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Journal Abstract Search


459 related items for PubMed ID: 15143443

  • 1. The xanthophyll cycle in green algae (chlorophyta): its role in the photosynthetic apparatus.
    Masojídek J, Kopecký J, Koblízek M, Torzillo G.
    Plant Biol (Stuttg); 2004 May; 6(3):342-9. PubMed ID: 15143443
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  • 2. Photoadaptation of two members of the Chlorophyta (Scenedesmus and Chlorella) in laboratory and outdoor cultures: changes in chlorophyll fluorescence quenching and the xanthophyll cycle.
    Masojídek J, Torzillo G, Koblízek M, Kopecký J, Bernardini P, Sacchi A, Komenda J.
    Planta; 1999 Jul; 209(1):126-35. PubMed ID: 10467039
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  • 3. Non-photochemical quenching and xanthophyll cycle activities in six green algal species suggest mechanistic differences in the process of excess energy dissipation.
    Quaas T, Berteotti S, Ballottari M, Flieger K, Bassi R, Wilhelm C, Goss R.
    J Plant Physiol; 2015 Jan 01; 172():92-103. PubMed ID: 25240793
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  • 4. Molecular genetics of xanthophyll-dependent photoprotection in green algae and plants.
    Baroli I, Niyogi KK.
    Philos Trans R Soc Lond B Biol Sci; 2000 Oct 29; 355(1402):1385-94. PubMed ID: 11127993
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  • 6. The xanthophyll cycle and NPQ in diverse desert and aquatic green algae.
    Lunch CK, Lafountain AM, Thomas S, Frank HA, Lewis LA, Cardon ZG.
    Photosynth Res; 2013 Jul 29; 115(2-3):139-51. PubMed ID: 23728511
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  • 7. Role of the reversible xanthophyll cycle in the photosystem II damage and repair cycle in Dunaliella salina.
    Jin E, Yokthongwattana K, Polle JE, Melis A.
    Plant Physiol; 2003 May 29; 132(1):352-64. PubMed ID: 12746540
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  • 8. Arabidopsis mutants define a central role for the xanthophyll cycle in the regulation of photosynthetic energy conversion.
    Niyogi KK, Grossman AR, Björkman O.
    Plant Cell; 1998 Jul 29; 10(7):1121-34. PubMed ID: 9668132
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  • 9. Energy transfer reactions involving carotenoids: quenching of chlorophyll fluorescence.
    Young AJ, Frank HA.
    J Photochem Photobiol B; 1996 Oct 29; 36(1):3-15. PubMed ID: 8988608
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  • 10. Desiccation induces accumulations of antheraxanthin and zeaxanthin in intertidal macro-alga Ulva pertusa (Chlorophyta).
    Xie X, Gao S, Gu W, Pan G, Wang G.
    PLoS One; 2013 Oct 29; 8(9):e72929. PubMed ID: 24039824
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  • 11. High-light stress and photoprotection in Umbilicaria antarctica monitored by chlorophyll fluorescence imaging and changes in zeaxanthin and glutathione.
    Barták M, Hájek J, Vráblíková H, Dubová J.
    Plant Biol (Stuttg); 2004 May 29; 6(3):333-41. PubMed ID: 15143442
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  • 12. Temperature-induced greening of Chlorella vulgaris. The role of the cellular energy balance and zeaxanthin-dependent nonphotochemical quenching.
    Wilson KE, Król M, Huner NP.
    Planta; 2003 Aug 29; 217(4):616-27. PubMed ID: 12905022
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  • 13. Analysis of non-photochemical energy dissipating processes in wild type Dunaliella salina (green algae) and in zea1, a mutant constitutively accumulating zeaxanthin.
    Thaipratum R, Melis A, Svasti J, Yokthongwattana K.
    J Plant Res; 2009 Jul 29; 122(4):465-76. PubMed ID: 19333687
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  • 15. Involvement of zeaxanthin and of the Cbr protein in the repair of photosystem II from photoinhibition in the green alga Dunaliella salina.
    Jin ES, Polle JE, Melis A.
    Biochim Biophys Acta; 2001 Nov 01; 1506(3):244-59. PubMed ID: 11779558
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  • 17. Dynamics of chromophore binding to Lhc proteins in vivo and in vitro during operation of the xanthophyll cycle.
    Morosinotto T, Baronio R, Bassi R.
    J Biol Chem; 2002 Oct 04; 277(40):36913-20. PubMed ID: 12114527
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  • 18. Epoxidation of zeaxanthin and antheraxanthin reverses non-photochemical quenching of photosystem II chlorophyll a fluorescence in the presence of trans-thylakoid delta pH.
    Gilmore AM, Mohanty N, Yamamoto HY.
    FEBS Lett; 1994 Aug 22; 350(2-3):271-4. PubMed ID: 8070578
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