Biotechnology of increasing the productivity of plants under the influence of microbiological preparations
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Аннотация
Scientific and research work was carried out to determine the bioregulatory properties of Botryococcus, Chlorococcus, Tetradesmus Scenedesmus strains in plant growth. In the initial stages of the research, the influence of these microwater strains on the general germination of the seeds of the medium-ripe cotton variety "Bukhara-10" was studied, in which the international gene bank stored in the scientific laboratory "Biotechnology" of the Tashkent Institute of Chemical Technology was studied. Registered microalgae were used as main objects in our research. Key words: Botryococcus, Chlorococcum, Tetradesmus, Chlorella, B.braunii - AnDI-115, Tetradesmus obliquus-AnDI-015, Scenedesmus quadricauda- AnDI-44, Chlorococcum infusionum – AnDI -76, сotton
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Библиографические ссылки
M.M. Gitau, et.al., Plants 10, 1060 (2021). https://doi.org/10.3390/plants10061060
S.M.M. Shanab, et.al., Arab. J. Biotech, 6(2). 297—312 (2003)
R.A. Anderson, Algal culturing Techniques. (Elsevier Academic Press, San Diego CA., USA. Pp.589, 2005)
E. Nakagawara, et.al., Plant J. 49: 800-809 (2007) doi: 10.1111/j.1365- 313X.2006.02996.x
C.E. Espineda, et.al., The AtCAO gene, encoding chlorophyll a oxygenase, is required for chlorophyll b. PNAS USA 96: 10507- 10511 (1999) doi: 10.1073/pnas.96.18.10507
Alain Aminot., Francisco Rey. Determination of chlorophyll a by spectroscopic methods. ICES Techniques in Marine Environmental Sciences. (Copenhagen K., Denmark. Pp. 25. 2000)
A. Sánchez-Bayo., et.al., Molecules, 25, 2834 (2020) doi:10.3390/molecules25122834
A.L. Alvarez, et.al., Algal Research. 54. 1-24 (2021)
V. Chaudhary, et.al., World J.Microbiol Biotechnol. 28: 3301-3310 (2012)
P. Cheng, et.al., Bioresource Technology 121911. 19 (2019). doi:10.1016/j. biortech. 2019.121911
W.L. Chu, Int. e-J. Sci. Med. Edu. 6. 24-37 (2012)
A. Chabili, et.al., Plants. 13 (159). 1-26 (2024)
S.I. Beale, Photosynthesis Research 60: 43-73 (1999) doi: 10.1023/A:1006297731456
M. Benedetti, et.al., Microbial Cell Factories, 17(1). 1-18 (2018)
C. Bogen, et.al., Bioresour. Technol. 133. 622-626 (2013)
M.A. Borowitzka, Microalgae in health and disease prevention, 12. 195-210 (2018)
M.A. Borowitzka, J. Appl. Phycol. 25, 743–756 (2013)
I.T.D. Cabanelas, et.al., Biotechnol Biofuels. 9:183. 1-12 (2016). Doi 10.1186/s13068- 016-0595-x.
Ch. Lloyd., et.al., Scientifc Reports. 11: 4474 (2021). doi.org/10.1038/s41598-021-84112-0.
V. Chaudhary, et.al., World J.Microbiol Biotechnol. 28: 3301-3310 (2012)
P. Cheng, et.al., Bioresource Technology,121911. 19 (2019) doi:10.1016/j. biortech.2019.121911
W.L. Chu, Int. e-J. Sci. Med. Edu. 6. 24-37 (2012)
A. Chabili, et.al., Plants. 13 (159). 1-26 (2024)
Coêlho D. de F., et.al., Brazilian Archives of Biology