Proc Natl Acad Sci USA 101:4712–4717PubMedCrossRef Stitt M (1991)

Proc Natl Acad Sci USA 101:4712–4717PubMedCrossRef Stitt M (1991) Rising carbon dioxide levels and their potential significance for carbon flow in photosynthetic cells. Plant Cell Environ 14:741–762CrossRef Stitt M, Hurry V (2002) A plant for all seasons: alterations in photosynthetic carbon metabolism during cold acclimation in Arabidopsis. Curr Opin Plant Biol 5:199–206PubMedCrossRef

Strand A, Hurry V, Gustafsson P, Gardestrom P (1997) Development of Arabidopsis thaliana leaves at low temperatures releases the suppression of photosynthesis and photosynthetic gene expression despite the accumulation of soluble carbohydrates. Plant J 12:605–614PubMedCrossRef Terashima I, Hanba YT, Tholen D, Niinemets U (2011) Leaf functional Belnacasan manufacturer anatomy in relation to photosynthesis. Plant Physiol 155:108–116PubMedCrossRef Tessadori F et al (2009) Phytochrome B and histone deacetylase 6 control light-induced chromatin see more compaction in Arabidopsis thaliana. PLoS Genet 5:e000638CrossRef Tholen D, Boom C, Noguchi K, Ueda S, Katase T, Terashima I (2008) The chloroplast avoidance response decreases internal conductance to CO2 diffusion in Arabidopsis thaliana leaves. Plant Cell Environ 31:1688–1700PubMedCrossRef

Von Caemmerer S (2000) Biochemical models of leaf photosynthesis. CSIRO publishing, Collingwood Walters RG (2005) Towards an understanding of photosynthetic acclimation. J Exp Bot 56:435–447PubMedCrossRef Walters RG, Horton P (1994) Acclimation of Arabidopsis thaliana to the light environment: changes in composition of the photosynthetic apparatus. Planta 195:248–256CrossRef Walters RG, Rogers JJM, Shephard F, Horton P (1999) Acclimation of Arabidopsis thaliana 10058-F4 in vivo to

the light environment: the role of photoreceptors. Planta 209:517–527PubMedCrossRef Westbeek MHM, Pons TL, Cambridge ML, Atkin OK (1999) Analysis of differences in photosynthetic nitrogen use efficiency of alpine and lowland Poa species. Oecologia 120:19–26CrossRef Wullschleger Rucaparib SD (1993) Biochemical limitations to carbon assimilation in C3 plants—a retrospective analysis of the A/Ci curves from 109 species. J Exp Bot 44:907–920CrossRef Yamori W, Noguchi K, Terashima I (2005) Temperature acclimation of photosynthesis in spinach leaves: analyses of photosynthetic components and temperature dependencies of photosynthetic partial reactions. Plant Cell Environ 28:536–547CrossRef Yamori W, Suzuki K, Noguchi K, Nakai M, Terashima I (2006) Effects of Rubisco kinetics and Rubisco activation state on the temperature dependence of the photosynthetic rate in spinach leaves from contrasting growth temperatures. Plant Cell Environ 29:1659–1670PubMedCrossRef Yamori W, Noguchi K, Hikosaka K, Terashima I (2009) Cold-tolerant crop species have greater temperature homeostasis of leaf respiration and photosynthesis than cold-sensitive species. Plant Cell Physiol 50:203–215PubMedCrossRef”
“Erratum to: Photosynth Res (2011) 108:157–170 DOI 10.

Comments are closed.