메뉴 건너뛰기




Volumn 173, Issue 3, 2007, Pages 526-536

The giant kelp Macrocystis pyrifera presents a different nonphotochemical quenching control than higher plants

Author keywords

Macrocystis pyrifera; Nonphotochemical quenching (NPQ); Photoacclimatization; Photoprotection; Transthylakoidal proton gradient; Xanthophyll cycle

Indexed keywords

AMMONIUM CHLORIDE; CHLOROPHYLL; CHLOROPHYLL A; DITHIOTHREITOL; XANTHOPHYLL; ZEAXANTHIN;

EID: 33846236843     PISSN: 0028646X     EISSN: 14698137     Source Type: Journal    
DOI: 10.1111/j.1469-8137.2006.01951.x     Document Type: Article
Times cited : (53)

References (41)
  • 1
    • 0031689385 scopus 로고    scopus 로고
    • Fluorescence quenching in four unicellular algae with different light-harvesting and xanthophyll-cycle pigments
    • Casper-Lindley C, Björkman O. 1998. Fluorescence quenching in four unicellular algae with different light-harvesting and xanthophyll-cycle pigments. Photosynthesis Research 56: 277-289.
    • (1998) Photosynthesis Research , vol.56 , pp. 277-289
    • Casper-Lindley, C.1    Björkman, O.2
  • 2
    • 33845570803 scopus 로고    scopus 로고
    • Photosynthetic performance, light absorption and pigment composition of Macrocystis pyrifera (Laminariales, Phaeophyceae) blades from different depths
    • Colombo-Pallotta MF, García-Mendoza E, Ladah L. 2006. Photosynthetic performance, light absorption and pigment composition of Macrocystis pyrifera (Laminariales, Phaeophyceae) blades from different depths. Journal of Phycology 42: 1225-1234.
    • (2006) Journal of Phycology , vol.42 , pp. 1225-1234
    • Colombo-Pallotta, M.F.1    García-Mendoza, E.2    Ladah, L.3
  • 3
    • 23744439566 scopus 로고    scopus 로고
    • A mechanism of nonphotochemical energy dissipation, independent from PsbS, revealed by a conformational change in the antenna protein CP26
    • Dall'Osto L, Caffarri S, Bassi R. 2005. A mechanism of nonphotochemical energy dissipation, independent from PsbS, revealed by a conformational change in the antenna protein CP26. Plant Cell 17: 1217-1232.
    • (2005) Plant Cell , vol.17 , pp. 1217-1232
    • Dall'Osto, L.1    Caffarri, S.2    Bassi, R.3
  • 5
    • 0022207357 scopus 로고
    • The temporal and spatial distribution of underwater quantum irradiation in a Southern California kelp forest
    • Dean TA. 1985. The temporal and spatial distribution of underwater quantum irradiation in a Southern California kelp forest. Estuarine, Coastal and Shelf Science 21: 835-844.
    • (1985) Estuarine, Coastal and Shelf Science , vol.21 , pp. 835-844
    • Dean, T.A.1
  • 6
    • 0030062410 scopus 로고    scopus 로고
    • Xanthophyll cycle and light stress in nature: Uniform response to excess direct sunlight among higher plant species
    • Demmig-Adams B, Adams WW III. 1996. Xanthophyll cycle and light stress in nature: uniform response to excess direct sunlight among higher plant species. Planta 198: 460-470.
    • (1996) Planta , vol.198 , pp. 460-470
    • Demmig-Adams, B.1    Adams III, W.W.2
  • 7
    • 0038772441 scopus 로고    scopus 로고
    • The xanthophyll cycle of higher plants: Influence of antenna size and membrane organization
    • Färber A, Jahns P. 1998. The xanthophyll cycle of higher plants: influence of antenna size and membrane organization. Biochimica et Biophysica Acta 1363: 47-58.
    • (1998) Biochimica et Biophysica Acta , vol.1363 , pp. 47-58
    • Färber, A.1    Jahns, P.2
  • 8
    • 0001528358 scopus 로고
    • Light energy distribution in the brown algae Macrocystis pyrifera (giant kelp)
    • Fork DC, Herbert SK, Malkin S. 1991. Light energy distribution in the brown algae Macrocystis pyrifera (giant kelp). Plant Physiology 95: 731-739.
    • (1991) Plant Physiology , vol.95 , pp. 731-739
