耐辐射球菌
番茄红素
辐照
食品科学
脱球菌
代谢工程
化学
类胡萝卜素
生物化学
酶
基因
物理
核物理学
作者
Chang Keun Kang,Jung Eun Yang,Hae Woong Park,Yong Jun Choi
出处
期刊:Journal of Microbiology and Biotechnology
[Springer Science+Business Media]
日期:2020-10-21
卷期号:30 (12): 1937-1943
被引量:10
标识
DOI:10.4014/jmb.2009.09013
摘要
Although classical metabolic engineering strategies have succeeded in developing microbial strains capable of producing desired bioproducts, metabolic imbalance resulting from extensive genetic manipulation often leads to decreased productivity. Thus, abiotic strategies for improving microbial production performance can be an alternative to overcome drawbacks arising from intensive metabolic engineering. Herein, we report a promising abiotic method for enhancing lycopene production by UV-C irradiation using a radiation-resistant ΔcrtLm/crtB+dxs+Deinococcus radiodurans R1 strain. First, the onset of UV irradiation was determined through analysis of the expression of 11 genes mainly involved in the carotenoid biosynthetic pathway in the ΔcrtLm/crtB+dxs+D. radiodurans R1 strain. Second, the effects of different UV wavelengths (UV-A, UV-B, and UV-C) on lycopene production were investigated. UV-C irradiation induced the highest production, resulting in a 69.9% increase in lycopene content [64.2 ± 3.2 mg/g dry cell weight (DCW)]. Extended UV-C irradiation further enhanced lycopene content up to 73.9 ± 2.3 mg/g DCW, a 95.5% increase compared to production without UV-C irradiation (37.8 ± 0.7 mg/g DCW).
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