Cite

Al-Ashkar I., Alderfasi A., El-Hendawy S.E., Al-Suhaibani N., El-Kafafi S., Seleiman M.F. (2019): Detecting salt tolerance in doubled haploid wheat Lines. Agronomy, 9: 211. Search in Google Scholar

Allel D., BenAmar A., Badri M., Abdelly C. (2019): Evaluation of salinity tolerance indices in North African barley accessions at reproductive stage. Czech Journal of Genetics and Plant Breeding, 55: 61-69. Search in Google Scholar

Alzahrani O., Abouseadaa H., Abdelmoneim T.K., Alshehri M.A., El Mogy M.M., El-Beltagi H.S., Ati M.A.M. (2021): Agronomical, physiological and molecular evaluation reveals superior salt-tolerance in bread wheat through salt-induced priming approach. Notulae Botanicae Horti Agrobotanici Cluj-Napoca, 49(2): 12310. Search in Google Scholar

Arora N.K. (2019): Impact of climate change on agriculture production and its sustainable solutions. Environmental Sustainability, 2: 95-96. Search in Google Scholar

Arzani A. & Ashraf M. (2016): Smart engineering of genetic resources for enhanced salinity tolerance in crop plants. Critical Reviews in Plant Sciences, 35: 146-189. Search in Google Scholar

Banjac B. (2015): Potencijal za prinos i adaptacija pšenice na stresne uslove solonjeca, Doktorska disertacija. Univerzitet u Novom Sadu, Poljoprivredni fakultet. Novi Sad, Srbija. Search in Google Scholar

Banjac B., Mladenov V., Petrović S., Matković-Stojšin M., Krstić Đ., Vujić S., Mačkić K., Kuzmanović B., Banjac D., Jakšić S., Begić D., Šućur R. (2022): Phenotypic Variability of Wheat and Environmental Share in Soil Salinity Stress [3S] Conditions. Sustainability, 14(14): 8598. Search in Google Scholar

Belić M., Nešić Lj., Dimitrijević M., Petrović S., Ćirić V., Pekeč S., Vasić J. (2012): Impact of reclamation practices on the content and qualitative composition of exchangeable base cations of the solonetz soil. Ausutralian Journal of Crop Science, 6(10): 1471-1480. Search in Google Scholar

Chaudhry S. & Sidhu G.P.S. (2021): Climate change regulated abiotic stress mechanisms in plants: A comprehensive review. Plant Cell Reports, 41: 1-31. Search in Google Scholar

Corwin D.L. (2021): Climate change impacts on soil salinity in agricultural areas. European Journal of Soil Science, 72: 842-862. Search in Google Scholar

Dimitrijević M. & Petrović S. (2005): Genetika populacije – adaptabilnost i stabilnost genotipa. Poljoprivredni fakultet, Novi Sad i Naučni institut za ratarstvo i povrtarstvo Novi Sad. Novi Sad, Srbija. Search in Google Scholar

Dimitrijević M., Petrović S., Mladenov N., Belić M., Hristov N., Banjac B., Vukosavljev M. (2009): Phenotypic reaction of wheat grown on different soil types. Genetika, 41(2): 169-177. Search in Google Scholar

Dimitrijević M., Petrović S., Banjac B. (2012): Wheat breeding in abiotic stress conditions of solonetz. Genetika, 44(1): 91-100. Search in Google Scholar

El-Hendawy S.E., Hassan W.M., Al-Suhaibani N.A., Refay Y., Abdella K.A. (2017): Comparative performance of multivariable agro-physiological parameters for detecting salt tolerance of wheat cultivars under simulated saline field growing conditions. Frontiers in Plant Science, 8: 435. Search in Google Scholar

Explore Google Earth (2022): Available at: https://earth.google.com/web/ (accessed 10.12.2022.) Search in Google Scholar

