Scalable Cultivation of Engineered Cyanobacteria for Squalene Production from Industrial Flue Gas in a Closed Photobioreactor

  • Choi, Sun Young
  • Sim, Sang Jun
  • Ko, Sung Cheon
  • Son, Jigyeong
  • Lee, Jeong Seop
  • 외 3명
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초록

Economically feasible photosynthetic cultivation of microalgal and cyanobacterial strains is crucial for the biological conversion of CO2 and potential CO2 mitigation to challenge global warming. To overcome the economic barriers, the production of value-added chemicals was desired by compensating for the overall processing cost. Here, we engineered cyanobacteria for photosynthetic squalene production and cultivated them in a scalable photobioreactor using industrial flue gas. First, an inducer-free gene expression system was developed for the cyanobacteria to lower production const. Then, the recombinant cyanobacteria were cultivated in a closed photobioreactor (100 L) using flue gas (5% CO2) as the sole carbon source under natural sunlight as the only energy source. Seasonal light intensities and temperatures were analyzed along with cyanobacterial cell growth and squalene production in August and October 2019. As a result, the effective irradiation hours were the most critical factor for the large-scale cultivation of cyanobacteria. Thus, an automated photobioprocess system will be developed based on the regional light sources.

키워드

cyanobacteriasqualeneoutdoor cultivationflue gassynechococcus elongatus PCC 7942ELONGATUS PCC 7942MICROALGAECO2SYSTEM
제목
Scalable Cultivation of Engineered Cyanobacteria for Squalene Production from Industrial Flue Gas in a Closed Photobioreactor
저자
Choi, Sun YoungSim, Sang JunKo, Sung CheonSon, JigyeongLee, Jeong SeopLee, Hyun JeongChang, Won SeokWoo, Han Min
DOI
10.1021/acs.jafc.0c03133
발행일
2020-09-16
유형
Article
저널명
Journal of Agricultural and Food Chemistry
68
37
페이지
10050 ~ 10055