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The experiment indicated that germin genes exhibited diverse expression patterns during soybean development.
Fold change is relative to soybean development (e.g., the earlier vegetative stage).
The diverse expression patterns of germin-like protein genes during soybean development also were reported by Lu et al. [ 36].
These findings suggest that GmaPHO1 genes may exert certain roles in soybean development with lineage-specific divergent patterns.
It follows that an understanding of these networks will further our understanding of the roles that NATs play in soybean development.
The overall extensive expression of the DA1-like genes in various organs implied that they may have universal roles in soybean development.
Similar(38)
Cytochrome P450s are indispensable for soybean growth, development, and defense against pathogens.
Both the tissue expression patterns and the expression fold changes under water deficit conditions revealed a large amount of variation among different TFs, suggesting their diverse functions during soybean growth, development and adaption to water deficit conditions.
In case of soybean production, drought severely affects soybean growth and development and may cause yield loss by approximately 40% in the worst year [ 10, 12, 13].
The results of our DGE analysis indicate that some HSP proteins and key enzymes may play roles in regulating soybean growth and development during dehydration.
Because soybean growth and development is extremely sensitive to water deficit, quality and crop yields are severely impacted by drought stress.
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