The deficiency of available phosphate significantly limits plant growth and development. This study sought to investigate how alfalfa (Medicago sativa), a high-yielding and high-quality forage widely cultivated worldwide, responds to phosphate deficiency stress by integrating transcriptional and post-transcriptional data. In this study, 6,041 differentially expressed genes (DEGs) were identified in alfalfa roots under phosphate deficiency conditions. Furthermore, psRNATarget, RNAhybrid, and TargetFinder were used to predict the target genes of 137 differentially expressed miRNAs (DEMs) in the root. In total, 3,912 DEGs were predicted as target genes. Pearson correlation analysis revealed 423 pairs of miRNA-mRNA regulatory relationships. MiR...
MicroRNAs (miRNAs) are crucial for many plant genetic pathways. Plant phosphate starvation-responsiv...
Plant leaf patterns and shapes are spectacularly diverse. Changing the complexity of leaflet numbers...
SummaryAlthough microRNAs (miRNAs) have been documented to regulate development in plants and animal...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
Recent studies have demonstrated the important role of plant microRNAs (miRNAs) under nutrient defic...
Alfalfa, an important forage legume, is an ideal crop for sustainable agriculture and a potential cr...
MicroRNAs (miRNAs) are crucial for many plant genetic pathways. Plant phosphate starvation-responsiv...
Plant leaf patterns and shapes are spectacularly diverse. Changing the complexity of leaflet numbers...
SummaryAlthough microRNAs (miRNAs) have been documented to regulate development in plants and animal...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
The deficiency of available phosphate significantly limits plant growth and development. This study ...
Recent studies have demonstrated the important role of plant microRNAs (miRNAs) under nutrient defic...
Alfalfa, an important forage legume, is an ideal crop for sustainable agriculture and a potential cr...
MicroRNAs (miRNAs) are crucial for many plant genetic pathways. Plant phosphate starvation-responsiv...
Plant leaf patterns and shapes are spectacularly diverse. Changing the complexity of leaflet numbers...
SummaryAlthough microRNAs (miRNAs) have been documented to regulate development in plants and animal...