-
Overexpression of the barley aquaporin HvPIP2;1 increases internal CO(2) conductance and CO(2) assimilation in the leaves of transgenic rice plants.
Plant Cell Physiol. 2004 May;45(5):521-9
PMID: 15169933
-
Variable mesophyll conductance revisited: theoretical background and experimental implications.
Plant Cell Environ. 2012 Dec;35(12):2087-103
PMID: 22590996
-
Mesophyll conductance to CO2: current knowledge and future prospects.
Plant Cell Environ. 2008 May;31(5):602-21
PMID: 17996013
-
Stand aside stomata, another actor deserves centre stage: the forgotten role of the internal conductance to CO2 transfer.
J Exp Bot. 2008;59(7):1475-87
PMID: 17975206
-
Assessment of cell wall porosity in Arabidopsis thaliana by NMR spectroscopy.
Int J Biol Macromol. 2008 Mar 1;42(2):83-92
PMID: 17996933
-
Measurements of mesophyll conductance, photosynthetic electron transport and alternative electron sinks of field grown wheat leaves.
Photosynth Res. 1994 Sep;41(3):397-403
PMID: 24310154
-
Effect of local irradiance on CO(2) transfer conductance of mesophyll in walnut.
J Exp Bot. 2002 Dec;53(379):2423-30
PMID: 12432034
-
Leaf functional anatomy in relation to photosynthesis.
Plant Physiol. 2011 Jan;155(1):108-16
PMID: 21075960
-
Intercellular Diffusion Limits to CO(2) Uptake in Leaves : Studies in Air and Helox.
Plant Physiol. 1990 Nov;94(3):1024-32
PMID: 16667792
-
Leaf mesophyll diffusion conductance in 35 Australian sclerophylls covering a broad range of foliage structural and physiological variation.
J Exp Bot. 2009;60(8):2433-49
PMID: 19255061
-
The tobacco aquaporin NtAQP1 is a membrane CO2 pore with physiological functions.
Nature. 2003 Oct 16;425(6959):734-7
PMID: 14520414
-
Carbon dioxide transport through membranes.
J Biol Chem. 2008 Sep 12;283(37):25340-25347
PMID: 18617525
-
The role of Rubisco and cell walls in the interspecific variation in photosynthetic capacity.
Oecologia. 2009 Jun;160(3):443-51
PMID: 19288136
-
Irradiance and phenotype: comparative eco-development of sun and shade leaves in relation to photosynthetic CO2 diffusion.
J Exp Bot. 2006;57(2):343-54
PMID: 16356943
-
The role of mesophyll conductance during water stress and recovery in tobacco (Nicotiana sylvestris): acclimation or limitation?
J Exp Bot. 2009;60(8):2379-90
PMID: 19321646
-
Developmental changes in mesophyll diffusion conductance and photosynthetic capacity under different light and water availabilities in Populus tremula: how structure constrains function.
Plant Cell Environ. 2012 May;35(5):839-56
PMID: 22070625
-
Resistances along the CO2 diffusion pathway inside leaves.
J Exp Bot. 2009;60(8):2235-48
PMID: 19395390
-
Photosynthetic limitations in response to water stress and recovery in Mediterranean plants with different growth forms.
New Phytol. 2007;175(1):81-93
PMID: 17547669
-
Photosynthesis at an extreme end of the leaf trait spectrum: how does it relate to high leaf dry mass per area and associated structural parameters?
J Exp Bot. 2010 Jun;61(11):3015-28
PMID: 20484320
-
Temperature response of mesophyll conductance. Implications for the determination of Rubisco enzyme kinetics and for limitations to photosynthesis in vivo.
Plant Physiol. 2002 Dec;130(4):1992-8
PMID: 12481082
-
Complex adjustments of photosynthetic potentials and internal diffusion conductance to current and previous light availabilities and leaf age in Mediterranean evergreen species Quercus ilex.
Plant Cell Environ. 2006 Jun;29(6):1159-78
PMID: 17080941
-
Evergreens favored by higher responsiveness to increased CO₂.
Trends Ecol Evol. 2011 Mar;26(3):136-42
PMID: 21277042
-
Function of Nicotiana tabacum aquaporins as chloroplast gas pores challenges the concept of membrane CO2 permeability.
Plant Cell. 2008 Mar;20(3):648-57
PMID: 18349152
-
Tobacco aquaporin NtAQP1 is involved in mesophyll conductance to CO2 in vivo.
Plant J. 2006 Nov;48(3):427-39
PMID: 17010114
-
Theoretical Considerations when Estimating the Mesophyll Conductance to CO(2) Flux by Analysis of the Response of Photosynthesis to CO(2).
Plant Physiol. 1992 Apr;98(4):1429-36
PMID: 16668811
-
Anatomical basis of variation in mesophyll resistance in eastern Australian sclerophylls: news of a long and winding path.
J Exp Bot. 2012 Sep;63(14):5105-19
PMID: 22888123
-
Internal conductance to CO(2) diffusion and C(18)OO discrimination in C(3) leaves.
Plant Physiol. 2000 May;123(1):201-14
PMID: 10806237
-
The worldwide leaf economics spectrum.
Nature. 2004 Apr 22;428(6985):821-7
PMID: 15103368
-
Photosynthesis within isobilateral Eucalyptus pauciflora leaves.
New Phytol. 2006;171(4):771-82
PMID: 16918548
-
Role of mesophyll diffusion conductance in constraining potential photosynthetic productivity in the field.
J Exp Bot. 2009;60(8):2249-70
PMID: 19395391
-
Mesophyll diffusion conductance to CO2: an unappreciated central player in photosynthesis.
Plant Sci. 2012 Sep;193-194:70-84
PMID: 22794920
-
Temperature response of mesophyll conductance in cultivated and wild Oryza species with contrasting mesophyll cell wall thickness.
Plant Cell Environ. 2011 Nov;34(11):1999-2008
PMID: 21752031
-
A biochemical model of photosynthetic CO2 assimilation in leaves of C 3 species.
Planta. 1980 Jun;149(1):78-90
PMID: 24306196
-
Analysis of leakage in IRGA's leaf chambers of open gas exchange systems: quantification and its effects in photosynthesis parameterization.
J Exp Bot. 2007;58(6):1533-43
PMID: 17339650
-
Do we underestimate the importance of leaf size in plant economics? Disproportional scaling of support costs within the spectrum of leaf physiognomy.
Ann Bot. 2007 Aug;100(2):283-303
PMID: 17586597
-
The chloroplast avoidance response decreases internal conductance to CO2 diffusion in Arabidopsis thaliana leaves.
Plant Cell Environ. 2008 Nov;31(11):1688-700
PMID: 18721264
-
The impact of blue light on leaf mesophyll conductance.
J Exp Bot. 2009;60(8):2283-90
PMID: 19395388
-
Leaf anatomical properties in relation to differences in mesophyll conductance to CO(2) and photosynthesis in two related Mediterranean Abies species.
Plant Cell Environ. 2012 Dec;35(12):2121-9
PMID: 22594917