Pages that link to "Q37860745"
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The following pages link to Lessons from engineering a single-cell C4 photosynthetic pathway into rice (Q37860745):
Displaying 19 items.
- Biochemical and synthetic biology approaches to improve photosynthetic CO2-fixation (Q26741255) (← links)
- The development of C₄rice: current progress and future challenges (Q34284917) (← links)
- Biochemical approaches to C4 photosynthesis evolution studies: the case of malic enzymes decarboxylases (Q34355939) (← links)
- Strategies for engineering a two-celled C(4) photosynthetic pathway into rice (Q34627094) (← links)
- Identification of Photosynthesis-Associated C4 Candidate Genes through Comparative Leaf Gradient Transcriptome in Multiple Lineages of C3 and C4 Species. (Q35805965) (← links)
- Improvement of photosynthesis in rice (Oryza sativa L.) by inserting the C4 pathway (Q36944010) (← links)
- Physiological and photosynthetic characteristics of indica Hang2 expressing the sugarcane PEPC gene (Q37670197) (← links)
- Improving yield potential in crops under elevated CO(2): Integrating the photosynthetic and nitrogen utilization efficiencies (Q38029599) (← links)
- Achieving yield gains in wheat (Q38031908) (← links)
- Engineering photosynthesis in plants and synthetic microorganisms (Q38048748) (← links)
- Physiological traits for improving heat tolerance in wheat (Q38051165) (← links)
- Synthetic biology as it relates to CAM photosynthesis: challenges and opportunities (Q38190940) (← links)
- Engineering C4 photosynthesis into C3 chassis in the synthetic biology age. (Q38761982) (← links)
- Nocturnal phosphorylation of phosphoenolpyruvate carboxylase in the leaves of hygrophytic C3 monocots (Q46865178) (← links)
- C4 photosynthesis in C3 rice: a theoretical analysis of biochemical and anatomical factors. (Q49047120) (← links)
- Towards efficient photosynthesis: overexpression of Zea mays phosphoenolpyruvate carboxylase in Arabidopsis thaliana (Q51545677) (← links)
- Exploiting the engine of C(4) photosynthesis (Q51596338) (← links)
- Heterologous Expression of Key C and N Metabolic Enzymes Improves Re-assimilation of Photorespired CO2 and NH3, and Growth (Q89069204) (← links)
- On the road to C4 rice: advances and perspectives (Q90608672) (← links)