Mesophyll conductance (gm) is a crucial leaf trait contributing to the photosynthetic rate (AN). Plant domestication typically leads to an enhancement of AN that is often associated with profound anatomical modifications, but it is unclear which of these structural alterations influence gm. We analyzed the implication of domestication on leaf anatomy and its effect on gm in 26 wild and 31 domesticated cotton genotypes (Gossypium sp.) grown under field conditions. We found that domesticated genotypes had higher AN but similar gm to wild genotypes. Consistent with this, domestication did not translate into significant differences in the fraction of mesophyll occupied by intercellular air spaces (fias) or mesophyll and chloroplast surface area...
A key objective for sustainable agriculture and forestry is to breed plants with both high carbon ga...
[eng] The key role of cell walls in setting mesophyll conductance to CO2 (gm) and, consequently, pho...
Background:Plants exhibit phenotypic plasticity and respond to differences in environmental conditio...
Photosynthesis is the foundation of biomass accumulation and hence, crop yield. Two important aspect...
There is dramatic provenance level variation in tree species with geographically wide ranges. For ex...
Mesophyll conductance (gm) has been shown to affect photosynthetic capacity and thus the estimates o...
Domestication involves dramatic phenotypic and physiological diversifications due to successive sele...
The process of domestication has driven dramatic shifts in plant functional traits including leaf ma...
Natural selection on photosynthetic performance is a primary factor determining leaf phenotypes. The...
Breeding for high yield in hot environments (heat tolerance) has tripled the yield of Pirna cotton s...
A critical component of photosynthetic capacity is the conductance of CO2 from intercellular airspac...
Improvements in water-use efficiency are required to maintain and improve wheat yield for future cli...
C₄ plants achieve higher photosynthesis (An) and intrinsic water use efficiency (iWUE) than C₃ plant...
In leaves, the ease with which CO₂ may diffuse from substomatal cavities to the sites of carboxylati...
Single-leaf photosynthesis is a fundamental process in plant biomass production, and is a major rese...
A key objective for sustainable agriculture and forestry is to breed plants with both high carbon ga...
[eng] The key role of cell walls in setting mesophyll conductance to CO2 (gm) and, consequently, pho...
Background:Plants exhibit phenotypic plasticity and respond to differences in environmental conditio...
Photosynthesis is the foundation of biomass accumulation and hence, crop yield. Two important aspect...
There is dramatic provenance level variation in tree species with geographically wide ranges. For ex...
Mesophyll conductance (gm) has been shown to affect photosynthetic capacity and thus the estimates o...
Domestication involves dramatic phenotypic and physiological diversifications due to successive sele...
The process of domestication has driven dramatic shifts in plant functional traits including leaf ma...
Natural selection on photosynthetic performance is a primary factor determining leaf phenotypes. The...
Breeding for high yield in hot environments (heat tolerance) has tripled the yield of Pirna cotton s...
A critical component of photosynthetic capacity is the conductance of CO2 from intercellular airspac...
Improvements in water-use efficiency are required to maintain and improve wheat yield for future cli...
C₄ plants achieve higher photosynthesis (An) and intrinsic water use efficiency (iWUE) than C₃ plant...
In leaves, the ease with which CO₂ may diffuse from substomatal cavities to the sites of carboxylati...
Single-leaf photosynthesis is a fundamental process in plant biomass production, and is a major rese...
A key objective for sustainable agriculture and forestry is to breed plants with both high carbon ga...
[eng] The key role of cell walls in setting mesophyll conductance to CO2 (gm) and, consequently, pho...
Background:Plants exhibit phenotypic plasticity and respond to differences in environmental conditio...