Florian A. Busch
Florian A. Busch
Lecturer, School of Biosciences, University of Birmingham
Verified email at bham.ac.uk
Cited by
Cited by
Photostasis and cold acclimation: sensing low temperature through photosynthesis
I Ensminger, F Busch, NPA Huner
Physiologia Plantarum 126 (1), 28-44, 2006
C3 plants enhance rates of photosynthesis by reassimilating photorespired and respired CO2
FA Busch, TL Sage, AB Cousins, RF Sage
Plant, Cell & Environment 36, 200-212, 2013
Plants increase CO 2 uptake by assimilating nitrogen via the photorespiratory pathway
FA Busch, RF Sage, GD Farquhar
Nature plants 4 (1), 46-54, 2018
Manipulating photorespiration to increase plant productivity: recent advances and perspectives for crop improvement
M Betti, H Bauwe, FA Busch, AR Fernie, O Keech, M Levey, DR Ort, ...
Journal of Experimental Botany 67 (10), 2977-2988, 2016
Leaf day respiration: low CO2 flux but high significance for metabolism and carbon balance
G Tcherkez, P Gauthier, TN Buckley, FA Busch, MM Barbour, D Bruhn, ...
New Phytologist 216 (4), 986-1001, 2017
Increased air temperature during simulated autumn conditions does not increase photosynthetic carbon gain but affects the dissipation of excess energy in seedlings of the …
F Busch, NPA Hüner, I Ensminger
Plant physiology 143 (3), 1242-1251, 2007
Initial events during the evolution of C4 photosynthesis in C3 species of Flaveria
TL Sage, FA Busch, DC Johnson, PC Friesen, CR Stinson, M Stata, ...
Plant physiology 163 (3), 1266-1276, 2013
Biochemical constrains limit the potential of the photochemical reflectance index as a predictor of effective quantum efficiency of photosynthesis during the winter spring …
F Busch, NPA Hüner, I Ensminger
Functional Plant Biology 36 (11), 1016-1026, 2009
The sensitivity of photosynthesis to O2 and CO2 concentration identifies strong Rubisco control above the thermal optimum
FA Busch, RF Sage
New Phytologist 213 (3), 1036-1051, 2016
Chilling and frost tolerance in Miscanthus and Saccharum genotypes bred for cool temperate climates
PC Friesen, MM Peixoto, FA Busch, DC Johnson, RF Sage
Journal of Experimental Botany 65 (13), 3749-3758, 2014
Overexpression of Rubisco subunits with RAF1 increases Rubisco content in maize
CE Salesse-Smith, RE Sharwood, FA Busch, J Kromdijk, V Bardal, ...
Nature Plants 4 (10), 802-810, 2018
Opinion: the red-light response of stomatal movement is sensed by the redox state of the photosynthetic electron transport chain
FA Busch
Photosynthesis research 119 (1), 131-140, 2014
Shedding Some Light on Cold Acclimation, Cold Adaptation and Phenotypic Plasticity
NPA Huner, R Bode, K Dahal, FA Busch, M Possmayer, B Szyszka, ...
Botany 91 (3), 127-136, 2013
Current methods for estimating the rate of photorespiration in leaves
FA Busch
Plant Biology 15 (4), 648-655, 2013
Changes in the chloroplastic CO2 concentration explain much of the observed Kok effect: a model
GD Farquhar, FA Busch
New Phytologist 214 (2), 570-584, 2017
Increased air temperature during simulated autumn conditions impairs photosynthetic electron transport between photosystem II and photosystem I
F Busch, NPA Hüner, I Ensminger
Plant Physiology 147 (1), 402-414, 2008
C3–C4 intermediacy in grasses: organelle enrichment and distribution, glycine decarboxylase expression, and the rise of C2 photosynthesis
R Khoshravesh, CR Stinson, M Stata, FA Busch, RF Sage, M Ludwig, ...
Journal of experimental botany 67 (10), 3065-3078, 2016
Embracing 3D complexity in leaf carbon–water exchange
JM Earles, TN Buckley, CR Brodersen, FA Busch, FJ Cano, B Choat, ...
Trends in plant science 24 (1), 15-24, 2019
Tracking the origins of the Kok effect, 70 years after its discovery
G Tcherkez, P Gauthier, TN Buckley, FA Busch, MM Barbour, D Bruhn, ...
New Phytologist 214 (2), 506-510, 2017
Over‐expression of bacterial γ‐glutamylcysteine synthetase (GSH1) in plastids affects photosynthesis, growth and sulphur metabolism in poplar (Populus tremula× Populus alba …
C Herschbach, L Rizzini, S Mult, T Hartmann, F Busch, AD Peuke, ...
Plant, cell & environment 33 (7), 1138-1151, 2010
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