C-4 photosynthesis evolved independently many times, resulting in multiple biochemical pathways; however, little is known about how these different pathways respond to temperature. We investigated the photosynthetic responses of eight C-4 grasses belonging to three biochemical subtypes (NADP-ME, PEP-CK, and NAD-ME) to four leaf temperatures (18, 25, 32, and 40 degrees C). We also explored whether the biochemical subtype influences the thermal responses of (i) in vitro PEPC (V-pmax) and Rubisco (V-cmax) maximal activities, (ii) initial slope (IS) and CO2-saturated rate (CSR) derived from the A-C-i curves, and (iii) CO2 leakage out of the bundle sheath estimated from carbon isotope discrimination. We focussed on leakiness and the two carboxyl...
Themeda triandra, Hyparrhenia hirta and Zea mays have a single bundle sheath with agranal, centrifug...
C4 photosynthesis is a complex specialization that enhances carbon gain in hot, often arid habitats ...
Climatic stress such as warming would alter physiological pathways in plants leading to changes in t...
C4 photosynthesis evolved independently many times, resulting in multiple biochemical pathways; howe...
The CO2 concentrating mechanism (CCM) endows C4 plants with high CO2 assimilation rate and high ligh...
With average global temperatures predicted to increase over the next century, it is important to und...
The high-energy cost and apparently low plasticity of C4 photosynthesis, compared to C3 photosynthes...
Most physiology comparisons of C3 and C4 plants are made under current or elevated concentrations of...
A small bundle-sheath conductance (g bs) is essential for the C4 CO2-concentrating mechanism to supp...
We combined measurements of short-term (during gas exchange) and long-term (from plant dry matter) c...
Most physiology comparisons of C3 and C4 plants are made under current or elevated concentrations of...
C4 photosynthesis evolved multiple times in diverse lineages. Most physiological studies comparing C...
Three subtypes of C4 photosynthesis exist (NADP-ME, NAD-ME and PEPCK), each known to be beneficial u...
Enhancing the catalytic properties of the CO2-fixing enzyme Rubisco is a target for improving agricu...
C4 grasses are grouped into three biochemical subtypes, NAD malic enzyme (NAD–ME), NADP malic enzyme...
Themeda triandra, Hyparrhenia hirta and Zea mays have a single bundle sheath with agranal, centrifug...
C4 photosynthesis is a complex specialization that enhances carbon gain in hot, often arid habitats ...
Climatic stress such as warming would alter physiological pathways in plants leading to changes in t...
C4 photosynthesis evolved independently many times, resulting in multiple biochemical pathways; howe...
The CO2 concentrating mechanism (CCM) endows C4 plants with high CO2 assimilation rate and high ligh...
With average global temperatures predicted to increase over the next century, it is important to und...
The high-energy cost and apparently low plasticity of C4 photosynthesis, compared to C3 photosynthes...
Most physiology comparisons of C3 and C4 plants are made under current or elevated concentrations of...
A small bundle-sheath conductance (g bs) is essential for the C4 CO2-concentrating mechanism to supp...
We combined measurements of short-term (during gas exchange) and long-term (from plant dry matter) c...
Most physiology comparisons of C3 and C4 plants are made under current or elevated concentrations of...
C4 photosynthesis evolved multiple times in diverse lineages. Most physiological studies comparing C...
Three subtypes of C4 photosynthesis exist (NADP-ME, NAD-ME and PEPCK), each known to be beneficial u...
Enhancing the catalytic properties of the CO2-fixing enzyme Rubisco is a target for improving agricu...
C4 grasses are grouped into three biochemical subtypes, NAD malic enzyme (NAD–ME), NADP malic enzyme...
Themeda triandra, Hyparrhenia hirta and Zea mays have a single bundle sheath with agranal, centrifug...
C4 photosynthesis is a complex specialization that enhances carbon gain in hot, often arid habitats ...
Climatic stress such as warming would alter physiological pathways in plants leading to changes in t...