Metabolic Engineering of Chlamydomonas reinhardtii for Enhanced β-Carotene and Lutein Production

被引:0
作者
Jayant Pralhad Rathod
Chaitali Vira
Arvind M. Lali
Gunjan Prakash
机构
[1] Institute of Chemical Technology Institute of Chemical Technology,DBT
[2] Institute of Chemical Technology Institute of Chemical Technology,ICT Centre for Energy Biosciences
来源
Applied Biochemistry and Biotechnology | 2020年 / 190卷
关键词
Red yeast; β-Carotene; Lutein;
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学科分类号
摘要
The metabolic engineering of Chlamydomonas reinhardtii, one of the fastest-growing microalgae, is a potential alternative for enhanced carotenoid productivity. CrtYB (phytoene-β-carotene synthase – PBS) gene from red yeast Xanthophyllomyces dendrorhous encodes for a bifunctional enzyme that harbours both phytoene synthase (psy) and lycopene cyclization (lcyb) activities. Heterologous expression of this bifunctional PBS gene led to 38% enhancement in β-carotene along with 60% increase in the lutein yields under low light conditions of 75 μmol photons m−2 s−1. Short Duration-High Light induction strategy led to overall 72% and 83% increase in β-carotene and lutein yield reaching up to 22.8 mg g−1 and 8.9 mg g−1, respectively. This is the first report of expression of heterologous bifunctional PBS gene resulting in simultaneous enhancement in β-carotene and lutein content in phototrophic engineered cells.
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页码:1457 / 1469
页数:12
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共 139 条
[1]  
Koller M(2014)Microalgae as versatile cellular factories for valued products Algal Research 6 52-63
[2]  
Muhr A(2015)Establishing The Plant Journal 82 532-546
[3]  
Braunegg G(2011) as an industrial biotechnology host Applied Microbiology and Biotechnology 91 341-351
[4]  
Scaife MA(2011)Enhancement of carotenoids biosynthesis in Biotechnology Progress 27 54-60
[5]  
Nguyen GT(2013) by nuclear transformation using a Process Biochemistry 48 788-795
[6]  
Rico J(2016) gene isolated from Preparative Biochemistry & Biotechnology 46 810-814
[7]  
Lambert D(2012)Overexpression of an exogenous PLoS One 7 e43349-152
[8]  
Helliwell KE(2007) gene in the unicellular alga Journal of Biotechnology 130 143-809
[9]  
Smith AG(2016) leads to an increase in the content of carotenoids Preparative Biochemistry & Biotechnology 46 803-313
[10]  
Cordero BF(1999)Engineering of an endogenous Phytochemical Analysis 10 307-231