与FL3500系统联用研究蓝隐藻Guillardia theta的叶绿素荧光及其光谱组成(Cheregi,2015,Journal of Experimental Botany)
产地:欧洲
参考文献:
Bernát G, et al. 2017. On the origin of the slow M–T chlorophyll a luorescence decline in cyanobacteria: interplay of short-term light-responses. Photosynthesis Research, DOI 10.1007/s11120-017-0458-8
Selyanin V, et al. 2016. The variability of light-harvesting complexes in aerobic anoxygenic phototrophs. Photosynthesis research, 128(1): 35-43
Tilstone G, et al. 2016. Effect of CO2 enrichment on phytoplankton photosynthesis in the North Atlantic sub-tropical gyre. Progress in Oceanography, 158: 76-89
Mishra K B, et al. 2016. Plant phenotyping: a perspective. Indian Journal of Plant Physiology, 21(4): 514-527
Cheregi O, Kotabová E, Prášil O, et al. 2015. Presence of state transitions in the cryptophyte alga Guillardia theta . Journal of Experimental Botany, 66: 6461-6470
Li G, Brown C M, Jeans J A, et al. 2015. The nitrogen costs of photosynthesis in a diatom under current and future pCO2. New Phytologist, 205:533-543
Kotabová E, Jarešová J, Kaňa R, et al. 2014. Novel type of red-shifted chlorophyll a antenna complex from Chromera velia. I. Physiological relevance and functional connection to photosystems. Biochimica et Biophysica Acta – Bioenergetics, 1837:734-743
Šebela D, Olejníčková J, Sotolář R, et al. 2014. The slow S to M fluorescence rise in cyanobacteria is due to a state 2 to state 1 transition. BBA , 1817: 1237-1247
Peng H, et al. 2013. Toxicity and Deficiency of Copper in Elsholtzia splendens Affect Photosynthesis Biophysics, Pigments and Metal Accumulation. Environ. Sci. Technol., 47 (12): 6120-6128