    • Fork, D.C.1    Herbert, S.K.2    Malkin, S.3
  • 10
    • 0036909882 scopus 로고    scopus 로고
    • Non-photochemical quenching of chlorophyll fluorescence in Chlorella fusca acclimated to constant and dynamic light conditions
    • García-Mendoza E, Matthijs HCP, Schubert H, Mur L. 2002. Non-photochemical quenching of chlorophyll fluorescence in Chlorella fusca acclimated to constant and dynamic light conditions. Photosynthesis Research 74: 303-315.
    • (2002) Photosynthesis Research , vol.74 , pp. 303-315
    • García-Mendoza, E.1    Matthijs, H.C.P.2    Schubert, H.3    Mur, L.4
  • 11
    • 3042963710 scopus 로고
    • Growth and utilization of internal nitrogen reserves by the giant kelp Macrocystis pyrifera in a low-nitrogen ambient
    • Gerard V. 1982. Growth and utilization of internal nitrogen reserves by the giant kelp Macrocystis pyrifera in a low-nitrogen ambient. Marine Biology 66: 27-35.
    • (1982) Marine Biology , vol.66 , pp. 27-35
    • Gerard, V.1
  • 12
    • 0021562557 scopus 로고
    • Physiological effects of El Niño on giant kelp in southern California
    • Gerard V. 1984. Physiological effects of El Niño on giant kelp in southern California. Marine Biology Letters 5: 317-322.
    • (1984) Marine Biology Letters , vol.5 , pp. 317-322
    • Gerard, V.1
  • 14
    • 85047668662 scopus 로고
    • Frond elongation rates of shallow water Macrocystis pyrifera (L.) Ag. in northern Baja California, Mexico
    • González-Fregoso J, Ibarra-Obando S, North W. 1991. Frond elongation rates of shallow water Macrocystis pyrifera (L.) Ag. in northern Baja California, Mexico. Journal of Applied Phycology 3: 311-318.
    • (1991) Journal of Applied Phycology , vol.3 , pp. 311-318
    • González-Fregoso, J.1    Ibarra-Obando, S.2    North, W.3
  • 15
    • 0036670923 scopus 로고    scopus 로고
    • A Role for a light-harvesting antenna complex of Photosystem II in photoprotection
    • Govindjee. 2002. A Role for a light-harvesting antenna complex of Photosystem II in photoprotection. Plant Cell 14: 1663-1668.
    • (2002) Plant Cell , vol.14 , pp. 1663-1668
    • Govindjee1
  • 16
    • 0031863776 scopus 로고    scopus 로고
    • Capability of dynamic photoinhibition in Artic macroalgae is related to their depth distribution
    • Hanelt D. 1998. Capability of dynamic photoinhibition in Artic macroalgae is related to their depth distribution. Marine Biology 131: 361-369.
    • (1998) Marine Biology , vol.131 , pp. 361-369
    • Hanelt, D.1
  • 17
    • 0030062555 scopus 로고    scopus 로고
    • Kinetic study on the xanthophyll cycle in barley leaves
    • Härtel H, Lokstein H, Grimm B, Rank B. 1996. Kinetic study on the xanthophyll cycle in barley leaves. Plant Physiology 110: 471-482.
    • (1996) Plant Physiology , vol.110 , pp. 471-482
    • Härtel, H.1    Lokstein, H.2    Grimm, B.3    Rank, B.4
  • 18
    • 0033587751 scopus 로고    scopus 로고
    • The violaxanthin cycle protects plants from photooxidative damage by more than one mechanism
    • Havaux M, Niyogi KK. 1999. The violaxanthin cycle protects plants from photooxidative damage by more than one mechanism. Proceedings of the Natural Academy of Sciences, USA 96: 8762-8767.
    • (1999) Proceedings of the Natural Academy of Sciences, USA , vol.96 , pp. 8762-8767
    • Havaux, M.1    Niyogi, K.K.2
  • 19
    • 13944278847 scopus 로고    scopus 로고
    • Molecular design of the photosystem II light-harvesting antenna: Photosynthesis and photoprotection
    • Horton P, Ruban A. 2005. Molecular design of the photosystem II light-harvesting antenna: photosynthesis and photoprotection. Journal of Experimental Botany 56: 365-373.
    • (2005) Journal of Experimental Botany , vol.56 , pp. 365-373
    • Horton, P.1    Ruban, A.2
