Stimulating photosynthetic processes increases productivity and water-use efficiency in the field
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T. Lawson | C. Raines | A. Simkin | S. Vialet-Chabrand | Patricia E. López-Calcagno | Kenny L. Brown | Stuart J. Fisk
[1] Benjamin Midler,et al. The gut commensal Blautia maintains colonic mucus function under low-fiber consumption through secretion of short-chain fatty acids , 2022, bioRxiv.
[2] A. Simkin. Genetic Engineering for Global Food Security: Photosynthesis and Biofortification , 2019, Plants.
[3] Susanne von Caemmerer,et al. Overexpression of the Rieske FeS protein of the Cytochrome b6f complex increases C4 photosynthesis in Setaria viridis , 2019, Communications Biology.
[4] C. Raines,et al. Feeding the world: improving photosynthetic efficiency for sustainable crop production , 2019, Journal of experimental botany.
[5] B. Jha,et al. Introgression of UfCyt c6, a thylakoid lumen protein from a green seaweed Ulva fasciata Delile enhanced photosynthesis and growth in tobacco , 2018, Molecular Biology Reports.
[6] S. Bull,et al. Overexpressing the H‐protein of the glycine cleavage system increases biomass yield in glasshouse and field‐grown transgenic tobacco plants , 2018, Plant biotechnology journal.
[7] D. R. Hoagland,et al. The Water-Culture Method for Growing Plants Without Soil , 2018 .
[8] K. Niyogi,et al. Photosystem II Subunit S overexpression increases the efficiency of water use in a field-grown crop , 2018, Nature Communications.
[9] Tracy Lawson,et al. Overexpression of the RieskeFeS Protein Increases Electron Transport Rates and Biomass Yield1[CC-BY] , 2017, Plant Physiology.
[10] T. Lawson,et al. Increased SBPase activity improves photosynthesis and grain yield in wheat grown in greenhouse conditions , 2017, Philosophical Transactions of the Royal Society B: Biological Sciences.
[11] T. Lawson,et al. Arabidopsis CP12 mutants have reduced levels of phosphoribulokinase and impaired function of the Calvin–Benson cycle , 2017, Journal of experimental botany.
[12] Tracy Lawson,et al. Simultaneous stimulation of sedoheptulose 1,7‐bisphosphatase, fructose 1,6‐bisphophate aldolase and the photorespiratory glycine decarboxylase‐H protein increases CO 2 assimilation, vegetative biomass and seed yield in Arabidopsis , 2017, Plant biotechnology journal.
[13] Tracy Lawson,et al. Importance of Fluctuations in Light on Plant Photosynthetic Acclimation1[CC-BY] , 2017, Plant Physiology.
[14] M. Thomey,et al. Expression of cyanobacterial FBP/SBPase in soybean prevents yield depression under future climate conditions , 2016, Journal of experimental botany.
[15] Stephen P. Long,et al. Improving photosynthesis and crop productivity by accelerating recovery from photoprotection , 2016, Science.
[16] X. Ai,et al. Changes in SBPase activity influence photosynthetic capacity, growth, and tolerance to chilling stress in transgenic tomato plants , 2016, Scientific Reports.
[17] Wenbin Jin,et al. Transgenic Rice Expressing Ictb and FBP/Sbpase Derived from Cyanobacteria Exhibits Enhanced Photosynthesis and Mesophyll Conductance to CO2 , 2015, PloS one.
[18] Tracy Lawson,et al. Multigene manipulation of photosynthetic carbon assimilation increases CO2 fixation and biomass yield in tobacco , 2015, Journal of experimental botany.
[19] T. Lawson,et al. Overexpression of Plastid Transketolase in Tobacco Results in a Thiamine Auxotrophic Phenotype[OPEN] , 2015, Plant Cell.
[20] Yanling Zhao,et al. Downregulation of Transketolase Activity Is Related to Inhibition of Hippocampal Progenitor Cell Proliferation Induced by Thiamine Deficiency , 2014, BioMed research international.
[21] Florian A. Busch,et al. Opinion: The red-light response of stomatal movement is sensed by the redox state of the photosynthetic electron transport chain , 2014, Photosynthesis Research.
[22] M. Inui,et al. Increased fructose 1,6-bisphosphate aldolase in plastids enhances growth and photosynthesis of tobacco plants. , 2012, Journal of experimental botany.
[23] David M Rosenthal,et al. Over-expressing the C3 photosynthesis cycle enzyme Sedoheptulose-1-7 Bisphosphatase improves photosynthetic carbon gain and yield under fully open air CO2 fumigation (FACE) , 2011, BMC Plant Biology.
[24] M. Tamoi,et al. Generation of transplastomic lettuce with enhanced growth and high yield , 2010, GM crops.
[25] Xin-Guang Zhu,et al. Improving photosynthetic efficiency for greater yield. , 2010, Annual review of plant biology.
[26] Carola Engler,et al. Golden Gate Shuffling: A One-Pot DNA Shuffling Method Based on Type IIs Restriction Enzymes , 2009, PloS one.
