CHU-13 OZUQA MUHITI O‘STIRILGAN B.BRAUNII-ANDI-115 VA CH.INFUSIONUM-ANDI-76 SHTAMMLARINING O‘SIB-RIVOJLANISHINI TAHLIL QILISH

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Аннотация:

Maqolada CHu-13  ozuqa muhitida B.braunii-AnDI-115 va Ch.infusionum-AnDI-76 shtammlarining o‘sib-rivojlanishi, quruq moddaga nisbatan biomassa hamda pigmentlar hosil qilishiga ta’siri o‘rganishdan iborat.

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Как цитировать:

Tag‘aeva, M. ., Toxirov, B. ., & Zaribboyev , M. . (2023). CHU-13 OZUQA MUHITI O‘STIRILGAN B.BRAUNII-ANDI-115 VA CH.INFUSIONUM-ANDI-76 SHTAMMLARINING O‘SIB-RIVOJLANISHINI TAHLIL QILISH. Естественные науки в современном мире: теоретические и практические исследования, 2(10), 9–12. извлечено от https://in-academy.uz/index.php/zdtf/article/view/21248

Библиографические ссылки:

Qiua et al., 2017; Yu et al., 2022

Yu et al., 2022

Fakhri et al., 2021

Silva et al., 2020

Mutum et al., 2023

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 B.B., Mustafoyev X., Tagayeva M.B. Production of microscopic always, their use in livestock and poultry // Ekonomika i sotsium. 2021, №. 4-1. p.426-427.

Xodjimurodova N.R., Xakimova N.X., Togaeva M.V. Buxoro voxasi sugoriladigan o‘tloqi allyuvial tuproqlarida mikroorganizmlar faolligi // Respublika ilmiy-amaliy anjumani materiallari tuplami.Guliston, 2020. 166 b.

M.B. Togaeva, Z.T.Safarova, N.A.Azizova. Main sources of increasing the productivity of alluval soils of medium salt grazine of bukhara region // JouPhalNX. – T. 6. – №. 06. p. 88-93.

Xodjimurodova N., Xakimova N., Tagaeva M. Biologicheskaya aktivnost pochv Buxarskogo oazisa v zavisimosti ot stepeni. Toshkent, 2020, c. 1061-1064.

Anderson R.A. 2005. Algal culturing Techniques. Elsevier Academic Press, San Diego CA., USA. Pp.589.

Beale S.I. 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 V.A. 1974. Soderjanie fotosinteticheskix pigmentov v edinitse biomassы fitoplanktona / V.A. Elizarova // Trudы in–ta biol. vnutr. vod. – L., 1974. – Vыp. 28 (31). – S. 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 V.A. Soderjanie fotosinteticheskix pigmentov v fitoplanktone vodoѐmov raznogo tipa: avtoref. dis. kand. biol. nauk: 03.00.18 / V.A. Elizarova; Institut biologii vnutrennix vod AN SSSR. – Moskva, 1975. – 24 s.

Muzafarov A. M., Taubaev T. T. Kultivirovanie i primenenie mikrovodorosley //Tashkent: Fan UzSSR. – 1984.

Alain Aminot et al., 2000