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Journal Abstract Search


510 related items for PubMed ID: 17012596

  • 1. Transformation of the green alga Haematococcus pluvialis with a phytoene desaturase for accelerated astaxanthin biosynthesis.
    Steinbrenner J, Sandmann G.
    Appl Environ Microbiol; 2006 Dec; 72(12):7477-84. PubMed ID: 17012596
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  • 2. Regulation of astaxanthin and its intermediates through cloning and genetic transformation of β-carotene ketolase in Haematococcus pluvialis.
    Kathiresan S, Chandrashekar A, Ravishankar GA, Sarada R.
    J Biotechnol; 2015 Feb 20; 196-197():33-41. PubMed ID: 25612872
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  • 3. Regulation of two carotenoid biosynthesis genes coding for phytoene synthase and carotenoid hydroxylase during stress-induced astaxanthin formation in the green alga Haematococcus pluvialis.
    Steinbrenner J, Linden H.
    Plant Physiol; 2001 Feb 20; 125(2):810-7. PubMed ID: 11161038
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  • 4. Phytoene desaturase is localized exclusively in the chloroplast and up-regulated at the mRNA level during accumulation of secondary carotenoids in Haematococcus pluvialis (Volvocales, chlorophyceae).
    Grünewald K, Eckert M, Hirschberg J, Hagen C.
    Plant Physiol; 2000 Apr 20; 122(4):1261-8. PubMed ID: 10759523
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  • 6. Genetic engineering of the green alga Chlorella zofingiensis: a modified norflurazon-resistant phytoene desaturase gene as a dominant selectable marker.
    Liu J, Sun Z, Gerken H, Huang J, Jiang Y, Chen F.
    Appl Microbiol Biotechnol; 2014 Jun 20; 98(11):5069-79. PubMed ID: 24584513
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  • 7. ISOLATION AND CHARACTERIZATION OF THE PHYTOENE DESATURASE GENE AS A POTENTIAL SELECTIVE MARKER FOR GENETIC ENGINEERING OF THE ASTAXANTHIN-PRODUCING GREEN ALGA CHLORELLA ZOFINGIENSIS (CHLOROPHYTA)(1).
    Huang J, Liu J, Li Y, Chen F.
    J Phycol; 2008 Jun 20; 44(3):684-90. PubMed ID: 27041426
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  • 8. Regulation of carotenoid biosynthetic genes expression and carotenoid accumulation in the green alga Haematococcus pluvialis under nutrient stress conditions.
    Vidhyavathi R, Venkatachalam L, Sarada R, Ravishankar GA.
    J Exp Bot; 2008 Jun 20; 59(6):1409-18. PubMed ID: 18343887
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  • 9. Occurrence and environmental stress responses of two plastid terminal oxidases in Haematococcus pluvialis (Chlorophyceae).
    Wang J, Sommerfeld M, Hu Q.
    Planta; 2009 Jun 20; 230(1):191-203. PubMed ID: 19408010
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  • 12. Induction of salicylic acid (SA) on transcriptional expression of eight carotenoid genes and astaxanthin accumulation in Haematococcus pluvialis.
    Gao Z, Meng C, Zhang X, Xu D, Miao X, Wang Y, Yang L, Lv H, Chen L, Ye N.
    Enzyme Microb Technol; 2012 Sep 10; 51(4):225-30. PubMed ID: 22883557
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  • 13. Molecular mechanisms of the coordination between astaxanthin and fatty acid biosynthesis in Haematococcus pluvialis (Chlorophyceae).
    Chen G, Wang B, Han D, Sommerfeld M, Lu Y, Chen F, Hu Q.
    Plant J; 2015 Jan 10; 81(1):95-107. PubMed ID: 25353310
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  • 14. Transcriptome sequencing and metabolic pathways of astaxanthin accumulated in Haematococcus pluvialis mutant under 15% CO2.
    Cheng J, Li K, Zhu Y, Yang W, Zhou J, Cen K.
    Bioresour Technol; 2017 Mar 10; 228():99-105. PubMed ID: 28061399
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  • 19. Gene expression profile analysis in astaxanthin-induced Haematococcus pluvialis using a cDNA microarray.
    Eom H, Lee CG, Jin E.
    Planta; 2006 May 10; 223(6):1231-42. PubMed ID: 16320067
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  • 20. Enhancement of carotenoids by mutation and stress induced carotenogenic genes in Haematococcus pluvialis mutants.
    Sandesh Kamath B, Vidhyavathi R, Sarada R, Ravishankar GA.
    Bioresour Technol; 2008 Dec 10; 99(18):8667-73. PubMed ID: 18499448
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