Figure S2. Genotyping of osmdhar4 T-DNA insertion mutant. F1, R1 and L4 stand for the primers. W, wild type. M, homozygous mutant. H, heterozygous mutant. (JPG 479Â kb
The differenced expressed genes in jmj704 mutant plants compared with the wild type. (XLS 108 kb
Mutation in OsPHR3 does not affect the lateral root development under different NH4+ regimes. (PDF 1...
Figure S2. In situ hybridization of OscFBP1 in the basal portions of the shoots. Longitudinal sectio...
Figure S3. a OsMDHAR4-overexpressing construct. b PCR identification of transgenic plants from two o...
Figure S4. a Detection of H2O2 production in guard cells of WT and osmdhar4 mutant plants with H2DCF...
Table S1 List of primers used in this study (F, forward primer; R, reverse primer; q, quantitative R...
Figure S5. a Detection of the AsA content of the WT, the osmdhar4 mutant and OsMDHAR4-OE-1 plants un...
Figure S1. Alignment of OsMDHAR4 protein with monodehydroascorbate reductase proteins from Zea mays ...
PCR analysis of OsLOL5-overexpressing T1 and T3 strains. Northern hybridization of (A) WT: wild-type...
Figure S1. Sequence alignment of amino acids of OsDWARF4 and PMM1/OsDWARF11. (a) Sequence alignment ...
Schematic representation of the genetic constructs based on pCAMBIA1301 plasmid used for Agrobacteri...
Figure S1. Abiotic stress-responsive OsbHLHs. The fold change among each OsbHLH gene under different...
Figure S1. Alignment of the lipase domains of rice OsEDS1 and OsPAD4 as well as Arabidopsis AtEDS1 a...
Figure S4. Molecular characterization of the atgpdhc2 mutant. a Genomic organization of the atgpdhc2...
Figure S1. The phylogenetic tree of selected rice stress responsive C2H2-type zinc finger proteins a...
The differenced expressed genes in jmj704 mutant plants compared with the wild type. (XLS 108 kb
Mutation in OsPHR3 does not affect the lateral root development under different NH4+ regimes. (PDF 1...
Figure S2. In situ hybridization of OscFBP1 in the basal portions of the shoots. Longitudinal sectio...
Figure S3. a OsMDHAR4-overexpressing construct. b PCR identification of transgenic plants from two o...
Figure S4. a Detection of H2O2 production in guard cells of WT and osmdhar4 mutant plants with H2DCF...
Table S1 List of primers used in this study (F, forward primer; R, reverse primer; q, quantitative R...
Figure S5. a Detection of the AsA content of the WT, the osmdhar4 mutant and OsMDHAR4-OE-1 plants un...
Figure S1. Alignment of OsMDHAR4 protein with monodehydroascorbate reductase proteins from Zea mays ...
PCR analysis of OsLOL5-overexpressing T1 and T3 strains. Northern hybridization of (A) WT: wild-type...
Figure S1. Sequence alignment of amino acids of OsDWARF4 and PMM1/OsDWARF11. (a) Sequence alignment ...
Schematic representation of the genetic constructs based on pCAMBIA1301 plasmid used for Agrobacteri...
Figure S1. Abiotic stress-responsive OsbHLHs. The fold change among each OsbHLH gene under different...
Figure S1. Alignment of the lipase domains of rice OsEDS1 and OsPAD4 as well as Arabidopsis AtEDS1 a...
Figure S4. Molecular characterization of the atgpdhc2 mutant. a Genomic organization of the atgpdhc2...
Figure S1. The phylogenetic tree of selected rice stress responsive C2H2-type zinc finger proteins a...
The differenced expressed genes in jmj704 mutant plants compared with the wild type. (XLS 108 kb
Mutation in OsPHR3 does not affect the lateral root development under different NH4+ regimes. (PDF 1...
Figure S2. In situ hybridization of OscFBP1 in the basal portions of the shoots. Longitudinal sectio...