Enhanced production of lutein in heterotrophic Chlorella protothecoides by oxidative stress

被引:0
作者
Dong Wei
Feng Chen
Gu Chen
XueWu Zhang
LongJun Liu
Hao Zhang
机构
[1] South China University of Technology,College of Light Industry and Food Sciences
[2] The University of Hong Kong,School of Biological Sciences
[3] Jiangnan University,College of Food Sciences
来源
Science in China Series C: Life Sciences | 2008年 / 51卷
关键词
heterotrophic; lutein; oxidative stress; ROS;
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中图分类号
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摘要
The fast growing unicellular green microalgae Chlorella protothecoides has attracted interest as a promising organism for commercial production of a high-value carotenoid, lutein, by heterotrophic fermentation. Effects of two oxidant-forming reactive oxygen species (ROS) on the biomass concentration, and yield and content of lutein in batch culture of heterotrophic Chlorella protothecoides were investigated in this study. The addition of 0.1 mmol/L H2O2 and 0.01 mmol/L NaClO plus 0.5 mmol/L Fe2+ to the culture led to the generation of ·OH and enhanced the lutein content from 1.75 to 1.90 and 1.95 mg/g, respectively. The lutein content further increased to 1.98 mg/g when 0.01 mmol/L H2O2 and 0.5 mmol/L NaClO were added to generate 1O2. The maximum yield of lutein (28.5, 29.8 and 31.4 mg/L) and a high biomass concentration (15.0, 15.3 and 15.9 g/L) were also achieved through the above treatments. The results indicated that 1O2 could promote lutein formation and enhance lutein production in heterotrophic Chlorella protothecoides. Moreover, 1O2 produced from the reaction of H2O2 and NaClO was more effective in enhancing lutein production and reducing biomass loss than ·OH from the reaction of H2O2 or NaClO plus Fe2+.
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页码:1088 / 1093
页数:5
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共 89 条
[31]  
Zhang X. M.(2002)Carotenoids as protective response against oxidative damage in Chin Pharmacol Toxicol 16 464-470
[32]  
Shi F.(1997)Employment of reactive oxygen species to enhance astaxanthin formation in J Biol Chem 272 6128-6132
[33]  
Chen X. M.(2006) in heterotrophic culture BMC Plant Biol 6 13-undefined
[34]  
Shi H. J.(undefined)Are active oxygen species involved in induction of β-carotene in undefined undefined undefined-undefined
[35]  
Liu X. W.(undefined)Does astaxanthin protect undefined undefined undefined-undefined
[36]  
Zhang X. M.(undefined) against light damage undefined undefined undefined-undefined
[37]  
Shi X. W.(undefined)Accumulation of secondary carotenoids in undefined undefined undefined-undefined
[38]  
Zhang F.(undefined)Pigments and structural changes in undefined undefined undefined-undefined
[39]  
Chen X. M.(undefined) upon light and nitrogen stress undefined undefined undefined-undefined
[40]  
Shi X. M.(undefined)Enhanced carotenoid biosynthesis by oxidative stress in acetate-induced cyst cells of a green unicellular alga, undefined undefined undefined-undefined