  • 20
    • 0026072865 scopus 로고
    • Control of the light harvesting function of chloroplast membranes by aggregation of the LHCII chlorophyll protein complex
    • Horton P, Ruban A, Rees D, Pascal AA, Noctor G, Young AJ. 1991. Control of the light harvesting function of chloroplast membranes by aggregation of the LHCII chlorophyll protein complex. FEBS Letters 292: 1-4.
    • (1991) FEBS Letters , vol.292 , pp. 1-4
    • Horton, P.1    Ruban, A.2    Rees, D.3    Pascal, A.A.4    Noctor, G.5    Young, A.J.6
  • 21
    • 23644441921 scopus 로고    scopus 로고
    • Control of the light harvesting function of chloroplast membranes: The LHCII-aggregation model for non-photochemical quenching
    • Horton P, Wentworth M, Ruban AV. 2005. Control of the light harvesting function of chloroplast membranes: the LHCII-aggregation model for non-photochemical quenching. FEBS Letters 579: 4201-4206.
    • (2005) FEBS Letters , vol.579 , pp. 4201-4206
    • Horton, P.1    Wentworth, M.2    Ruban, A.V.3
  • 22
    • 0029164191 scopus 로고
    • The xanthophyll cycle in intermittent light-growth pea plants. Possible fuctions of chlorophyll a/b-binding proteins
    • Jahns P. 1995. The xanthophyll cycle in intermittent light-growth pea plants. Possible fuctions of chlorophyll a/b-binding proteins. Plant Physiology 108: 149-156.
    • (1995) Plant Physiology , vol.108 , pp. 149-156
    • Jahns, P.1
  • 23
    • 34249958267 scopus 로고
    • The use of chlorophyll fluorescence nomenclature in plant stress physiology
    • van Kooten O, Snel JFH. 1990. The use of chlorophyll fluorescence nomenclature in plant stress physiology. Photosynthesis Research 25: 147-150.
    • (1990) Photosynthesis Research , vol.25 , pp. 147-150
    • van Kooten, O.1    Snel, J.F.H.2
  • 24
    • 0035983964 scopus 로고    scopus 로고
    • Influence of the diadinoxanthin pool size on photoprotection in the marine planktonic diatom Phaeodactylum tricornutum
    • Lavaud J, Rousseau B, Gorkom HJ, Etienne A-L. 2002a. Influence of the diadinoxanthin pool size on photoprotection in the marine planktonic diatom Phaeodactylum tricornutum. Plant Physiology 129: 1398-1406.
    • (2002) Plant Physiology , vol.129 , pp. 1398-1406
    • Lavaud, J.1    Rousseau, B.2    Gorkom, H.J.3    Etienne, A.-L.4
  • 25
    • 0037125210 scopus 로고    scopus 로고
    • In diatoms, a transthylakoid proton gradient alone is not sufficient to induce a non-photochemical fluorescence quenching
    • Lavaud J, Rousseau B, Etienne A-L. 2002b. In diatoms, a transthylakoid proton gradient alone is not sufficient to induce a non-photochemical fluorescence quenching. FEBS Letters 523: 163-166.
    • (2002) FEBS Letters , vol.523 , pp. 163-166
    • Lavaud, J.1    Rousseau, B.2    Etienne, A.-L.3
  • 26
    • 1342269569 scopus 로고    scopus 로고
    • General features of photoprotection by energy dissipation in planktonic diatoms (Bacillariophyceae)
    • Lavaud J, Rousseau B, Etienne A-L. 2004. General features of photoprotection by energy dissipation in planktonic diatoms (Bacillariophyceae). Journal of Phycology 40: 130-137.
    • (2004) Journal of Phycology , vol.40 , pp. 130-137
    • Lavaud, J.1    Rousseau, B.2    Etienne, A.-L.3
  • 28
    • 0033587763 scopus 로고    scopus 로고
    • Algae displaying the diadinoxanthin cycle also possess the violaxanthin cycle
    • Lohr M, Wilhelm C. 1999. Algae displaying the diadinoxanthin cycle also possess the violaxanthin cycle. Proceedings of the National Academy of Sciences, USA 96: 8784-8789.
    • (1999) Proceedings of the National Academy of Sciences, USA , vol.96 , pp. 8784-8789
    • Lohr, M.1    Wilhelm, C.2
  • 30
    • 0035028317 scopus 로고    scopus 로고
    • Non-photochemical quenching. A response to excess light energy
