Nitrogen Deficiency Tolerance and Responsiveness of Durum Wheat Genotypes in Ethiopia

Author:

Aga Tesfaye Geleta1ORCID,Abera Fetien Abay2,Tufa Tesfaye Balemi1,Abebe Kebebew Assefa1,Abeyo Bekele Geleta3,Ayana Negash Geleta1

Affiliation:

1. Ethiopian Institute of Agricultural Research (EIAR), Addis Ababa, Ethiopia

2. College of Dry Land Agriculture and Natural Resources, Department of Dry Land Crops and Horticultural Science, Mekelle University, Mekelle, Ethiopia

3. International Maize and Wheat Improvement Centre (CIMMYT), Addis Ababa, Ethiopia

Abstract

Development of low-nitrogen (N) tolerant and N-responsive durum wheat genotypes is required since nitrogen efficiency has emerged as a highly desirable trait from economic and environmental perspectives. Two hundred durum wheat genotypes were evaluated at three locations under optimum (ON) and low (LN) nitrogen conditions to screen genotypes for low-nitrogen tolerance and responsiveness to an optimum N supply. The results showed significant variations among the durum wheat genotypes for low-N tolerance and responsiveness. The average reduction in grain yield under the LN condition was 48.03% across genotypes. Only 17% of the genotypes tested performed well (grain yield reduction <40%) under LN conditions. Based on the absolute grain yield, biomass yield, and normalized difference vegetative index value, on average, 32, 14, 17, and 37% of the tested genotypes were classified as efficient and responsive, efficient and nonresponsive, inefficient and responsive, and inefficient and nonresponsive, respectively. Considering the absolute and relative grain yield, biomass yield, normalized difference vegetative index values, and stress tolerance indices as selection criteria, 17 genotypes were chosen for subsequent breeding. Among the screening indices, geometric mean productivity, stress tolerance index, yield index, and stress susceptibility index exhibited positive and significant correlations with grain yield under both N conditions; hence, either of these traits can be used to select low-N-tolerant genotypes. The common genotypes identified as LN-tolerant and responsive to N application in this study could be used as parental donors for developing N-efficient and responsive durum wheat varieties.

Funder

Ethiopian Institute of Agricultural Research

Publisher

Hindawi Limited

Subject

Agronomy and Crop Science

Reference59 articles.

1. Durum Wheat (Triticum durum Desf.): Origin, Cultivation and Potential Expansion in Sub-Saharan Africa

2. The federal democratic republic of Ethiopia central statistical agency report on area and production of crops;C. S. A. Fdre;The Federal Democratic Republic of Ethiopia Central Statistical Agency V,2021

3. Nutrient uptake, use efficiency and productivity of bread wheat (Triticum aestivum L.) as affected by nitrogen and potassium fertilizer in Keddida Gamela Woreda, Southern Ethiopia

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