The goal of this study was to investigate whether chilling tolerance of C-4 photosynthesis in Miscanthus can be transferred to sugarcane by hybridization. Net leaf CO2 uptake (A(sat)) and the maximum operating efficiency of photosystem II (?(PSII)) were measured in warm conditions (25 degrees C/20 degrees C), and then during and following a chilling treatment of 10 degrees C/5 degrees C for 11day in controlled environment chambers. Two of three hybrids (miscanes), US 84-1058' and US 87-1019', did not differ significantly from the chilling tolerant M. xgiganteus Illinois' (Mxg), for A(sat), and phi(PSII) measured during chilling. For Mxg grown at 10 degrees C/5 degrees C for 11days, A(sat) was 4.4mol m(-2) s(-1), while for miscane US 84-1058...
Sugarcane (Saccharum spp.) is a major crop grown for sucrose production. In Japan, its sucrose conce...
Climate change could affect sugarcane production directly through biophysical processes and indirect...
Background and AimsThe bioenergy grass Miscanthus is native to eastern Asia. As Miscanthus uses C4 p...
The goal of this study was to investigate whether chilling tolerance of C4 photosynthesis in Miscant...
The use of bioenergy has been considered one of the most important solutions for the reduction in th...
Although commercial sugarcane (Saccharum spp. hybrid) produces large biomass yields, its lack of col...
Chilling temperatures (0–15°C) inhibit photosynthesis in most C4 grasses, yet photosynthesis is chil...
Perennial grasses that use the C4 photosynthetic pathway are the best choice for terrestrial bioener...
Background and Aims: The high productivity of Miscanthus x giganteus has been at least partly ascrib...
Increasing demand and decreasing reserves of oil together with uncertainties in external supply and ...
Miscanthus, a perennial grass with C4 photosynthesis, is regarded as a promising energy crop due to ...
Increasing global energy demands and geopolitical instability among the world’s major fossil fuel-pr...
A long growing season, mediated by the ability to grow at low temperatures early in the season, can ...
Abstract Background and Aims The bioenergy grass Miscanthus is native to eastern Asia. As Miscanthus...
UMR BFP - Equipe MétabolismeInternational audienceMaize can grow in cool temperate climates but is o...
Sugarcane (Saccharum spp.) is a major crop grown for sucrose production. In Japan, its sucrose conce...
Climate change could affect sugarcane production directly through biophysical processes and indirect...
Background and AimsThe bioenergy grass Miscanthus is native to eastern Asia. As Miscanthus uses C4 p...
The goal of this study was to investigate whether chilling tolerance of C4 photosynthesis in Miscant...
The use of bioenergy has been considered one of the most important solutions for the reduction in th...
Although commercial sugarcane (Saccharum spp. hybrid) produces large biomass yields, its lack of col...
Chilling temperatures (0–15°C) inhibit photosynthesis in most C4 grasses, yet photosynthesis is chil...
Perennial grasses that use the C4 photosynthetic pathway are the best choice for terrestrial bioener...
Background and Aims: The high productivity of Miscanthus x giganteus has been at least partly ascrib...
Increasing demand and decreasing reserves of oil together with uncertainties in external supply and ...
Miscanthus, a perennial grass with C4 photosynthesis, is regarded as a promising energy crop due to ...
Increasing global energy demands and geopolitical instability among the world’s major fossil fuel-pr...
A long growing season, mediated by the ability to grow at low temperatures early in the season, can ...
Abstract Background and Aims The bioenergy grass Miscanthus is native to eastern Asia. As Miscanthus...
UMR BFP - Equipe MétabolismeInternational audienceMaize can grow in cool temperate climates but is o...
Sugarcane (Saccharum spp.) is a major crop grown for sucrose production. In Japan, its sucrose conce...
Climate change could affect sugarcane production directly through biophysical processes and indirect...
Background and AimsThe bioenergy grass Miscanthus is native to eastern Asia. As Miscanthus uses C4 p...