OF MICROALGAE
DOI:
https://doi.org/10.5281/zenodo.8416985Keywords:
B. braunii-AnDI-115 andCh. infusionum-AnDI-76,Seth medium, Tamiya medium, Modified Tamiya medium #1, Modified Tamiya medium #2, CHu - 13 medium, Chu -10 medium, Hoagland's medium, BG-11 medium, Bold basal medium (Bold's Basal Medium (BBM)), Zarruk nutrient medium.Abstract
In the article, in order to meet the requirements for the general fertility of the seeds of agricultural crops in order to ensure the fertility of the seed, our researches showed that the strain B. braunii-AnDI-115 belonging to the genus Botryococcus (B braunii-AnDI-115) and Ch.infusionum -AnDI-76 strains belonging to the Chlorococcum genus (Ch.infusionum -AnDI-76) are selected.
References
Özdemir., 2016
Thomas G. Tophabene et al., 1985;Kiran et al., 2021
Muzaffarov and Dr., 1984; Saikia et al., 2011; Alejandra Sánchez-Bayo et al., 2020; Charmaine Lloyd et al., 2021.
Cabanelas et al., 2016; Rahman et al., 2022
Halil Berberoglu et al., 2009; Miao G. et al., 2015.
Maltsev et al., 2021; Sun et al., 2023.
Yu Yu et al., 2017; Alain Aminot et al., 2000.
Mutum et al., 2023.
Ferreira et al., 2017; Rinawati et al., 2020; Sampath et al., 2017.
Tokhirov BB, Mustafoyev H., Tagayeva MB Production of microscopic always, their use in livestock and poultry // Ekonomika i sotsium. 2021, no. 4-1. p. 426-427.
Khodzhimurodova NR, Khakimova NX, Togaeva MV Activity of microorganisms in the alluvial soils of the irrigated meadow of Bukhara // Proceedings of the Republican Scientific and Practical Conference. Guliston, 2020. 166 p.
MB Togaeva, ZTSafarova, NAAzizova. Main sources of increasing the productivity of alluvial soils of medium salt grassland of Bukhara region // JoupHalNX. - T. 6. - No. 06. p. 88-93.
Khodzhimurodova N., Khakimova N., Tagaeva M. Biological activity of the soil of the Bukhara oasis and its dependence on the soil. Tashkent, 2020, c. 1061-1064.
Anderson RA 2005. Algal Culturing Techniques. Elsevier Academic Press, San Diego CA., USA. Pp. 589.
Beale SI Enzymes of chlorophyll biosynthesis. Photosynthesis Research, 1999, 60: 43-73 (doi:10.1023/A:1006297731456).
Nakagawara E., Sakuraba Y., Yamasato A., Tanaka R., Tanaka A. Clp protease controls chlorophyll b synthesis by regulating the level of chlorophyllide a oxygenase. Plant J., 2007, 49: 800-809 (doi: 10.1111/j.1365-313X.2006.02996.x).
Sakuraba Y., Yokono M., Akimoto S., Tanaka R., Tanaka A. Deregulated chlorophyll b synthesis reduces the energy transfer rate between photosynthetic pigments and induces photodamage in Arabidopsis thaliana. Plant Cell Physiol., 2010, 51: 1055-1065 (doi: 10.1093/pcp/pcq050).
Elizarova VA 1974. Soderjanie fotosinteticheskikh pigmentov v edinitse biomassy phytoplanktona / VA Elizarova // Trudy in–ta biol. inside vod. - L., 1974. - Vyp. 28 (31). - P. 46-64.
Dere S., Guenes T., Sivaci R. 1998. Spectrophotometric determination of chlorophyll – A, B and total carotenoid contents of some algae species using different solvents. Tr. J. of Botany. 22: 13–17.
Elizarova VA Soderjanie fotosinteticheskikh pigmentov v phytoplanktone vodoèmov raznogo tipa: avtoref. dis. sugar biol. Nauk: 03.00.18 / VA Elizarova; Institut biologii vnutrennix vod AN USSR. - Moscow, 1975. - 24 p.
Muzafarov AM, Taubaev TT Kultivirovanie i primenenie microvodorosley //Tashkent: Fan UzSSR. - 1984.
Mutum et al., 2023
Alain Aminot et al., 2000