Combining ability analysis over environments in bread wheat

Thirty-eight genotypes of wheat including 8 parents, their 28 F1s and 2 checks evaluated in 4 different environments i.e. early sown, normal sown, late sown and very late sown conditions was undertaken to study the combining ability in bread wheat for grain yield and its component traits. From poole...

Full description

Bibliographic Details
Main Author: Vijay Sharma, N. S. Dodiya, R. B. Dubey, S. G. Khandagale and Rumana Khan
Format: Article
Language:English
Published: Indian Society of Plant Breeders 2019-12-01
Series:Electronic Journal of Plant Breeding
Subjects:
gca
sca
id doaj-cea2e44ee64449508c9cd83f18871963
record_format Article
spelling doaj-cea2e44ee64449508c9cd83f188719632021-01-05T11:22:35ZengIndian Society of Plant BreedersElectronic Journal of Plant Breeding0975-928X2019-12-0110413971404 10.5958/0975-928X.2019.00179.0Combining ability analysis over environments in bread wheatVijay Sharma, N. S. Dodiya, R. B. Dubey, S. G. Khandagale and Rumana Khan Thirty-eight genotypes of wheat including 8 parents, their 28 F1s and 2 checks evaluated in 4 different environments i.e. early sown, normal sown, late sown and very late sown conditions was undertaken to study the combining ability in bread wheat for grain yield and its component traits. From pooled analysis, it was found that mean square due to GCA and SCA were significant for all characters which revealed difference between parents for GCA and difference between crosses for SCA. Significant mean square for GCA x E and SCA x E for proline content, chlorophyll content, chlorophyll stability index and heat injury was observed. In addition, SCA x E for grain yield was also significant. This suggested that additive and non-additive genetic components were sensitive to environments. Variance for GCA was higher than their respective SCA variance for grain yield per plant, leaf canopy temperature, proline content and chlorophyll stability index which suggested that additive component was less stable over the environment than dominant component. Parents HD 2987 was good general combiners for grain yield over different environments. Cross HI 1544 x HD 2987 was the best specific combiner for grain yield per plant followed by HI 1544 x RAJ 4079. bread wheatdiallel analysisgcascacombining ability
collection DOAJ
language English
format Article
sources DOAJ
author Vijay Sharma, N. S. Dodiya, R. B. Dubey, S. G. Khandagale and Rumana Khan
spellingShingle Vijay Sharma, N. S. Dodiya, R. B. Dubey, S. G. Khandagale and Rumana Khan
Combining ability analysis over environments in bread wheat
Electronic Journal of Plant Breeding
bread wheat
diallel analysis
gca
sca
combining ability
author_facet Vijay Sharma, N. S. Dodiya, R. B. Dubey, S. G. Khandagale and Rumana Khan
author_sort Vijay Sharma, N. S. Dodiya, R. B. Dubey, S. G. Khandagale and Rumana Khan
title Combining ability analysis over environments in bread wheat
title_short Combining ability analysis over environments in bread wheat
title_full Combining ability analysis over environments in bread wheat
title_fullStr Combining ability analysis over environments in bread wheat
title_full_unstemmed Combining ability analysis over environments in bread wheat
title_sort combining ability analysis over environments in bread wheat
publisher Indian Society of Plant Breeders
series Electronic Journal of Plant Breeding
issn 0975-928X
publishDate 2019-12-01
description Thirty-eight genotypes of wheat including 8 parents, their 28 F1s and 2 checks evaluated in 4 different environments i.e. early sown, normal sown, late sown and very late sown conditions was undertaken to study the combining ability in bread wheat for grain yield and its component traits. From pooled analysis, it was found that mean square due to GCA and SCA were significant for all characters which revealed difference between parents for GCA and difference between crosses for SCA. Significant mean square for GCA x E and SCA x E for proline content, chlorophyll content, chlorophyll stability index and heat injury was observed. In addition, SCA x E for grain yield was also significant. This suggested that additive and non-additive genetic components were sensitive to environments. Variance for GCA was higher than their respective SCA variance for grain yield per plant, leaf canopy temperature, proline content and chlorophyll stability index which suggested that additive component was less stable over the environment than dominant component. Parents HD 2987 was good general combiners for grain yield over different environments. Cross HI 1544 x HD 2987 was the best specific combiner for grain yield per plant followed by HI 1544 x RAJ 4079.
topic bread wheat
diallel analysis
gca
sca
combining ability
work_keys_str_mv AT vijaysharmansdodiyarbdubeysgkhandagaleandrumanakhan combiningabilityanalysisoverenvironmentsinbreadwheat
_version_ 1724348368075882496