Photosynth Res 101:217–232PubMed Goltsev V, Zaharieva I, Chernev

Photosynth Res 101:217–232PubMed Goltsev V, Zaharieva I, Chernev P, Koezmanova M, Kalaji HM, EPZ015938 concentration Yordanov I, Krasteva V, Alexandrov V, Stefanov D, Allakhverdiev SI, Strasser RJ (2012) Drought-induced modifications of photosynthetic electron transport in intact leaves: analysis and use of neural networks as a tool for a rapid non-invasive estimation. Biochim Biophys Acta 1817:1490–1498PubMed Gorbe E, Calatayud A (2012) Applications of chlorophyll fluorescence imaging technique in horticultural research: a review.

Sci Hortic 138:24–35 Gotoh E, Matsumoto M, Ogawa K, Kobayashi Y, Tsuyama M (2010) A qualitative analysis of cyclic electron flow around photosystem I from the post-illumination chlorophyll fluorescence transients in Arabidopsis: a new platform for the in vivo investigation of the chloroplast redox state. Photosynth Res 103:111–123PubMed Gottardini E, Cristofori A, Cristofolini F, Nali C, Pellegrini E, Busotti F, Ferretti M (2014) Chlorophyll-related indicators are linked tot visible ozone symptoms: evidence from a field study on native Viburnum lantana L. plants www.selleckchem.com/products/cbl0137-cbl-0137.html in northern Italy. Ecol Indic 39:65–74 Govindjee (1995) Sixty-three

years since Kautsky: chlorophyll a fluorescence. Aust J Plant Physiol 22:131–160 Govindjee (2004) Chlorophyll a fluorescence: a bit of basics and history. In: Papageorgiou GC, Govindjee (eds) Chl a fluorescence: a signature of photosynthesis, advances in photosynthesis and respiration, vol 19. Springer, Dordrecht, pp 1–42 Gray GR, Savitch LV, Ivanov AG, Huner NPA (1996) Photosystem II excitation pressure and development of resistance to photoinhibition. Plant Physiol 110:61–71PubMedCentralPubMed Greer DH, Berry JA, Björkman O (1986) Photoinhibition of photosynthesis in intact bean leaves: role of light and temperature, and requirement for chloroplast-protein synthesis during recovery. Planta 168:253–260PubMed Groot ML, Immune system Frese RN, de Weerd FL, Bromek K, Petterson Å,

Peterman EJG, van Stokkum IHM, van Grondelle R, Dekker JP (1999) Spectroscopic properties of the CP43 core antenna protein of photosystem II. Biophys J 77:3328–3340PubMedCentralPubMed Guarini JM, Moritz C (2009) Modelling the dynamics of the electron transport rate measured by PAM fluorimetry during rapid light curve experiments. Photosynthetica 47:206–214 Guidi L, Degl’Innocenti E (2011) Imaging of chlorophyll a fluorescence: a tool to study abiotic stress in plants. In: Shanker A (ed) Abiotic stress in plants—mechanisms and adaptations. InTech, Available from: http://​www.​intechopen.​com/​articles/​show/​title/​imaging-of-chlorophyll-a-fluorescence-a-tool-to-study-abiotic-stress-in-plants Guidi L, Degl’Innocenti E (2012) Chlorophyll a fluorescence in abiotic stress. In: Venkateswarlu B, Shanker AK, Shanker C, Maheswari M (eds) Crop stress and its management: perspectives and strategies.

Leave a Reply

Your email address will not be published. Required fields are marked *

*

You may use these HTML tags and attributes: <a href="" title=""> <abbr title=""> <acronym title=""> <b> <blockquote cite=""> <cite> <code> <del datetime=""> <em> <i> <q cite=""> <strike> <strong>