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dc.contributor.author
Masojídek, Jiří  
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Ranglová, Karolína  
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Rearte, Tomás Agustín  
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Celis Plá, Paula S. M.  
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Torzillo, Giuseppe  
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Silva Benavides, Ana Margarita  
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Neori, Amir  
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Gómez, Cintia Vanina  
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Álvarez Gómez, Félix  
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Lukeš, Martin  
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Caporgno, Martín P.  
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Abdala, Roberto  
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Miazek, Krystian  
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Fávero Massocato, Thaís  
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Carmo da Silva, Jaqueline  
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Atzmüller, Richard  
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Al Mahrouqui, Hafidh  
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Suárez Estrella, Francisca  
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Figueroa, Felix L.  
dc.date.available
2022-08-05T15:32:15Z  
dc.date.issued
2021-06  
dc.identifier.citation
Masojídek, Jiří; Ranglová, Karolína; Rearte, Tomás Agustín; Celis Plá, Paula S. M.; Torzillo, Giuseppe; et al.; Changes in photosynthesis, growth and biomass composition in outdoor Chlorella g120 culture during the metabolic shift from heterotrophic to phototrophic cultivation regime; Elsevier Science; Algal Research; 56; 6-2021; 1-13  
dc.identifier.issn
2211-9264  
dc.identifier.uri
http://hdl.handle.net/11336/164389  
dc.description.abstract
Up to now, scarce information has been available regarding major photobiochemical changes that accompany the metabolic shift from heterotrophy to phototrophy in microalgae cells. In the present trials the trophic conversion from heterotrophic to phototrophic growth regime was studied in the microalga Chlorella vulgaris g120 grown in outdoor thin-layer cascades. The crucial question was whether Chlorella g120 can undergo the photoacclimation of its photosynthetic apparatus under natural irradiance. As for comparison the phototrophic strain Chlorella vulgaris R-117 was cultured in parallel. Various in-situ and ex-situ monitoring techniques namely oxygen production and chlorophyll fluorescence were tested to characterize physiological response of the Chlorella g120 culture during photoacclimation and correlate it with growth. We show that Chlorella g120 can undergo the metabolic shift from heterotrophic to phototrophic growth regime, but its conversion is. A rather high respiration rate was interpreted as a strategy to dissipate the unused light energy. Chlorella g120 was found as the strain characterized by a small-antenna size strain (low chlorophyll/cell ratio < 1%) which should be favorable for light utilization in dense cultures. The high carotenoid/chlorophyll ratio (= 0.63) may be of interest from biotechnological point of view for carotenoid (namely lutein) production. The build-up of dissolved oxygen (DO) concentration and high electron transport rate measured in-situ indicated high photosynthetic activity of outdoor microalgae cultures. These variables are usable on-line as reliable markers as they reflect the physiological status of microalgae culture. Highly productive cultures, like Chlorella R-117 have high photosynthesis which is inevitably accompanied by the build-up on high DO gradients. To maintain high biomass production in such strains we have to find an interplay among photosynthetic activity, gradients of DO concentration, biomass density and culture layer thickness that can secure high growth rate (and productivity).  
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application/pdf  
dc.language.iso
eng  
dc.publisher
Elsevier Science  
dc.rights
info:eu-repo/semantics/restrictedAccess  
dc.rights.uri
https://creativecommons.org/licenses/by-nc-sa/2.5/ar/  
dc.subject
CHLOROPHYLL FLUORESCENCE  
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MICROALGAE  
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PHOTOSYNTHESIS  
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PHYSIOLOGY  
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THIN-LAYER CASCADE  
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TROPHIC CONVERSION  
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Biotecnología Industrial  
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Biotecnología Industrial  
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INGENIERÍAS Y TECNOLOGÍAS  
dc.title
Changes in photosynthesis, growth and biomass composition in outdoor Chlorella g120 culture during the metabolic shift from heterotrophic to phototrophic cultivation regime  
dc.type
info:eu-repo/semantics/article  
dc.type
info:ar-repo/semantics/artículo  
dc.type
info:eu-repo/semantics/publishedVersion  
dc.date.updated
2022-08-02T17:18:33Z  
dc.identifier.eissn
2211-9264  
dc.journal.volume
56  
dc.journal.pagination
1-13  
dc.journal.pais
Países Bajos  
dc.journal.ciudad
Amsterdam  
dc.description.fil
Fil: Masojídek, Jiří. Czech Academy of Sciences; República Checa. University of South Bohemia; República Checa  
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Fil: Ranglová, Karolína. Czech Academy of Sciences; República Checa. University of South Bohemia; República Checa  
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Fil: Rearte, Tomás Agustín. Universidad de Buenos Aires. Facultad de Agronomía. Departamento de Recursos Naturales y Ambiente. Cátedra de Química Analítica; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; Argentina  
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Fil: Celis Plá, Paula S. M.. Universidad de Playa Ancha; Chile  
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Fil: Torzillo, Giuseppe. Universidad de Costa Rica. Escuela de Biología; Costa Rica  
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Fil: Silva Benavides, Ana Margarita. Universidad de Costa Rica. Escuela de Biología; Costa Rica  
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Fil: Neori, Amir. University Of Haifa; Israel  
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Fil: Gómez, Cintia Vanina. Universidad de Almería; España  
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Fil: Álvarez Gómez, Félix. Universidad de Malaga. Facultad de Ciencias. Departamento de Ecología y Geología; España  
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Fil: Lukeš, Martin. Czech Academy of Sciences; República Checa  
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Fil: Caporgno, Martín P.. Czech Academy of Sciences; República Checa  
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Fil: Abdala, Roberto. Universidad de Malaga. Facultad de Ciencias. Departamento de Ecología y Geología; España  
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Fil: Miazek, Krystian. Université de Liège; Bélgica  
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Fil: Fávero Massocato, Thaís. Universidade Federal Da Santa Catarina. Centro de Ciencias Biológicas; Brasil  
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Fil: Carmo da Silva, Jaqueline. Universidade Federal do São Carlos; Brasil  
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Fil: Atzmüller, Richard. University of Applied Sciences Upper Austria; Austria  
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Fil: Al Mahrouqui, Hafidh. Sultan Qaboos University; Omán  
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Fil: Suárez Estrella, Francisca. Universidad de Almería; España  
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Fil: Figueroa, Felix L.. Universidad de Malaga. Facultad de Ciencias. Departamento de Ecología y Geología; España  
dc.journal.title
Algal Research  
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/url/https://linkinghub.elsevier.com/retrieve/pii/S2211926421001223  
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/doi/http://dx.doi.org/10.1016/j.algal.2021.102303