To feed a world population projected to reach 9 billion people by 2050, the productivity of major crops must be increased by at least 50%. One potential route to boost the productivity of cereals is to equip them genetically with the 'supercharged' C-4 type of photosynthesis; however, the necessary genetic modifications are not sufficiently understood for the corresponding genetic engineering programme. In this opinion paper, we discuss a strategy to solve this problem by developing a new paradigm for plant breeding. We propose combining the bioengineering of well-understood traits with subsequent evolutionary engineering, i.e. mutagenesis and artificial selection. An existing mathematical model of C-3-C-4 evolution is used to choose the mo...
Ever since the discovery of C4 photosynthesis in the mid-1960s, plant biologists have envisaged the ...
Major food and biofuel crops maize, sugarcane and sorghum utilise a specialised type of photosynthes...
Major food and biofuel crops maize, sugarcane and sorghum utilise a specialised type of photosynthes...
C-4 photosynthetic plants outperform C-3 plants in hot and arid climates. By concentrating carbon di...
C-4 photosynthetic plants outperform C-3 plants in hot and arid climates. By concentrating carbon di...
C-4 photosynthetic plants outperform C-3 plants in hot and arid climates. By concentrating carbon di...
C-4 photosynthetic plants outperform C-3 plants in hot and arid climates. By concentrating carbon di...
Anticipated future population growth necessitates that more food is produced using the same, or les...
Reducing photorespiration in C3 crops could significantly increase rates of photosynthesis and yield...
Reducing photorespiration in C3 crops could significantly increase rates of photosynthesis and yield...
The phenomenal increase in agricultural yields that we have witnessed in the last century has slowed...
It is now 20 years since a suggestion was first made of introducing a C4. photosynthetic pathway int...
Various genetic engineering routes to enhance C3 leaf photosynthesis have been proposed to improve c...
Various genetic engineering routes to enhance C3 leaf photosynthesis have been proposed to improve c...
Global food security is threatened by an increasing population and the effects of climate change. La...
Ever since the discovery of C4 photosynthesis in the mid-1960s, plant biologists have envisaged the ...
Major food and biofuel crops maize, sugarcane and sorghum utilise a specialised type of photosynthes...
Major food and biofuel crops maize, sugarcane and sorghum utilise a specialised type of photosynthes...
C-4 photosynthetic plants outperform C-3 plants in hot and arid climates. By concentrating carbon di...
C-4 photosynthetic plants outperform C-3 plants in hot and arid climates. By concentrating carbon di...
C-4 photosynthetic plants outperform C-3 plants in hot and arid climates. By concentrating carbon di...
C-4 photosynthetic plants outperform C-3 plants in hot and arid climates. By concentrating carbon di...
Anticipated future population growth necessitates that more food is produced using the same, or les...
Reducing photorespiration in C3 crops could significantly increase rates of photosynthesis and yield...
Reducing photorespiration in C3 crops could significantly increase rates of photosynthesis and yield...
The phenomenal increase in agricultural yields that we have witnessed in the last century has slowed...
It is now 20 years since a suggestion was first made of introducing a C4. photosynthetic pathway int...
Various genetic engineering routes to enhance C3 leaf photosynthesis have been proposed to improve c...
Various genetic engineering routes to enhance C3 leaf photosynthesis have been proposed to improve c...
Global food security is threatened by an increasing population and the effects of climate change. La...
Ever since the discovery of C4 photosynthesis in the mid-1960s, plant biologists have envisaged the ...
Major food and biofuel crops maize, sugarcane and sorghum utilise a specialised type of photosynthes...
Major food and biofuel crops maize, sugarcane and sorghum utilise a specialised type of photosynthes...