    • Müller P, Li X-P, Niyogi KK. 2001. Non-photochemical quenching. A response to excess light energy. Plant Physiology 125: 1558-1566.
    • (2001) Plant Physiology , vol.125 , pp. 1558-1566
    • Müller, P.1    Li, X.-P.2    Niyogi, K.K.3
  • 32
    • 0025819029 scopus 로고
    • The relationship between zeaxanthin, energy-dependent quenching of chlorophyll fluorescence, and trans-thylakoid pH gradient in isolated chloroplasts
    • Noctor G, Rees D, Young A, Horton P. 1991. The relationship between zeaxanthin, energy-dependent quenching of chlorophyll fluorescence, and trans-thylakoid pH gradient in isolated chloroplasts. Biochimica et Biophysica Acta 1057: 320-330.
    • (1991) Biochimica et Biophysica Acta , vol.1057 , pp. 320-330
    • Noctor, G.1    Rees, D.2    Young, A.3    Horton, P.4
  • 34
    • 0028001875 scopus 로고
    • Non-photochemical fluorescence quenching and the diadinoxanthin cycle in a marine diatom
    • Olaizola M, Laroche J, Kolber Z, Falkowski PG. 1994. Non-photochemical fluorescence quenching and the diadinoxanthin cycle in a marine diatom. Photosynthesis Research 41: 357-370.
    • (1994) Photosynthesis Research , vol.41 , pp. 357-370
    • Olaizola, M.1    Laroche, J.2    Kolber, Z.3    Falkowski, P.G.4
  • 35
    • 0001427673 scopus 로고
    • Light-harvesting function in the diatom Phaeodactylum tricornutum. II. Distribution of excitation energy between the photosystems
    • Owens TG, Wold ER. 1986. Light-harvesting function in the diatom Phaeodactylum tricornutum. II. Distribution of excitation energy between the photosystems. Plant Physiology 80: 730-746.
    • (1986) Plant Physiology , vol.80 , pp. 730-746
    • Owens, T.G.1    Wold, E.R.2
  • 36
    • 0028310069 scopus 로고
    • Regulation and possible function of the violaxanthin cycle
    • Pfündel E, Bilger W. 1994. Regulation and possible function of the violaxanthin cycle. Photosynthesis Research 42: 89-109.
    • (1994) Photosynthesis Research , vol.42 , pp. 89-109
    • Pfündel, E.1    Bilger, W.2
  • 37
    • 0036804679 scopus 로고    scopus 로고
    • A smaller and impaired xanthophyll cycle makes the deep sea macroalga Laminaria abyssalis (Phaeophyceae) highly sensitive to daylight when compared with shallow water Laminaria digitata
    • Rodrigues MA, Dos Santos CP, Young AJ, Strbac D, Hall DO. 2002. A smaller and impaired xanthophyll cycle makes the deep sea macroalga Laminaria abyssalis (Phaeophyceae) highly sensitive to daylight when compared with shallow water Laminaria digitata. Journal of Phycology 38: 939-947.
    • (2002) Journal of Phycology , vol.38 , pp. 939-947
    • Rodrigues, M.A.1    Dos Santos, C.P.2    Young, A.J.3    Strbac, D.4    Hall, D.O.5
  • 39
    • 0032816979 scopus 로고    scopus 로고
    • Xanthophyll cycle pigment localization and dynamics during exposure to low temperature and light stress in Vinca major
    • Verhoeven AS, Adams WW, Demmig-Adams B, Croce R, Bassi R. 1999. Xanthophyll cycle pigment localization and dynamics during exposure to low temperature and light stress in Vinca major. Plant Physiology 120: 727-737.
    • (1999) Plant Physiology , vol.120 , pp. 727-737
    • Verhoeven, A.S.1    Adams, W.W.2    Demmig-Adams, B.3    Croce, R.4    Bassi, R.5
  • 40
    • 0025597742 scopus 로고
    • The biochemistry and physiology of light-harvesting processes in chlorophyll b- and chlorophyll c- containing algae
    • Wilhelm C. 1990. The biochemistry and physiology of light-harvesting processes in chlorophyll b- and chlorophyll c- containing algae. Plant Physiology and Biochemistry 28: 293-306.
    • (1990) Plant Physiology and Biochemistry , vol.28 , pp. 293-306
    • Wilhelm, C.1


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.