Similar Items: Novel and transgressive salinity tolerance in recombinant inbred lines of rice created by physiological coupling-uncoupling and network rewiring effects
- Contributions of adaptive plant architecture to transgressive salinity tolerance in recombinant inbred lines of rice: Molecular mechanisms based on transcriptional networks
- Divergent phenotypic response of rice accessions to transient heat stress during early seed development
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Author: Pabuayon, Isaiah C. M.
- Novel and transgressive salinity tolerance in recombinant inbred lines of rice created by physiological coupling-uncoupling and network rewiring effects
- Potential of Oryza officinalis to augment the cold tolerance genetic mechanisms of Oryza sativa by network complementation
- DECUSSATE network with flowering genes explains the variable effects of qDTY12.1 to rice yield under drought across genetic backgrounds
Author: Kitazumi, Ai
- Novel and transgressive salinity tolerance in recombinant inbred lines of rice created by physiological coupling-uncoupling and network rewiring effects
- Potential of Oryza officinalis to augment the cold tolerance genetic mechanisms of Oryza sativa by network complementation
- Contributions of adaptive plant architecture to transgressive salinity tolerance in recombinant inbred lines of rice: Molecular mechanisms based on transcriptional networks
- DECUSSATE network with flowering genes explains the variable effects of qDTY12.1 to rice yield under drought across genetic backgrounds