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This Soybean Nutrient Deficiency Information factsheet describes the symptoms and management of sulfur deficiency in soybean production in North Carolina.
This Soybean Nutrient Deficiency Information factsheet describes the symptoms and management of nitrogen deficiency in soybean production in North Carolina.
This Soybean Nutrient Deficiency Information factsheet describes the symptoms and management of boron deficiency in soybean production in North Carolina.
This Soybean Nutrient Deficiency Information factsheet describes the symptoms and management of phosphorus deficiency in soybean production in North Carolina.
This Soybean Nutrient Deficiency Information factsheet describes the symptoms and management of copper deficiency in soybean production in North Carolina.
This Soybean Nutrient Deficiency Information factsheet describes the symptoms and management of aluminum toxicity in soybean production in North Carolina.
This Soybean Nutrient Deficiency Information factsheet describes the symptoms and management of magnesium deficiency in soybean production in North Carolina.
This Soybean Nutrient Deficiency Information factsheet describes the symptoms and management of manganese deficiency in soybean production in North Carolina.
This publication discusses tillage treatments for large-seeded crops like corn and soybeans in the Piedmont region and recommends minimizing tillage based on research at the Upper Piedmont Research Station.
This Soybean Nutrient Deficiency Information factsheet describes the symptoms and management of potassium deficiency in soybean production in North Carolina.
This Soybean Nutrient Deficiency Information factsheet describes the symptoms and management of molybdenum deficiency in soybean production in North Carolina.
This Soybean Nutrient Deficiency Information factsheet describes the symptoms and management of zinc deficiency in soybean production in North Carolina.
This study examined the impact of termination timing on cereal rye biomass across 4 North Carolina locations for 2 growing seasons. Termination times were 4 weeks before and at soybean planting. Biomass samples were collected to determine if delaying termination significantly impacted the biomass achieved by the cereal rye cover. Cereal rye biomass ranged from 1325.4 lbs/acre to 6006.5 lbs/acre across environments and treatments. Delaying termination (Green) resulted in significantly higher cereal rye biomass for only 3 of 8 environments. The remaining 5 environments saw no significant gain in biomass from delaying termination an additional 4 weeks. These results suggest that terminating cereal rye at soybean planting may not be necessary to maximize biomass in our Southeastern climate.