Gauch H.G., Zobel R.W. (1996): AMMI analysis of yield trials. In: Genotype by environment interaction (Kang M.S., Gauch H.G., eds.). CRC Press, Boca Raton, Florida, SAD, 85-122. Search in Google Scholar

GenStat, Trial Version 18.1.0.17005. (2021): Available at: https://www.vsni.co.uk/ (accessed 12.02.2021.) Search in Google Scholar

Giraldo P., Benavente E., Manzano-Agugliaro F., Gimenez E. (2019): Worldwide research trends on wheat and barley: A bibliometric comparative analysis. Agronomy, 9: 352. Search in Google Scholar

Hadžić V., Nešić Lj., Belić M., Furman T., Savin L. (2002): Zemljišni potencijal Srbije. Traktori i pogonske mašine, 7(4): 43-51. Search in Google Scholar

Hasan A., Hafiz H.R., Siddiqui N., Khatun M., Islam R., Al-Mamun A. (2016): Evaluation on wheat genotypes for salt tolerance based on some physiological traits. Journal of Crop Science and Biotechnology, 18: 333-340. Search in Google Scholar

Iqbal M.A., Rahim J., Naeem W., Hassan S., Khattab Y., El-Sabagh A. (2021): Rainfed winter wheat (Triticum aestivum L.) cultivars respond differently to integrated fertilization in Pakistan. Fresenius Environmental Bulletin and Advances in Food Sciences, 30: 3115-3121. Search in Google Scholar

Kalhoro N.A., Rajpar I., Kalhoro S.A., Ali A., Raza S., Ahmed M., Kalhoto F.A., Ramazan M., Wahid F. (2016): Effect of salts stress on the growth and yield of wheat. American Journal of Plant Sciences, 7: 2257-2271. Search in Google Scholar

Khokhar M.I., Hussain M., Anwar J., Zulkiffal M., Iqbal M.M., Khan S.B., Khan A., Qayyum A., Sabir W., Mehmood S. (2017): Correlation and path analysis for yield and yield contributing characters in wheat (Triticum aestivum L.). Acta Agriculturae Serbica, 15: 19-24. Search in Google Scholar

Knežević D., Marković D., Marković S., Kondić D. (2013): Wheat yield and weedness under different rate of nitrogen fertilization. Agroknowledge Journal, 14(4): 497-506. Search in Google Scholar

Liu X., Chen D., Yang T., Huang F., Fu S., Li L. (2020): Changes in soil labile and recalcitrant carbon pools after land-use change in a semi-arid agro-pastoral ecotone in Central Asia. Ecological Indicators, 110: 105925. Search in Google Scholar

Luković K., Prodanović S., Perišić V., Milovanović M., Perišić V., Rajičić V., Zečević V. (2020): Multivariate analysis of morphological traits and the most important productive traits of wheat in extreme wet conditions. Applied Ecology and Environmental Research, 18(4): 5857-5871. Search in Google Scholar

Mansour E., Moustafa E.S., Desoky E.S.M., Ali M., Yasin M.A., Attia A., Alsuhaibani N., Tahir M.U., El-Hendawy S. (2020): Multidimensional evaluation for detecting salt tolerance of bread wheat genotypes under actual saline field growing conditions. Plants, 9: 1324. Search in Google Scholar

Mladenov V., Dimitrijević М., Petrović S., Boćanski J., Banjac B., Kondić-Špika A., Trkulja D. (2019): Genetic analysis of spike length in wheat. Genetika, 51(1): 167-178. Search in Google Scholar

Mohammadi R., Armion M., Zadhasan E., Ahamdi M.M., Amir A. (2018): The use of AMMI model for interpreting genotype × environment interaction in durum wheat. Experimental Agriculture, 54(5): 670-683. Search in Google Scholar

Mukhopadhyay R., Jat Sarkar H., Sharma Chander P., Bolan N.S. (2021): Soil salinity under climate change: Challenges for sustainable agriculture and food security. Journal of Environmental Management, 280: 111736. Search in Google Scholar

