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1.
Braz. j. biol ; 80(4): 914-920, Oct.-Dec. 2020. tab, graf
Article in English | LILACS | ID: biblio-1142526

ABSTRACT

Abstract Growth and biological conditions of Messastrum gracile were evaluated to compare the effect of photoautotrophic and mixotrophic cultivation on the increase of biomass production and chemical conditions cultured in macrophyte and commercial culture media. The growth rate (k) of M. gracile was different in the culture media, higher in mixotrophic cultivation for Lemna minor culture medium, whilst to Eichhornia crassipes and NPK culture media were higher in photoautotrophic cultivation. Mean lipid contents in photoautotrophic cultivation were 8.2% biomass dry weight, whereas they reached 19% biomass dry weight in mixotrophic cultivation. Protein contents were below 48% biomass dry weight in photoautotrophic cultivation and 30% biomass dry weight in mixotrophic cultivation. Messastrum gracile cultured in macrophyte culture media (E. crassipes and L. minor) and NPK culture medium provided satisfactory results with regard to lipid and protein contents in mixotrophic and photoautotrophic cultivations, respectively. Lipid and protein contents in alternative media were higher or similar to the CHU12 commercial culture medium.


Resumo O crescimento e as condições biológicas da microalga Messastrum gracile foram avaliados para comparar o efeito do cultivo foto-autotrófico e mixotrófico na produção de biomassa e condições químicas em meios de cultura comercial e de macrófitas. A taxa de crescimento (k) de M. gracile foi diferente entre os meios de cultura, sendo maior no cultivo mixotrófico para o meio Lemna minor, enquanto para os meios Eichhornia crassipes e NPK foram maiores no cultivo foto-autotrófico. Os teores de lipídios no cultivo foto-autotrófico foram de 8,2% da biomassa seca, enquanto que no mixotrófico atingiram 19% da biomassa seca. Os teores de proteína em cultivo foto-autotrófico estiveram abaixo de 48% da biomassa seca e 30% de biomassa seca no cultivo mixotrófico. Messastrum gracile cultivada em meios de cultura de macrófitas (E. crassipes e L. minor) e NPK apresentaram resultados satisfatórios em relação aos teores de lipídeos e proteínas nos cultivos mixotróficos e foto-autotróficos, respectivamente. Os teores lipídicos e proteicos em meios alternativos foram maiores ou semelhantes ao meio comercial CHU12.


Subject(s)
Eichhornia , Microalgae , Chlorophyceae , Biomass , Culture Media
2.
Braz. j. biol ; 80(3): 594-600, July-Sept. 2020. tab, graf
Article in English | LILACS | ID: biblio-1132426

ABSTRACT

Abstract Two species of Chlorophyceae, Ankistrodesmus gracilis and Haemotococcus pluvialis, were used to compare and evaluate the effect of sugarcane molasses as a carbon source. Highest cell density in the two microalgae culture media was obtained in commercial culture media (CHU12 and WC). During exponential growth (day 1 to day 10), high cell density in H. pluvialis was detected for E. crassipes culture medium ranging between 0.4 x 105 cells mL-1 and 1.7 x 105 cells mL-1. Culture media were fundamental for growth under mixotrophic cultivation. Sugarcane molasses showed different results for the two microalgae with regard to growth performance, lipid and protein levels. Rates were high for H. pluvialis except lipid at the end of the experiment. In fact, A. gracilis presented almost double the lipid levels. Sugarcane molasses may be an alternative carbon source in laboratory conditions.


Resumo Duas espécies de Chlorophyceae, Ankistrodesmus gracilis e Haemotococcus pluvialis foram utilizadas para comparar o efeito do melaço de cana-de-açúcar como fonte de carbono. Nos dois meios de cultura de microalgas, a maior densidade celular foi obtida em meio de cultura comercial (CHU12 e WC). Durante o crescimento exponencial (1º ao 10º dia), detectou-se alta densidade celular em H. pluvialis para o meio de cultura E. crassipes variando entre 0,4 x 105 células mL-1 e 1,7 x 105 células mL-1. Os meios de cultura foram fundamentais para o crescimento em cultivo mixotrófico. O melaço de cana-de-açúcar apresentou resultados diferentes para as duas microalgas em relação ao crescimento, aos teores de proteína e lipídio foram mais elevados para o cultivo de H. pluvialis, exceto lipídio no final do experimento onde A. gracilis apresentou quase o dobro dos níveis de lipídio. O melaço de cana de açúcar pode ser uma fonte alternativa de carbono em condições de laboratório.


