Journal of
Plant Breeding and Crop Science

  • Abbreviation: J. Plant Breed. Crop Sci.
  • Language: English
  • ISSN: 2006-9758
  • DOI: 10.5897/JPBCS
  • Start Year: 2009
  • Published Articles: 447

Full Length Research Paper

Evaluation of durum wheat (Triticum turgdium var durum) genotypes for drought tolerance using morpho-agronomic traits

Alemayehu Zemede Lemma
  • Alemayehu Zemede Lemma
  • Ethiopian Institute of Agricultural Sciences, Addis Ababa, Ethiopia.
  • Google Scholar
Firew Mekbib Hailemariam
  • Firew Mekbib Hailemariam
  • Plant Sciences, Haramaya University, Harar Ethiopia, P. O. Box 138, Dre Dawa Ethiopia.
  • Google Scholar
Kebebew Assefa Abebe
  • Kebebew Assefa Abebe
  • Ethiopian Institute of Agricultural Sciences, Addis Ababa, Ethiopia.
  • Google Scholar
Zewdie Bishaw
  • Zewdie Bishaw
  • International Center for Agricultural Research, Addis Ababa, Ethiopia.
  • Google Scholar


  •  Received: 12 May 2021
  •  Accepted: 23 July 2021
  •  Published: 31 December 2021

References

Acevedo E, Silva P,Silva H (2009). "Wheat Growth and Physiology," FAO. Corporate Repository pp. 1-24.

 

Akram M (2011). Growth and Yield Components of Wheat under Water Stress of Different Growth Stages. Bangladesh Journal of Agricultural Research 36(3):455-468
Crossref

 

Ameer AM, Markh GS, Mahar AR, Abro SA and Kanhar NA (2009). Effect of Water Stress on Yield and Yield Components of Wheat (Triticum aestivum L) Varieties. Pakistan Journal of Botany 41(3):1301-1310.

 

Arash N, Zakaria HP, Golam F (2013). Drought Tolerance in Wheat. Available at the Scientific World Journal 12 p 
Crossref

 

Bogale A, Tesfaye K (2016). Relationship between grain yield and yield components of the Ethiopian durum wheat genotypes at various growth stages. Tropical and Sub-tropical Agro-ecosystems 19(1):81-91.

 

Ayed S, Othmani A, Bouhaouel I, Teixeira da Silva JA (2021). Multi-Environment Screening of Durum Wheat Genotypes for Drought Tolerance in Changing Climatic Events. Agronomy 11(5):875.
Crossref

 

Blum A (1996). Crop response to drought and interpretation of adaptation. Plant Growth Regulation 20(2):135-148.
Crossref

 

Cattivelli L, Rizza F, Badeckc F, Mazzucottelli W, Mastrangelo, E Franciaa AM.,Marca E Tondellia A, Stanca AM (2008). Drought tolerance improvement in crops plants: An integrated view from breeding to genomics. Field Crops Resource 105(1-2):1-14
Crossref

 

Campos H, Cooper M, Habben JE, Edmeades GO, Schussler JR (2004). Improving drought tolerance in maize: a view from industry. Field Crops Research 90(1):19-34.
Crossref

 

Central Statistical Agency (CSA) (2019). "Agricultural Sample Survey 2018/19, Area and Production for Major Crops. Private Peasant Holdings," Vol. 1, Statistical Bulletin.

 

Darzi-Ramandi H, Najafi-Zarini H, Shariati VJ, Razavi K, Kazemitabar SK (2016). Screening Iranian bread wheat lines under different water regimes using yield based drought tolerance indices. SABRAO Journal of Animal Breeding and Genetics 48(4):491-503.

 

Desalign D, Bededa G, Zewdie A, Solomon G (2001). Drought Tolerance of Some Bread Wheat Genotypes in Ethiopia. Africa Crop Science Journal 9(2):385-392.
Crossref

 

Dias AS, Lidon FC (2009). Evaluation of grain filling rate and duration in bread and durum wheat under heat stress after anthesis. Journal of Agronomy and Crop Science 195(2):137-147.
Crossref

 

Dorion S, Lalon DES, Saini HS (1996). Induction of male sterility in wheat (Tritcum aestivum L.) by meiotic stage water deficit is preceded by a decline in invertase activity and changes in carbohydrate metabolism in anthers. Plant Physiology 111(1):137-145.
Crossref

 

Fischer RA, Maurer R (1978). Drought resistance in spring wheat cultivars: I. Grain yield response, Australian Journal of Agricultural Research 29(5):897-907.
Crossref

 

Garcia L, Moral F, Rharrabti Y, Villegas D, Royo C (2003). Evaluation of Grain Yield and its Components in Durum wheat under Mediterranean Conditions: An Ontogenic Approach. Agronomy Journal 95(2):266-274.
Crossref

 

Guilherme Filgueiras Soares Walter Quadros Ribeiro Júnior Lucas Felisberto PereiraCristiane Andréa de Lima Daiane dos Santos Soares Onno Muller Uwe Rascher Maria Lucrecia Gerosa Ramos.

 

Soares GF, Ribeiro WQ, Pereira LF, Lima CA, Soares DD, Muller O, Rascher U, Ramos ML (2020). Characterization of wheat genotypes for drought tolerance and water use efficiency. Crop Science (Piracicaba, Braz.) 78(5). (2021). 
Crossref

 

Gomez K, Gomez A (1984). Statistical Procedures for Agricultural Research 2nd edition, John Wiely and Sons inc., New York.

