Title of article :
COMBINING ABILITY STUDIES ON YIELD RELATED TRAITS IN WHEAT UNDER NORMAL AND WATER STRESS CONDITIONS
Author/Authors :
Saeed, Akhter Ayub Agricultural Research Institute - Vegetable Research Institute, Pakistan , Khan, Abdus Salam University of Agriculture - Department of Plant Breeding and Genetics, Pakistan , Khaliq, Ihsan University of Agriculture - Department of Plant Breeding and Genetics, Pakistan , Ahmad, Rashid University of Agriculture - Department of Crop Physiology, Pakistan
Abstract :
Six diverse wheat cultivars/lines viz; Baviacore, Nesser, 9247, 9252, 9258 and 9267 were crossed in a complete diallel fashion to develop 30 F1 crosses, which were tested alongwith their parents under normal and water stress conditions. Numerical analysis was made for spike density, number of grains per spike, 100-grain weight, biological yield, grain yield and harvest index. Significant differences among genotypic mean were observed in all of the traits under both conditions. GCA and SCA differences were significant for all the traits under study except spike density and 100-grain weight in both conditions. Wheat variety Nesser showed maximum general combining ability value for spike density under water stress conditions and maximum GCA value for biological yield and grain yield under irrigated condition. The variety Baviacore proved best general combiner for number of grains per spike and harvest index under both conditions while biological yield and grain yield under water stress condition. Variety 9252 found best general combiner for 100-grain weight under both condition. The cross 9252 x Nesser showed maximum specific combining ability value for spike density and biological yield under irrigated while for 100-grain weight under water stress condition. 9258 x 9252 exhibited maximum SCA for number of grains per spike under irrigated while 9258 x Nesser under water stress condition. 9267 x Nesser showed maximum SCA for 100-grain weight under irrigated condition while spike density under water stress condition. 9258 x 9247 was proved best combiner for grain yield and harvest index irrigated while 9267 x 9258 for biological yield, grain yield and harvest index under water stress condition.
Keywords :
Triticun aestivum L. , genotypes , combining ability , diallel cross , water stress , variances , yield related traits
Journal title :
Pakistan Journal Of Agricultural Sciences
Journal title :
Pakistan Journal Of Agricultural Sciences