Affiliation:
1. EGE ÜNİVERSİTESİ, ZİRAAT FAKÜLTESİ
2. EGE UNIVERSITY, FACULTY OF AGRICULTURE
Abstract
Soybean is the most widely grown leguminous and nutritionally important crop in the world. The selection criteria in soybean breeding suitable for second crop (double cropping) are expected to vary according to the main product conditions. Fourteen soybean [Glycine max (L.) Merr.] genotypes were studied in 2014, 2015 and 2016 to determine selection criteria for plant breeders using correlation and path coefficient analyses in soybean under second crop conditions. Randomized complete block design with four replicates was used for laying out the field experiments at research fields of Ege University. Variance analysis was perform for each characters and it was concluded that the genotype x year interaction was statistically significant at the 1% probability level in terms of all the traits examined. According to results of the correlation analysis, it is seen that six traits are positively correlated with grain yield, while the other traits are negatively correlated with seed yield. The six characters are pod numbers per plant (r= 313.3*), days to 50% flowering (r= 0.270*), days to maturity (r=0.286*), plant height (r=0.027ns), first pod height (r=0.181ns) and crude protein ratio (r=0.112ns). Path coefficient analysis showed grain yield positively and directly effected by pods number per plant (0.5532) followed by day to maturity (0.2483), plant height (0.1920), crude protein ratio (0.0403), first pod height (0.0266) and days to 50% flowering (0.0104); Grain yield was negatively and directly effected by 100-seed weight (-0.1697) and crude oil ratio (-0.0097). In conclusion under the second crop conditions, pod number per plant could be used as a selection criterion due to its high direct and positively effect on grain yield.
Publisher
Turkish Journal of Field Crops
Subject
Agronomy and Crop Science
Reference31 articles.
1. Acikgoz, N., E. Ilker and G. Gokcol. 2004. Assessment of biological research on the computer. Ege University Seed Technology Center. ISBN: 973-483-607-8. Pub.No: 2 Bornova-Izmir. Turkey (in Turkish).
2. Aditya, J. P., P. Bhartiya and A. Bhartiya. 2011. Genetic variability, heritability and character association for yield and component characters in soybean (G. max (L.) Merrill). Journal of Central European Agriculture, 12(1), 27-34.
3. Akram, R. M., W.M. Fares, H.S.A. Fateh and A.M.A. Rizk. 2011. Genetic variability, correlation and path analysis in soybean. Egypt. J. Plant Breed, 15(1), 89-102.
4. Akram, S., B.N. Hussain, M.A. Al Bari, D.J. Burritt and M.A. Hossain. 2016. Genetic variability and association analysis of soybean (Glycine max (L.) Merrill) for yield and yield attributing traits. Plant Gene and Trait, 7.
5. Akhter, M. and C.H. Sneller. 1996. Yield and yield components of early maturing soybean genotypes in the mid‐south. Crop Science, 36(4), 877-882.
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献