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Cited 67 time in webofscience Cited 82 time in scopus
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Truncated light-harvesting chlorophyll antenna size in Chlorella vulgaris improves biomass productivity

Authors
Shin, Won-SubLee, BongsooJeong, Byeong-ryoolChang, Yong KeunKwon, Jong-Hee
Issue Date
Dec-2016
Publisher
SPRINGER
Keywords
Microalgae; Light-harvesting chlorophyll antenna; Photosynthetic productivity; Chlorella vulgaris
Citation
JOURNAL OF APPLIED PHYCOLOGY, v.28, no.6, pp 3193 - 3202
Pages
10
Indexed
SCI
SCIE
SCOPUS
Journal Title
JOURNAL OF APPLIED PHYCOLOGY
Volume
28
Number
6
Start Page
3193
End Page
3202
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/15111
DOI
10.1007/s10811-016-0874-8
ISSN
0921-8971
1573-5176
Abstract
Microalgae have been proposed as eco-friendly feedstocks for biodiesel production, because they accumulate large amounts of lipids and increase their biomass through photosynthesis. However, the photosynthetic efficiency of microalgae is too low for this strategy to be economically feasible. In an effort to overcome this issue, random mutants with reduced chlorophyll antenna size were generated by ethyl methanesulfonate (EMS)-mediated mutagenesis of Chlorella vulgaris. The antenna size mutant, herein designated E5, exhibited 56.5 and 75.8 % decreases in chlorophyll a and b contents, respectively, with significant reductions in the expression levels of peripheral light-harvesting antenna proteins in photosystem II. The saturated photosynthetic activity and electron transport rate of the E5 mutant were significantly higher and also showed reduced non-photochemical quenching (NPQ), compared to those of the wild type. Consequentially, the E5 mutant cultures achieved 44.5 % improvement in biomass productivity under high light (200 mu mol photons m(-2) s(-1)). These results suggest that improving the photosynthetic efficiency of microalgae could greatly enhance their biomass production, and such mutant strains can be applicable for large-scale outdoor cultivation which is typically exposed to high light intensity.
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