Evaluation of seed yield of durum wheat (Triticum durum) under drought stress and determining correlation among some yield components using path coefficient analysis

Evaluation of seed yield of durum wheat (Triticum durum) under drought stress and determining correlation among some yield components using path coefficient analysis

Authors

  • Farzad Nofouzi 1. Department of Animal Science, Faculty of Agriculture, Ondokuz Mayıs University, 55139, Samsun, Turkey (Present address) 2. Department of Field crops, Faculty of Agriculture, Ankara University, 06110, Dışkapı, Ankara, Turkey (Former address)

DOI:

https://doi.org/10.22458/urj.v10i1.2023

Keywords:

Correlation, drought stress, durum wheat, Triticum, path analysis

Abstract

Water deficit affects can have negative effects on grain formation. I investigated the relationships between the characters of durum wheat (Triticum durum) and yield under drought stress and identified the most effective components of yield. I used 49 durum wheat genotypes (43 exotic and 6 local lines), in a lattice design (7×7) replicated twice, during tillering, stem elongation, anthesis and grain filling. There were positive correlations among harvest index (r=0,849), plant height (r=0,695), tillering (r=0,689), peduncle length (r=0,466) and grain yield. The number of seeds per spike (0,432), spike length (0,410) and 1 000 seed weight (0,385) had the highest direct effect on yield.

References

Abdmishani, S., & Shah Nejat Boushehri, A. A. (1997). Advanced plant breeding (Volume I). Institute of Publications and Printing of Tahran university. Tahran, Iran. 332.

Adak, M. S., Özkan, M., & Güler, M. (1999). A Research on reletionships among the characters and path coefficient analysis in barley (Hordeum vulgare L). Tarla Bitkileri Merkez Araştırma Dergisi, 8, 78-80.

Ataei, M. (2006). Path analysis of barley (Hordeum vulgare L.) yield. Journal of Agricultural Science, 12, 227-232. http://agris.fao.org/agris-search/search.do? recordID=TR2010000212

Bahari, M., & Hoseinpour, T. (2006). Evaluation of correlation of quantitative traits with seed yield of advanced durum wheat genotypes in Khorramabad. Abstract of the 9th Congress of Plant Breeding and Crop Production, Iran, Tahran University, 496-497. https://www.civilica.com/Paper-NABATAT09-NABATAT09_466.html

Bhatt, G. M. (1973). Significance of path coefficient analysis in determining the nature of character association. Euphytica, 22, 338-343. https:// link. springer. com/ article/ 10. 1007/ BF00022643

Chaudhary, B. D. (1977). Variability correlation and path analysis in barley. Genetic Population. 18, 325-330.

Connies, S. B., John E. M., & John S. B. (1987). Cell wall proteins at low water potentials. Plant Physiology, 85(1), 261-267. https://www.ncbi.nlm.nih.gov/pmc/articles/ PMC1054238/

Darvincel, A. (1978). Pattern of filling and grain production of winter wheat at a wide range of plant densities. Netherlands Journal of Agricultural Science, 26, 383-398.

Dashora, S. L., Rathore, A. K., Tikka, S. B. S., & Sharman, R. K. (1977). Correlation and path- coefficient analysis for morpho-physiological characters in barley. Africa Science. 47, 381-385.

Doting, S. M., & Knight, C.W. (1992). Alternative model for path analysis of small–grain yield. Crop Science. 32, 487-489. https://dl.sciencesocieties.org/publications/cs/ abstracts/32/2/CS0320020487

Fonseca, S., & Patterson, F. L. (1968). Yield component heritabilities and interrelationships of grain winter wheat (Triticum aestivum L.). Crop Science, 8, 614-617. https://dl.sciencesocieties.org/publications/cs/abstracts/8/5/CS0080050614

Garcia Del Moral, L. F., Ramos, J. M., Garcia Del Moral, M. B., & Jimenez-Tejada, M. P. (1991). Ontogenetic approach to grain production in spring barley based on path coefficient analysis. Crop Science, 31, 1179-1185. https://dl.sciencesocieties.org/ publications/cs/abstracts/31/5/CS0310051179

Gebeyehou, G., Knott, D. R., & Baker, R. J. (1982). Relationships among duration of vegetative and grain filling yield component and grain yield in durum wheat cultivars. Crop Science. 22, 287-290. https://dl.sciencesocieties.org/publications/ cs/ abstracts/22/2/CS0220020287

Haydari Sharif Abad, H. (2004). Methods of drought and drought damage reduction. Iran Ministry of Agriculture. Tahran, Iran. 346.

