A new monitoring PAM fluorometer (MONI-PAM) to study the short- and long-term acclimation of photosystem II in field conditions

Albert Porcar‐Castell1, Erhard Pfündel2, Janne Korhonen1, Eija Juurola1
1Department of Forest Ecology, University of Helsinki, Helsinki, Finland
2Heinz Walz GmbH, Effeltrich, Germany

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Ananyev G, Kolber ZS, Klimov D, Falkowski PG, Berry JA, Rascher U, Martin R, Osmond B (2005) Remote sensing of heterogeneity in photosynthetic efficiency, electron transport and dissipation of excess light in Populus deltoides stands under ambient and elevated CO2 concentrations, and in a tropical forest canopy, using a new laser-induced fluorescence transient device. Glob Change Biol 11:1195–1206

Bilger W, Björkman O (1990) Role of the xanthophyll cycle in photoprotection elucidated by measurements of light-induced absorbance changes, fluorescence and photosynthesis in leaves of Hedera canariensis. Photosynth Res 25:173–185

Bolhàr-Nordenkampf HR, Long SP, Baker NR, Öquist G, Schreiber U, Lechner EG (1989) Chlorophyll fluorescence as a probe of the photosynthetic competence of leaves in the field: a review of current instrumentation. Funct Ecol 3:497–514

Demmig-Adams B, Adams WW III (1992) Photoprotection and other responses of plants to high light stress. Annu Rev Plant Physiol Plant Mol Biol 43:599–626

Flexas J, Briantais J-M, Cerovic Z, Medrano H, Moya I (2000) Steady-state and maximum chlorophyll fluorescence responses to water stress in grapevine leaves: a new remote sensing system. Rem Sens Environ 73:283–297

Genty B, Briantais J-M, Baker NR (1989) The relationship between the quantum yield of photosynthetic electron transport and quenching of chlorophyll fluorescence. Biochim Biophys Acta 990:87–92

Kitajima M, Butler WL (1975) Quenching of chlorophyll fluorescence and primary photochemistry in chloroplasts by dibromothymoquinone. Biochim Biophys Acta 376:105–115

Logan BA, Adams WW III, Demmig-Adams B (2007) Avoiding common pitfalls of chlorophyll fluorescence analysis under field conditions. Funct Plant Biol 34:853–859

Louis J, Ounis A, Ducruet J-M, Evain S, Laurila T, Thum T, Aurela M, Wingsle G, Alonso L, Pedros R, Moya I (2005) Remote sensing of sunlight-induced chlorophyll fluorescence and reflectance of Scots pine in the boreal forest during spring recovery. Rem Sens Environ 96:37–48

Maxwell K, Johnson GN (2000) Chlorophyll fluorescence—a practical guide. J Exp Bot 51:659–668

Moya I, Camenen L, Evain S, Goulas Y, Cerovic ZG, Latouche G, Flexas J, Ounis A (2004) A new instrument for passive remote sensing 1. Measurements of sunlight-induced chlorophyll fluorescence. Rem Sens Environ 91:186–197

Öquist G, Huner NPA (2003) Photosynthesis of overwintering evergreen plants. Annu Rev Plant Biol 54:329–355

Ounis A, Evain S, Flexas J, Tosti S, Moya I (2001) Adaptation of a PAM-fluorometer for remote sensing of chlorophyll fluorescence. Photosynth Res 68:113–120

Pfündel EE, Agati G, Cerovic Z (2006) Optical properties of plant surfaces. In: Riederer M, Müller C (eds) Biology of the plant cuticle, annual plant reviews, vol 23. Blackwell Publishing, Oxford, pp 216–249

Porcar-Castell A, Bäck J, Juurola E, Hari P (2006) Dynamics of the energy flow through photosystem II under changing light conditions: a model approach. Funct Plant Biol 33:229–239