Munns R. & Tester M. (2008): Mechanisms of salinity tolerance. Annual Review of Plant Biology, 59: 651-681. Search in Google Scholar

Nadeem M., Tariq M.N., Amjad M., Sajjad M., Akram M., Imran M., Shariati M.A.,Gondal T.A., Kenijz N., Kulikov D. (2020): Salinity-induced changes in the nutritional quality of bread wheat (Triticum aestivum L.) genotypes. Agrivita Journal of Agricurtural Science, 42: 1-12. Search in Google Scholar

Nassar R., Kamel H.A., Ghoniem A.E., Alacon J.J., Sekara A., Ulrich C., Abdelhamid M.T. (2020): Physiological and anatomical mechanisms in wheat to cope with salt stress induced by seawater. Plants, 9: 237-251. Search in Google Scholar

Neisse A.C., Kirch J.L., Hongyu K. (2018): AMMI and GGE Biplot for genotype × environment interaction: a medoid–based hierarchical cluster analysis approach for high–dimensional data. Biometrical Letters, 55(2): 97-121. Search in Google Scholar

Perišić V., Perišić V., Luković K., Bratković K., Zečević V., Babić S., Matković Stojšin M. (2022): Stability of grain yield performance of winter wheat genotypes. Selekcija i semenarstvo, 28(2): 52-60. Search in Google Scholar

Petrović S., Dimitrijević M., Belić M., Banjac B., Vukosavljev M. (2009): Spike stability parameters in wheat grown on solonetz soil. Genetika, 41(2), 199-205. Search in Google Scholar

Petrović S., Dimitrijevic M., Belić M., Banjac B., Boškovic J., Zečević V., Pejić B. (2010): The variation of yield components in wheat (Triticum aestivum L.) in response to stressful growing conditions of alkaline soil. Genetika, 42(3): 545-555. Search in Google Scholar

Petrović S., Dimitrijević M., Banjac B. (2016): Varijabilnost i međuzavisnost komponenti prinosa na solonjecu i černozemu. Letopis naučnih radova Poljoprivrednog fakulteta, 40(1): 47-52. Search in Google Scholar

Popović V., Ljubičić N., Kostić M., Radulović M., Blagojević D., Ugrenović V., Popović D., Ivošević B. (2020): Genotype × environment interaction for wheat yield traits suitable for selection in different seed priming conditions. Plants, 9: 1804. Search in Google Scholar

Ray D.K., Mueller N.D., West P.C., Foley J.A. (2013): Yield trends are insufficient to double global crop production by 2050. PLoS ONE, 8: e66428. Search in Google Scholar

Republic Hydrometeorological Institute of Serbia. Available at: https://www.hidmet.gov.rs/ (accessed 17.08.2021.) Search in Google Scholar

Sen A., Islam M.M., Zaman E., Ghosh U.K., Momtaz M.B., Islam M.A., Urmi T.A., Mamun M.A.A., Rahman M.M., Kamal M.Z.U., Rahman G.K.M.M., Haque M.M., Murata Y. (2022): Agro-Morphological, Yield and Biochemical Responses of Selected Wheat (Triticum aestivum L.) Genotypes to Salt Stress. Agronomy, 12(12): 3027. Search in Google Scholar

Shewry P.R. & Hey S.J. (2015): The contribution of wheat to human diet and health. Food Energy Security, 4: 178-202. Search in Google Scholar

Zečević V., Knežević D., Mićanović D., Madić M. (2008): Genetic and phenotypic variability of spike length and plant height in wheat. Kragujevac Journal of Science, 30: 125-130. Search in Google Scholar

Zečević V., Bošković J., Dimitrijević M., Petrović S. (2010): Genetic and phenotypic variability of yield components in wheat (Triticum aestivum L.). Bulgarian Journal of Agricultural Science, 16(4): 422-428. Search in Google Scholar

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