 

Gonzalez A, Isaura M, and. Luis A (2007). Response of genotypes to terminal soil moisture stress: phenology, growth and yield. Australian Journal of Agricultural Research 58(1):29-37.
Crossref

 

Habtamu A, Tadesse D, Liu H, Yan G (2016). Performance of Ethiopian bread wheat (Triticum aestivum L.) genotypes under contrasting water regimes: potential sources of variability for drought resistance breeding. Australian Journal of Crop Science 10(3):370-376.

 

Jinmeng Z, Shiqiao Z, Min C , Hong J Xiuying Z , Changhui P , Xuehe Lu Minxia Z and Jiaxin J (2018). Effect of Drought on Agronomic Traits of Rice and Wheat: A Meta-Analysis. International Journal of Environmental Research and Public Health 15:839, 
Crossref

 

Jones DB, Peterson ML Geng S (1979). Association between Grain Filling Rate and Duration and Yield Components in Rice. Available:

View

 

Karim Md A, Hamid A, and Rahman S 2000. Grain Growth and Yield Performance of Wheat under Subtropical Conditions: II. Effect of Water Stress at Reproductive Stage Cereal Research Communications 28(1):101-17
Crossref

 

Khan N, Naqvi FN (2012). Correlation and Path Coefficient Analysis in Wheat Genotypes under Irrigated and Non-Irrigated Conditions. Asian Journal of Agricultural Sciences. ISSN : 2041-3890

 

Khan AJ, Azam F, Ali A (2010). Relationship of morphological traits and grain yield in recombinant inbred wheat lines grown under drought conditions. Pakistan Journal of Botany 42(1):259-267.

 

Koocheki A, Yazdansepas RA, Mahmadyorov U, Mehrvar MR (2014). Physiological-based Selection Criteria for Terminal Drought in Wheat (Triticum aestivum L.) Journal of Agriculture, Science and Technology 16(5):1043-1053

 

Kwabena D, Daniel A, Hussein M, Asrat A, Blair MW (2016). Evaluation of common bean (Phaseolus vulgaris L.) genotypes for drought adaptation in Ethiopia. The crop Journal 4(5):367-376.
Crossref

 

Leilah AA, Al-Khateeb SA (2005). Statistical Analysis of Wheat Yield under Drought Conditions .Journal of Arid Environments 61(3):483-496.
Crossref

 

Mahpara F, Ahmed Z, Aslam M, Zaynab M (2018). Drought Effect and Tolerance Potential of Wheat: A Mini Review. International Journal of Nanotechnology and Allied Sciences 2(2):16-21.

 

Muhammad F, Hussain M, Kadambot H, Siddique M (2014). Drought Stresses in Wheat during Flowering and Grain-filling Periods. Critical Reviews in Plant Sciences 33(4).
Crossref

 

Nimai S, Pierre S, Matthew JP, Mikhail AS (2019). Drought tolerance during reproductive development is important for increasing wheat yield potential under climate change in Europe.Journal of Experimental Botany 70(9):2549-2560, 
Crossref

 

Plaut Z., Butow CW Blumenthal CS, Wrigley CW (2004). Transport of dry matter developing wheat kernels and contribution to grain yield under post-anthesis water deficit and elevated temperature. Field Crops Research 86(2-3):185-198.
Crossref

 

Reza M, Abdolvahab A (2017).Evaluation of Durum Wheat Genotypes based on Drought Tolerance Indices under different levels Drought Stress. Journal of Agricultural Sciences 62(1):1-4.
Crossref

 

SAS Institute Inc. 2004. SAS/STAT ® 9.1 User's Guide. Cary, NC: SAS Institute Inc.

 

Sahar B, .Nasserlehaq N, Ahmed B, Hassan O, Wuletaw Tadesse (2016). Effective Selection criteria for screening drought tolerant and high yielding bread wheat genotypes Universal Journal of Agricultural Research 4(4):134-142.
Crossref

 

Simane B, Streak PC, Nachit MM, Peacock JM (1993). Ontogenetic analysis of yield and yields components and yield stability of durum wheat in water limited environments Euphytica 71(3):211-219.
Crossref

 

Sial MA, Mohammed UD, Mangrio SM, Simair AA (2010). Screening of Wheat Genotypes for Water Stress Tolerance. Pakistan Journal of Biotechnology 7(1):137-143.

 

Singh RK, Chaudhary BD (1979). Biometrical methods in quantitative genetic analysis.Biometrical methods in quantitative genetic analysis.

 

Solomon KF, Labuscagne MT, Bennie ATP (2003). Responses of Ethiopian Durum Wheat (Triticum turgidum var durum L.) Genotypes to Drought Stress, South African Journal of Plant and Soil 20(2):54-58.
Crossref

 

Vahamidis K, Andreas J, Economou G (2019). Grain number determination in durum wheat as affected by drought stress: An analysis at spike and spikelet level. Annals of Applied 174(2):190-208.
Crossref

 

Zhao W, Liu L, Shen Q, Yang J, Han X, Tian F, Wu J(2020) Effects of water stress on photosynthesis, yield, and water use efficiency in winter wheat. Water 12(8):2127.
Crossref