THE INFLUENCE OF EXOGENOUS GLYCINE ON GROWTH AND INTENSITY OF CYANOBACTERIA Spirulina рlatensis (Gom.) Geitl PHOTOSYNTHETIC PROCESSES

The aim of the work was to study the impact of glycine on Spirulina growth and photosynthetic processes intensity. For research the culture of Spirulina platensis (Gom.) Geitl cyanobacterium strain LGU — 603 from collection of Kholodny Institute of Botany of the National Academy of Sciences of Ukrai...

Full description

Bibliographic Details
Main Authors: A. V. Kotinskyi, A. I. Salyuk, S. A. Zhadan
Format: Article
Language:English
Published: National Academy of Sciences of Ukraine, Palladin Institute of Biochemistry 2018-12-01
Series:Biotechnologia Acta
Subjects:
Online Access:http://biotechnology.kiev.ua/images/storage/6_2018/kotinskyi_6_2018.pdf
_version_ 1797765888883032064
author A. V. Kotinskyi
A. I. Salyuk
S. A. Zhadan
author_facet A. V. Kotinskyi
A. I. Salyuk
S. A. Zhadan
author_sort A. V. Kotinskyi
collection DOAJ
description The aim of the work was to study the impact of glycine on Spirulina growth and photosynthetic processes intensity. For research the culture of Spirulina platensis (Gom.) Geitl cyanobacterium strain LGU — 603 from collection of Kholodny Institute of Botany of the National Academy of Sciences of Ukraine was used. The cultivation process was carried out in Zaruk nutrient medium in a vertical tubular apparatus of 8 cm in diameter and of volume 2 dm3 in a constant mixing of the culture medium with air. Introduction of glycine in a cultural environment resulted in the increase of the Spirulina productivity, maintenance of basic photosynthetic pigments and protein. Glycine introduction allowed to increase the growth rate of spirulina and to content achieve the high density of the culture due to the increased length of log-phase. Intensification of Spirulina platensis growth and its productivity increase was due to the fragmentation of cyanobacteria trichomes, so the increase of trichomes number with a small number of cells, which grow quickly. The degree of fragmentation depended on the concentration of introduced glycine and on the culture development stadium and also on introduced glycine concentration.
first_indexed 2024-03-12T20:16:34Z
format Article
id doaj.art-76eade38b59c45df975cda5c6c8f22c1
institution Directory Open Access Journal
issn 2410-7751
2410-776X
language English
last_indexed 2024-03-12T20:16:34Z
publishDate 2018-12-01
publisher National Academy of Sciences of Ukraine, Palladin Institute of Biochemistry
record_format Article
series Biotechnologia Acta
spelling doaj.art-76eade38b59c45df975cda5c6c8f22c12023-08-02T01:16:36ZengNational Academy of Sciences of Ukraine, Palladin Institute of BiochemistryBiotechnologia Acta2410-77512410-776X2018-12-01116394610.15407/biotech11.06.039THE INFLUENCE OF EXOGENOUS GLYCINE ON GROWTH AND INTENSITY OF CYANOBACTERIA Spirulina рlatensis (Gom.) Geitl PHOTOSYNTHETIC PROCESSESA. V. Kotinskyi0A. I. Salyuk1S. A. Zhadan2National University of Food Technologies, Kyiv, UkraineNational University of Food Technologies, Kyiv, UkraineIndividual entrepreneur «Dyba А. О.», Kyiv, UkraineThe aim of the work was to study the impact of glycine on Spirulina growth and photosynthetic processes intensity. For research the culture of Spirulina platensis (Gom.) Geitl cyanobacterium strain LGU — 603 from collection of Kholodny Institute of Botany of the National Academy of Sciences of Ukraine was used. The cultivation process was carried out in Zaruk nutrient medium in a vertical tubular apparatus of 8 cm in diameter and of volume 2 dm3 in a constant mixing of the culture medium with air. Introduction of glycine in a cultural environment resulted in the increase of the Spirulina productivity, maintenance of basic photosynthetic pigments and protein. Glycine introduction allowed to increase the growth rate of spirulina and to content achieve the high density of the culture due to the increased length of log-phase. Intensification of Spirulina platensis growth and its productivity increase was due to the fragmentation of cyanobacteria trichomes, so the increase of trichomes number with a small number of cells, which grow quickly. The degree of fragmentation depended on the concentration of introduced glycine and on the culture development stadium and also on introduced glycine concentration.http://biotechnology.kiev.ua/images/storage/6_2018/kotinskyi_6_2018.pdfglycinespirulinagrowth and photosynthetic processes intensityphotosynthetic activity.
spellingShingle A. V. Kotinskyi
A. I. Salyuk
S. A. Zhadan
THE INFLUENCE OF EXOGENOUS GLYCINE ON GROWTH AND INTENSITY OF CYANOBACTERIA Spirulina рlatensis (Gom.) Geitl PHOTOSYNTHETIC PROCESSES
Biotechnologia Acta
glycine
spirulina
growth and photosynthetic processes intensity
photosynthetic activity.
title THE INFLUENCE OF EXOGENOUS GLYCINE ON GROWTH AND INTENSITY OF CYANOBACTERIA Spirulina рlatensis (Gom.) Geitl PHOTOSYNTHETIC PROCESSES
title_full THE INFLUENCE OF EXOGENOUS GLYCINE ON GROWTH AND INTENSITY OF CYANOBACTERIA Spirulina рlatensis (Gom.) Geitl PHOTOSYNTHETIC PROCESSES
title_fullStr THE INFLUENCE OF EXOGENOUS GLYCINE ON GROWTH AND INTENSITY OF CYANOBACTERIA Spirulina рlatensis (Gom.) Geitl PHOTOSYNTHETIC PROCESSES
title_full_unstemmed THE INFLUENCE OF EXOGENOUS GLYCINE ON GROWTH AND INTENSITY OF CYANOBACTERIA Spirulina рlatensis (Gom.) Geitl PHOTOSYNTHETIC PROCESSES
title_short THE INFLUENCE OF EXOGENOUS GLYCINE ON GROWTH AND INTENSITY OF CYANOBACTERIA Spirulina рlatensis (Gom.) Geitl PHOTOSYNTHETIC PROCESSES
title_sort influence of exogenous glycine on growth and intensity of cyanobacteria spirulina рlatensis gom geitl photosynthetic processes
topic glycine
spirulina
growth and photosynthetic processes intensity
photosynthetic activity.
url http://biotechnology.kiev.ua/images/storage/6_2018/kotinskyi_6_2018.pdf
work_keys_str_mv AT avkotinskyi theinfluenceofexogenousglycineongrowthandintensityofcyanobacteriaspirulinarlatensisgomgeitlphotosyntheticprocesses
AT aisalyuk theinfluenceofexogenousglycineongrowthandintensityofcyanobacteriaspirulinarlatensisgomgeitlphotosyntheticprocesses
AT sazhadan theinfluenceofexogenousglycineongrowthandintensityofcyanobacteriaspirulinarlatensisgomgeitlphotosyntheticprocesses
AT avkotinskyi influenceofexogenousglycineongrowthandintensityofcyanobacteriaspirulinarlatensisgomgeitlphotosyntheticprocesses
AT aisalyuk influenceofexogenousglycineongrowthandintensityofcyanobacteriaspirulinarlatensisgomgeitlphotosyntheticprocesses
AT sazhadan influenceofexogenousglycineongrowthandintensityofcyanobacteriaspirulinarlatensisgomgeitlphotosyntheticprocesses