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Photon up-conversion increases biomass yield in Chlorella vulgaris
Steffi Jose,
Published in Wiley-VCH Verlag
2014
PMID: 25155721
Volume: 9
   
Issue: 12
Pages: 1547 - 1553
Abstract
Photon up-conversion, a process whereby lower energy radiations are converted to higher energy levels via the use of appropriate phosphor systems, was employed as a novel strategy for improving microalgal growth and lipid productivity. Photon up-conversion enables the utilization of regions of the solar spectrum, beyond the typical photosynthetically active radiation, that are usually wasted or are damaging to the algae. The effects of up-conversion of red light by two distinct sets of up-conversion phosphors were studied in the model microalgae Chlorella vulgaris. Up-conversion by set 1 phosphors led to a 2.85 fold increase in biomass concentration and a 3.2 fold increase in specific growth rate of the microalgae. While up-conversion by set 2 phosphors resulted in a 30% increase in biomass and 12% increase in specific intracellular neutral lipid, while the specific growth rates were comparable to that of the control. Furthermore, up-conversion resulted in higher levels of specific intracellular reactive oxygen species in C. vulgaris. Up-conversion of red light (654 nm) was shown to improve biomass yields in C. vulgaris. In principle, up-conversion can be used to increase the utilization range of the electromagnetic spectrum for improved cultivation of photosynthetic systems such as plants, algae, and microalgae. © 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
About the journal
JournalData powered by TypesetBiotechnology Journal
PublisherData powered by TypesetWiley-VCH Verlag
ISSN18606768
Open AccessNo
Concepts (41)
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    Algae
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    Biomass
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    Light emission
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    Microorganisms
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    Phosphors
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    Photons
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    Productivity
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    Reaction kinetics
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    Chlorella vulgaris
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    LIPID PRODUCTIVITIES
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    PHOTON UP CONVERSIONS
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    PHOTOSYNTHETICALLY ACTIVE RADIATION
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    REACTIVE SPECIES
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    Ecology
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    CAROTENOID
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    Chlorophyll
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    Lipid
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    Phosphorus
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    Reactive oxygen metabolite
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    ALGAL GROWTH
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    Article
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    Biomass production
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    Biotechnological procedures
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    CHLOROPHYLL CONTENT
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    Electromagnetic field
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    Growth rate
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    Microalga
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    Nonhuman
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    PHOTON UP CONVERSION
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    PHOTOSYNTHETICALLY ACTIVE RADIATION
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    Plant
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    Priority journal
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    Biotechnology
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    Growth, development and aging
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    Lipid metabolism
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    Metabolism
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    Photon
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    Photosynthesis
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    Procedures
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    Radiation response
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    Microalgae