Subject(s)
Saccharum , Microalgae , Molasses , Carbon , Chlorophyceae
3.
Braz. arch. biol. technol ; 63: e20190204, 2020. tab, graf
Article in English | LILACS | ID: biblio-1132263

ABSTRACT

Abstract Microalgae are potential sources of a wide range of bioproducts. It is essential to choose the proper microalgae strain and culture condition to achieve an efficient production. The production yield of carotenoids by Dunaliella salina under the stress-induced culture conditions of nitrogen deprivation and excessive light intensity was evaluated. Also, a survey at laboratorial scale of the growth kinetics under different culture conditions of photoperiod, aeration, and agitation was performed for the seven species of green microalgae Ankistrodesmus fusiformis, Chlamydocapsa bacillus, Desmodesmus brasiliensis, Kirchneriella lunaris, Pseudokirchneriella subcapitata, and Scenedesmus obliquus. As a result, aeration of atmospheric air is enough to improve the growth kinetics of the seven species studied. Production of carotenoids was enhanced under stress by excessive light intensity. Although D. salina does not grow effectively under nitrogen deprivation, this stress condition may be used to quickly stimulate carotenoid production once the culture reaches a high cellular population.


Subject(s)
Carotenoids/biosynthesis , Chlorophyceae/growth & development , Chlorophyceae/chemistry , Stress, Physiological , Biotechnology , Kinetics , Biomass
4.
Acta sci., Biol. sci ; 42: e50099, fev. 2020. map, ilus, tab, graf
Article in English | LILACS, VETINDEX | ID: biblio-1460924

ABSTRACT

Some orders of algal groups such as Chlorophyceae and Zygnematophyceae have been reported as frequent taxa in periphytic communities of wetlands. The present study aimed at submitting these algal members which occurred in high abundance and frequency in the periphyton of 30 environments of the Upper Paraná River floodplain to a taxonomic survey and to present some ecological data concerning their richness. Periphyton were collected from petioles by scraping of Eichhornia azurea (Sw.) Kunth and preserved with Lugol acetic solution in the Upper Paraná River, Brazil, during high water period in March 2010. Taxa were counted in inverted microscope and those higher than 2,500 individuals in density with frequency of occurrence less than 50% simultaneously in the 30 environments sampled were subjected to a detailed taxonomical treatment under optical microscope coupled to a light camera and ocular micrometer under 1000x. Identifications and descriptions were made according to the algal literature. Some abiotic data were shown. Fifteen taxa belonging to the classes Chlorophyceae and Zygnematophyceae were abundant representing 64.6% of the total density. A Procruste analysis within a Detrended Correspondence Analysis showed that distribution pattern of richness of clorophyceans and zygnematophyceans was represented by common species of these communities, highlighting the importance of knowing about these algae taxonomy


Subject(s)
Animals , Chlorophyceae/classification , Streptophyta/classification , Periphyton , Floodplain Zoning
5.
Chinese Journal of Biotechnology ; (12): 988-997, 2019.
Article in Chinese | WPRIM | ID: wpr-771829

ABSTRACT

Astaxanthin is widely applied as a nutraceutical, pharmaceutical, and aquaculture feed additive because of its high antioxidant activity. Haematococcus pluvialis is a microalgal species that can largely accumulate astaxanthin under adverse environmental conditions. Here we review the research progress of astaxanthin biosynthesis in H. pluvialis, including the induction and regulation of massive astaxanthin, the relationship between astaxanthin synthesis, photosynthesis and lipid metabolism.


Subject(s)
Chlorophyceae , Chlorophyta , Microalgae , Xanthophylls
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