Similar Items: Genome-wide Association Study (GWAS) for mesocotyl elongation in rice (Oryza sativa L.) under multiple culture conditions
- Mesocotyl elongation, an essential trait for dry-seeded rice (Oryza sativa L.): a review of physiological and genetic basis
- Rapid identification of qtl for mesocotyl length in rice through combining QTL-seq and genome-wide association analysis
- Natural variation of OsML1, a mitochondrial transcription termination factor, contributes to mesocotyl length variation in rice
- Validation of genes affecting rice mesocotyl length through candidate association analysis and identification of the superior haplotypes
- Validation of genes affecting rice grain zinc content through candidate gene-based association analysis
- QTL-seq for the identification of candidate genes for days to flowering and leaf shape in pigeonpea
Author: Liu, Hongyan
- Genome-wide Association Study (GWAS) for mesocotyl elongation in rice (Oryza sativa L.) under multiple culture conditions
- Rapid identification of qtl for mesocotyl length in rice through combining QTL-seq and genome-wide association analysis
- Mesocotyl elongation, an essential trait for dry-seeded rice (Oryza sativa L.): a review of physiological and genetic basis
- Identification and characterization of high‐yielding, short‐duration rice genotypes for tropical Asia
- Validation of genes affecting rice mesocotyl length through candidate association analysis and identification of the superior haplotypes
- Natural variation of OsML1, a mitochondrial transcription termination factor, contributes to mesocotyl length variation in rice
Author: Zhan, Junhui
- Identification of potential zinc deficiency responsive genes and regulatory pathways in rice by weighted gene co-expression network analysis
- Validation of genes affecting rice grain zinc content through candidate gene-based association analysis
- Genome-wide Association Study (GWAS) for mesocotyl elongation in rice (Oryza sativa L.) under multiple culture conditions
- Mesocotyl elongation, an essential trait for dry-seeded rice (Oryza sativa L.): a review of physiological and genetic basis
- Multi-trait genomic prediction models enhance the predictive ability of grain trace elements in rice
- OsNAC15 regulates tolerance to zinc deficiency and cadmium by binding to OsZIP7 and OsZIP10 in rice