Enhancement of carotenoids by mutation and stress induced carotenogenic genes in Haematococcus pluvialis mutants

BS Kamath, R Vidhyavathi, R Sarada… - Bioresource …, 2008 - Elsevier
Bioresource technology, 2008Elsevier
Growing culture of green alga Haematococcus was exposed to mutagens such as UV, ethyl
methane sulphonate (EMS) and 1-methyl 3-nitro 1-nitrosoguanidine (NTG), and further
screened over herbicide-glufosinate. The survival rate of cells decreased with increasing
concentration of mutagens and herbicides. The mutants exhibited 23–59% increase in total
carotenoid and astaxanthin contents. The NTG treated glufosinate resistant mutant showed
increased (2.2% to 3.8% w/w) astaxanthin content. The transcript levels of phytoene …
Growing culture of green alga Haematococcus was exposed to mutagens such as UV, ethyl methane sulphonate (EMS) and 1-methyl 3-nitro 1-nitrosoguanidine (NTG), and further screened over herbicide - glufosinate. The survival rate of cells decreased with increasing concentration of mutagens and herbicides. The mutants exhibited 23–59% increase in total carotenoid and astaxanthin contents. The NTG treated glufosinate resistant mutant showed increased (2.2% to 3.8% w/w) astaxanthin content. The transcript levels of phytoene synthase, phytoene desaturase, lycopene cyclase, β-carotene ketolase and β -carotene hydroxylase enzymes in the mutant cultures were found to be 13-18, 14-17, 3, 3-22 and 6-20 fold higher respectively compared to wild type. The mutant obtained by UV irradiation showed highest lycopene cyclase activity (458 nmole β -carotene formed/mg protein/h) followed by NTG mutant (315 nmole β -carotene formed/mg protein/h) when compared to that of parent strain (105 nmole β -carotene formed/mg protein/h). Expression analysis of carotenoid biosynthetic genes in the mutants exhibited increase in transcript levels compared to wild type.
Elsevier
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