Javascript must be enabled to continue!
Balanced fertilization increases wheat yield response on different soils and agroecological zones in Ethiopia
View through CrossRef
AbstractThe response of wheat to the application of different rates of nitrogen (N), phosphorus (P), potassium (K), and sulfur (S) under balanced fertilization on different soil types and agroecologies has not been well studied in Ethiopia. Therefore, the objectives of this study were to (1) determine soil-specific responses of wheat to N, P, K, and S under balanced fertilization; (2) quantify agroecology-specific N, P, K, and S response of wheat under balanced fertilization; and (3) determine nutrient use efficiency of wheat on different soil types under balanced fertilization. Trials were conducted on farmers’ fields across 24 locations covering 4 soil types and 5 agroecological zones (AEZs) from 2013 to 2017. The mean grain yields of wheat significantly varied with applied N and P fertilizer rates with soil types and AEZs. With balanced application of other nutrients, the optimum N rates for wheat were 138 kg N ha−1on Cambisols and Luvisols, 92 kg N ha−1on Vertisols, and 176 kg N ha−1on Nitisols, while the optimum P rate was 20 kg P ha−1on Cambisols and Vertisols. The nutrient dose–response curve did not reveal consistent pattern for K and S applications on all soil types. The agronomic efficiency of wheat decreased with increasing rates N and P on all soil types. The highest agronomic efficiency of N (15.8 kg grain kg−1applied N) was recorded with application of 92 kg N ha−1on Vertisols, while the highest agronomic efficiency of P (49 kg grain kg−1applied P) was achieved with application of 10 kg P ha−1on Cambisols. We conclude that applications of 92–138 kg N ha−1, 20 kg P ha−1, 18 kg K ha−1, and 10 kg S ha−1under balanced application of zinc and boron could be recommended depending on soil type for wheat production in the study areas.
Title: Balanced fertilization increases wheat yield response on different soils and agroecological zones in Ethiopia
Description:
AbstractThe response of wheat to the application of different rates of nitrogen (N), phosphorus (P), potassium (K), and sulfur (S) under balanced fertilization on different soil types and agroecologies has not been well studied in Ethiopia.
Therefore, the objectives of this study were to (1) determine soil-specific responses of wheat to N, P, K, and S under balanced fertilization; (2) quantify agroecology-specific N, P, K, and S response of wheat under balanced fertilization; and (3) determine nutrient use efficiency of wheat on different soil types under balanced fertilization.
Trials were conducted on farmers’ fields across 24 locations covering 4 soil types and 5 agroecological zones (AEZs) from 2013 to 2017.
The mean grain yields of wheat significantly varied with applied N and P fertilizer rates with soil types and AEZs.
With balanced application of other nutrients, the optimum N rates for wheat were 138 kg N ha−1on Cambisols and Luvisols, 92 kg N ha−1on Vertisols, and 176 kg N ha−1on Nitisols, while the optimum P rate was 20 kg P ha−1on Cambisols and Vertisols.
The nutrient dose–response curve did not reveal consistent pattern for K and S applications on all soil types.
The agronomic efficiency of wheat decreased with increasing rates N and P on all soil types.
The highest agronomic efficiency of N (15.
8 kg grain kg−1applied N) was recorded with application of 92 kg N ha−1on Vertisols, while the highest agronomic efficiency of P (49 kg grain kg−1applied P) was achieved with application of 10 kg P ha−1on Cambisols.
We conclude that applications of 92–138 kg N ha−1, 20 kg P ha−1, 18 kg K ha−1, and 10 kg S ha−1under balanced application of zinc and boron could be recommended depending on soil type for wheat production in the study areas.
Related Results
Evaluation of Alternative Break Crops in Rotation with Bread Wheat (triticum aestivum l.) in South-Eastern Ethiopia
Evaluation of Alternative Break Crops in Rotation with Bread Wheat (triticum aestivum l.) in South-Eastern Ethiopia
Crop rotation could be a possible intervention to resolve multifaceted problems of monoculture. In recent years, there is a concern about soil depletion caused by intensive farming...
Environmental Effects and Their Impact on Yield in Adjacent Experimental Plots of High-stem and Short-Stem Wheat Varieties
Environmental Effects and Their Impact on Yield in Adjacent Experimental Plots of High-stem and Short-Stem Wheat Varieties
Abstract
Xinhuamai 818 was used as the experimental material for high-stem wheat varieties, HHH was used as the control plot for high-stem wheat varieties (one lett...
Environmental Effects and Their impact on Yield in Adjacent Experimental Plots of High and Short Stem Wheat Varieties
Environmental Effects and Their impact on Yield in Adjacent Experimental Plots of High and Short Stem Wheat Varieties
Abstract
Using Xinhuamai818 as the experimental material for high stem wheat varieties, HHH as the control plot for high stem wheat varieties(One letter represents ...
Row Orientation and Planting Pattern of Relay Intercropped Soybean and Wheat
Row Orientation and Planting Pattern of Relay Intercropped Soybean and Wheat
Relay intercropping soybean [Glycine max(L.) Merr.] into winter wheat (Triticum aestivum L.) may increase soybean yields compared with doublecropping. Once the soybean crop is esta...
Diplomatic Claims (Eritrea v. Ethiopia), Eritrea ' s Claim 20/Ethiopia ' s Claim 8, Partial Awards; Economic Loss Throughout Ethiopia (Ethiopia v. Eritrea), Ethiopia ' s Claim 7, Partial Award; Jus ad Bellum (Ethiopia v. Eritrea), Ethiopia ' s Claims 1-8,
Diplomatic Claims (Eritrea v. Ethiopia), Eritrea ' s Claim 20/Ethiopia ' s Claim 8, Partial Awards; Economic Loss Throughout Ethiopia (Ethiopia v. Eritrea), Ethiopia ' s Claim 7, Partial Award; Jus ad Bellum (Ethiopia v. Eritrea), Ethiopia ' s Claims 1-8,
Diplomatic Claims (Eritrea v. Ethiopia), Eritrea's Claim 20/Ethiopia's Claim 8, Partial Awards. At <http://www.pca-cpa.org>.Eritrea Ethiopia Claims Commission, December 19, 2...
Track to Combat Wheat Stem Rust (
Puccinia graminis
f. sp.
tritici
) Races: Pathogenicity Spectrum, Tempo-Spatial Dynamics, and Impacts on Irrigated Wheat in Ethiopia under Climate Ch
Track to Combat Wheat Stem Rust (
Puccinia graminis
f. sp.
tritici
) Races: Pathogenicity Spectrum, Tempo-Spatial Dynamics, and Impacts on Irrigated Wheat in Ethiopia under Climate Ch
1.
Abstract
Wheat stem rust (Puccinia graminis f. sp. tritici) is a major global threat to wheat production, driven by rapid shifts in virulence and...
Crop production under alternate rotations on a Dark Brown Chernozemic soil at Scott, Saskatchewan
Crop production under alternate rotations on a Dark Brown Chernozemic soil at Scott, Saskatchewan
Nine rotations of fallow (F), wheat (W), barley (B), canola (C) and alfalfa hay (H) were evaluated to determine whether alternating crops in rotation on Dark Brown soils increases ...
Crop Responses to Application of Optimum Nitrogen Fertilizers on Soils of Various Fertilities Formed from Long-Term Fertilization Regimes
Crop Responses to Application of Optimum Nitrogen Fertilizers on Soils of Various Fertilities Formed from Long-Term Fertilization Regimes
How crops uptake synthetic nitrogen (N) applied to soils of differing fertilities formed from long-term fertilization regimes is a noteworthy scientific question that remains uncle...

