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Application of electrical treatment on Euglena gracilis for increasing paramylon production

Authors
Kim, Jee YoungOh, Jeong-JooKim, Da HeeKim, Hyun SooLee, ChangsuPark, JaewonChoi, Yoon-E
Issue Date
2월-2021
Publisher
SPRINGER
Keywords
Electrical stimulation; Paramylon; Euglena gracilis; ddPCR and beta glucan synthases
Citation
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, v.105, no.3, pp.1031 - 1039
Indexed
SCIE
SCOPUS
Journal Title
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
Volume
105
Number
3
Start Page
1031
End Page
1039
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/129335
DOI
10.1007/s00253-020-11033-9
ISSN
0175-7598
Abstract
Paramylon also called beta-1,3-glucan is a value-added product produced from Euglena gracilis. Recently, researchers have developed various strategies for the enhanced paramylon production, among which electrical treatment for microbial stimulation can be an alternative owing to the applicability to large-scale cultivation. In this study, we applied the electrical treatment for enhanced paramylon production and found the proper treatment conditions. Under the treatment with platinum electrodes at 10 mA, the paramylon production of treated cells was significantly increased about 2.5-fold, compared to those of the untreated cells, although the density of cells was maintained due to considerable stress. The size of treated cells became larger, possibly due to the increased level of paramylon production within the cells. Accordingly, the contents of glucose uptake, glucose-6-phosphate (G6P), glucose-1-phosphate (G1P), and uridine diphosphoglucose (UDPG) were shifted to appropriate states for the process of paramylon synthesis under the treatment. The increased level of transcripts encoding glucan synthase-like 2 (EgGSL2) was also confirmed via droplet digital PCR (ddPCR) under the treatment. Overall, this study makes a major contribution to research on electrical stimulation and provides new insights into E. gracilis metabolism like paramylon synthesis.
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College of Life Sciences and Biotechnology > Division of Environmental Science and Ecological Engineering > 1. Journal Articles

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