Document Type : Original Article

Authors

1 M. Sc. Plant Breeding, Science and Research branch, Islamic Azad University, Tehran, Iran

2 Assistant Professor of plant Breeding, Islamic Azad University, Shahre Rey Branch, Iran

3 National Plant Gene Bank of Iran, Karaj, Iran

4 Assistant Professor of Biotechnology, Science and Research branch, Islamic Azad University, Tehran, Iran

Abstract

Genotypic variation is useful to breeders when selecting genotypes to improve particular traits. Inorder to study of genetic diversity 20 genotypes of Hordeum murynum studied in the form of randomized complete block design the experimental field of islamic azad university shahre rey branch with 3 replication in the year 2012. Notes traits was conducted including days to heading, days to maturity, plant height, straw weight, harvest index, grain number per panicle, 10- panicle weight, 100- grain weight, biomass and grain yield. The results of analysis of variance showed that the significant differences were observed among genotypes for all morphological traits, except days to maturity and harvest index. Mean of traits classified using Duncan's multiple range test (p = 0.05). Line of 12-1092 produced the highest Plant height, days to heading, 10- panicle weight straw weight, biomass and grain yield. Correlation coefficients showed the grain yield has a positive at p= 0.05 and significant with biomass (r=0.97), number of nodes on the stem) r=0.72), 10- panicle weight (gr) and plant height. Stepwise regression analysis, grain yield as the dependent variable (Y) and other traits evaluated was considered as an independent variable (X). Results showed that the biomass and grain yield (with biomass) with 93.7% and 98.8% explained the maximum grain yield variation, respectively.

Keywords

Afzali Far A., Zahravi M., Bihamta, M. (2011). Evaluation of tolerant genotypes to drought stresses the barley spantanyum iran in Karaj region. Journal of Agronomy and Plant Breeding. 7: 44-25.
Baniya B, 1972. Crop Production in Dry Regions, Vol, 2. Leonard Hill, London.
Baum M., Grando S., Backes G., Jahoor A., Sabbagh A., Ceccarelli, S. (2003). QTLs for agronomic traits in the Mediterranean environment identified in recombinant inbred lines of the cross ëArtaí x. spontaneum 41-1. Theor Appl Genet., 107, 1215ñ1225.
Cao W G., Hucl P S G., Chibbar, R N. (1998). Genetic diversity within spelta and macha wheats based on RAPD analysis. Euphytica, 104: 181-189.
Chand N., Vishwakarma S R., Verma O P, Kumar, M. (2008). Worth of genetic parameters to sort out new elite barley lines over heterogeneous environments. Barley Genet. Newslett. 38: 10-13.
Dadashi M., Norinia, A A., MortezaAsghar M., Azizi Chakhrchaman, Sh. (2010). Evaluate the correlation a number of physiological and morphological characteristics of naked barley varieties with grain yield. Journal of Eco-physiology of crop plants and weeds. 15: 29-40.
Drikvand R., Salahvarzi E., Salahvarzi A., Hossinpour, T. (2012). Study of Genetic Diversity among Rainfed Barley Genotypes Using ISJ Markers and Morphological Traits. Journal of Agricultural Science;
4: ISSN 1916-9752 E-ISSN 1916-9760.
Golabady M., Arzani, A. (2003). Study of Genetic variation and Factor Analysis of Agronomic Traits in Durum wheat. Journal of Science Technology of Agriculture and Natural Resources, 1: 115-126.
Hayes PM., Castro A., Marquez-Cedill L. A., Corey C., Henson B., Jones J., Kling D., Mathero., Matus I., Rossi C., Sato, K. (2002). Genetic diversity for quantitatively inherited agronomic and malting quality traits. In Diversity in Barley. R. von Bothmer and T. van Hintum (Eds.).
Khajavi A, Aharizad S, Ahmadizadeh M.2014. Genetic diversity of promising lines of barley based on pheno-morphological traits in Ardabil area. International journal of Advanced Biological and Biomedical Research Volume 2, Issue 2, 2014: 456-462.
khanghah A M., Yousef A., Moosavi, S S. (2014). Investigate the relationship between studied traits with grain yield using regression analysis and path analysis 34 barley lines and cultivars. International Journal of Plant, Animal and Environmental Sciences. 4: ISSN 2231-4490.
Khodabandeh, N. (2003). Cereal crops. Seventh Edition. Tehran University Press.
Kling J., Mather D., Matus I., Rossi C., Sato, K. 2003. Genetic diversity for quantitatively inherited agronomic and malting quality traits. In R. Von Bothmer et al. (ed.) Diversity in barley (Hordeum vulgare). Elsevier Science Publishers, Amsterdam.
Kole, P C. (2006). Variability, Correlation and Regression Analysis in Third Somaclonal Generation of Barley. Barley Genetics Newsletter 36:44-47.
Maktoobian M., Soleymani A., Javanmard, H R. (2013). Drought Stress Effects on Seed Yield and Yield Components of Barley Cultivars. International Journal of Agronomy and Plant Production. 4: 3415-3418.
Morrell P L., Lundy K E., Clegg M T., (2003). Distinct geographic patterns of genetic diversity are maintained in wild barley (Hordeum vulgare ssp. spontaneum) despite migration. Proc. Natl. Acad. Sci U.S.A., 100:10812-10817.
Nevo, E. (1992). Origin, evolution, population genetic and resources for breeding of wild barley Hordeum spontaneum. In: Barley: Genetics. Biochemistry Molecular Biology and Biotechnology, (Ed.): PR Shewry, CAB international. Wallingford 19-143.
Neyestani, E., Mahmoodi, A A. and Rahimnia, F. (2005). Path analysis of grain yield and its components and estimation of heritability in barley. Journal of Agricultural. 2; 55-63.
Zaheer A., Ajmal, S. U., Munir, M., Zubair, M., Masood, M S (2008). Geneticdiversity for morphogenetic traits in barley germplasm. Pakistan Journal of Botany40: 1217-1224