[27] S. Masiero,et al. Mutants, overexpressors, and interactors of Arabidopsis plastocyanin isoforms: revised roles of plastocyanin in photosynthetic electron flow and thylakoid redox state. , 2009, Molecular plant.
[28] Carola Engler,et al. A One Pot, One Step, Precision Cloning Method with High Throughput Capability , 2008, PloS one.
[29] T. Lawson,et al. Reductions in mesophyll and guard cell photosynthesis impact on the control of stomatal responses to light and CO2 , 2008, Journal of experimental botany.
[30] T. Sharkey,et al. Fitting photosynthetic carbon dioxide response curves for C(3) leaves. , 2007, Plant, cell & environment.
[31] Xin-Guang Zhu,et al. Optimizing the Distribution of Resources between Enzymes of Carbon Metabolism Can Dramatically Increase Photosynthetic Rate: A Numerical Simulation Using an Evolutionary Algorithm1[W][OA] , 2007, Plant Physiology.
[32] A. Zouni,et al. Photosystem I. Advances in Photosynthesis and Respiration. Vol. 24. Edited by John H. Golbeck. , 2007 .
[33] Y. Niwa,et al. Development of series of gateway binary vectors, pGWBs, for realizing efficient construction of fusion genes for plant transformation. , 2007, Journal of bioscience and bioengineering.
[34] T. Nishio,et al. Expression of the algal cytochrome c6 gene in Arabidopsis enhances photosynthesis and growth. , 2007, Plant & cell physiology.
[35] Shigeru Shigeoka,et al. Contribution of fructose-1,6-bisphosphatase and sedoheptulose-1,7-bisphosphatase to the photosynthetic rate and carbon flow in the Calvin cycle in transgenic plants. , 2006, Plant & cell physiology.
[36] C. Raines. Transgenic approaches to manipulate the environmental responses of the C3 carbon fixation cycle. , 2006, Plant, cell & environment.
[37] S. Long,et al. Can improvement in photosynthesis increase crop yields? , 2006, Plant, cell & environment.
[38] G. Finazzi,et al. Release of oxidized plastocyanin from photosystem I limits electron transfer between photosystem I and cytochrome b6f complex in vivo. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[39] Tracy Lawson,et al. Increased Sedoheptulose-1,7-Bisphosphatase Activity in Transgenic Tobacco Plants Stimulates Photosynthesis and Growth from an Early Stage in Development1 , 2005, Plant Physiology.
[40] T. Lawson,et al. Stomatal conductance does not correlate with photosynthetic capacity in transgenic tobacco with reduced amounts of Rubisco. , 2004, Journal of experimental botany.
[41] N. Baker,et al. Rapid, Noninvasive Screening for Perturbations of Metabolism and Plant Growth Using Chlorophyll Fluorescence Imaging1 , 2003, Plant Physiology.
[42] M. Tamoi,et al. Overexpression of a cyanobacterial fructose-1,6-/sedoheptulose-1,7-bisphosphatase in tobacco enhances photosynthesis and growth , 2001, Nature Biotechnology.
[43] T Lawson,et al. High resolution imaging of photosynthetic activities of tissues, cells and chloroplasts in leaves. , 2001, Journal of experimental botany.
[44] M. Stitt,et al. A Small Decrease of Plastid Transketolase Activity in Antisense Tobacco Transformants Has Dramatic Effects on Photosynthesis and Phenylpropanoid Metabolism , 2001, Plant Cell.
[45] N. Baker,et al. An evaluation of the potential triggers of photoinactivation of photosystem II in the context of a Stern-Volmer model for downregulation and the reversible radical pair equilibrium model. , 2000, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[46] D. Fell,et al. Modelling photosynthesis and its control. , 2000, Journal of experimental botany.
[47] C. Raines,et al. Purification of active chloroplast sedoheptulose-1,7-bisphosphatase expressed in Escherichia coli. , 1998, Protein expression and purification.
[48] Stan D. Wullschleger,et al. Biochemical Limitations to Carbon Assimilation in C3 Plants—A Retrospective Analysis of the A/Ci Curves from 109 Species , 1993 .
[49] H. Scholthof,et al. Sequence of figwort mosaic virus DNA (caulimovirus group). , 1987, Nucleic acids research.
[50] S. Merchant,et al. The Cu(II)-repressible plastidic cytochrome c. Cloning and sequence of a complementary DNA for the pre-apoprotein. , 1987, The Journal of biological chemistry.
[51] G. Farquhar,et al. Some relationships between the biochemistry of photosynthesis and the gas exchange of leaves , 1981, Planta.
[52] J. Berry,et al. A biochemical model of photosynthetic CO2 assimilation in leaves of C3 species , 1980, Planta.
[53] J. Memelink,et al. Characterization of the plastidial geraniol synthase from Madagascar periwinkle which initiates the monoterpenoid branch of the alkaloid pathway in internal phloem associated parenchyma. , 2013, Phytochemistry.
[54] C. Raines. The Calvin cycle revisited , 2004, Photosynthesis Research.
[55] T. Hiyama. Isolation of photosystem I particles from spinach. , 2004, Methods in molecular biology.