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Augmented CO2 tolerance by expressing a single H+-pump enables microalgal valorization of industrial flue gas
- Choi, Hong Il;
- Hwang, Sung-Won;
- Kim, Jongrae;
- Park, Byeonghyeok;
- Jin, EonSeon;
- 외 2명
WEB OF SCIENCE
72SCOPUS
87초록
Microalgae used for CO2 removal in an industrial exhaust gas stream usually has low CO2 tolerance. Here, the authors increase CO2 tolerance by expressing a single H + -pump and enable microalgal valorization of industrial flue gas. Microalgae can accumulate various carbon-neutral products, but their real-world applications are hindered by their CO2 susceptibility. Herein, the transcriptomic changes in a model microalga, Chlamydomonas reinhardtii, in a high-CO2 milieu (20%) are evaluated. The primary toxicity mechanism consists of aberrantly low expression of plasma membrane H+-ATPases (PMAs) accompanied by intracellular acidification. Our results demonstrate that the expression of a universally expressible PMA in wild-type strains makes them capable of not only thriving in acidity levels that they usually cannot survive but also exhibiting 3.2-fold increased photoautotrophic production against high CO2 via maintenance of a higher cytoplasmic pH. A proof-of-concept experiment involving cultivation with toxic flue gas (13 vol% CO2, 20 ppm NOX, and 32 ppm SOX) shows that the production of CO2-based bioproducts by the strain is doubled compared with that by the wild-type, implying that this strategy potentially enables the microalgal valorization of CO2 in industrial exhaust.
키워드
- 제목
- Augmented CO2 tolerance by expressing a single H+-pump enables microalgal valorization of industrial flue gas
- 저자
- Choi, Hong Il; Hwang, Sung-Won; Kim, Jongrae; Park, Byeonghyeok; Jin, EonSeon; Choi, In-Geol; Sim, Sang Jun
- 발행일
- 2021-10
- 유형
- Article
- 권
- 12
- 호
- 1
- 페이지
- 1 ~ 15