Kara, B., & Akman, Z. (2008). Yerel buğday ekotiplerinde özellikler arasi _iliskiler ve path analizi. Süleyman Demirel Üniversitesi, Fen Bilimleri Enstitüsü Dergisi, 11(3), 219-224. http://dergipark.ulakbim.gov.tr/sdufenbed/article/view/1089000876

Korkut, Z., Baser, K., & Bilir, S. (1993). Makarnalık buğdayda korelasyon ve path analizi çalışması. Buğday Ürünleri Sempozyumu, Ankara, 183-187.

Mohammadi, M. (1998). Final report correlation of agronomic traits with wheat grain yield in dryland conditions. Kohkilouye & Boyer Ahmet, Iran Agricultural Research Center, 232 (77), 11-17.

Mondal, A. B., Sadhu, D. P., & Sarkar, D. P. S. (1997). Correlation and path analysis in bread wheat. Environment and Ecology. 15(3), 537-539.

Salemi, H. R., & Afyuni, D. (2005). Açığı sulamanın yeni buğday rakamlarında verim ve verim öğeleri arasında etkisi. Tarım Bilim Doğal Kaynaklar Dergisi, 3, 11-21.

Simane, B., Struit, P. C,. Nachit, M. M., & Peacock, J. M. (1993). Ontogenetic analysis of yield components and yield stability of durum wheat in water-limited environments. Euphytica,71, 211-219. https://link.springer.com/ article/ 10.1007/ BF00040410

Solanki, K. B., & Bakhshi, J. S. (1973). Component characters of grain yield in barley. Indian Journal of Genetics, 33, 201-203.

Sonmez, F., Ulker, M., Yılmaz, N., Ege, H., Bürün, B., & Apak, R. (1999). The relationships among grain yield and some yield components in tir wheat. Turkish Journal of Agriculture & Forestry, 23, 45-52. http://journals.tubitak.gov.tr/ agriculture/issues/tar-99-23-1/tar-23-1-6-96099.pdf

Tewari, S. N. (1975). Path-Coefficient Analysis for grain yield and its components in a collection of barley germplasm. Proceeding of the Third International Barley Genetic Symposium. Garching, 686-701.

Tosun, O., & Yurtman, N. (1973). Ekmeklik buğdaylarda (Triticum aestivum L.em Thell.) verime etkili morfolojik ve fizyolojik karakterler arasindaki ilişkiler. Ankara Üniv. Zir. Fak. 23(4), 418-434.

Verweij, B., Ahmed, S., Anton, J. K., Nemhauser, G., & Shapiro, A. (2003). The sample average approximation method applied to stochastic routing problems: a computational study. Computational Optimization and Applications. 24: 289–333. https://link.springer.com/article/10.1023/A:1021814225969

Volaire, F. (2003). Seedling survival under drought differs between an annual (hordeum vulgare) and a perennial grass. New Phytologist. 160 (3), 501-510. http:// onlinelibrary.wiley.com/doi/10.1046/j.1469-8137.2003.00906.x/full

Yu, L., & Setter, T. L. (2003). Comparative transcriptional profiling of placenta and endosperm in developing maize kernels in response to water deficit. Plant Physiology.131, 568-582. https://doi.org/10.1104/pp.014365

Yürür, N., Tosun, O., Eser, D., & Geçġt, H. H. (1981). Buğdayda ana sap verimiyle bazi karakterler arasindaki ilişkiler. Ankara Üniversitesi Ziraat Fakültesi Yayınları. 755 Bilimsel Araştırma ve İncelemeler, Ankara, 433.

Published

2018-02-28

How to Cite

Nofouzi, F. (2018). Evaluation of seed yield of durum wheat (Triticum durum) under drought stress and determining correlation among some yield components using path coefficient analysis. UNED Research Journal, 10(1). https://doi.org/10.22458/urj.v10i1.2023

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