An International Open Access Journal
News Scroll
E-mail Alerts
Subscribe for TOC Alerts
Search Articles
sidebar
Creative Commons License

References


References

Aggarwal PK, Singh AK (2010) Implications of global climate change on water and food security. In: Ringler C, Biswas AK, Cline S (Eds.) Global Change: Impacts on Water and Food Security. Springer-Verlag Berlin Heidelberg, Pp. 49-63.

Anonymous (2014) Climate Change 2014: Synthesis report. Proceedings of the contribution of working groups I, II and III. In: Pachauri RK, Meyer LA (Eds.), Fifth assessment report of the Intergovernmental Panel on Climate Change (IPCC), Geneva, Pp. 151.

Anu, Singh V, Yashveer S, Niwas R, Malik P, Arpit, Dey S, Ahlawat U (2019) Assessment of genetic variability, heritability and genetic advance for grain yield and its contributing traits in wheat (Triticum aestivum). International Journal of Current Microbiology and Applied Sciences 8(8): 1169-1174.

Arya VK, Singh V, Kumar L, Kumar R, Kumar P, Chand P (2017) Genetic variability and diversity analysis for yield and its components in wheat (Triticum aestivum L.). Indian Journal of Agricultural Research 51(2): 128-134.

Balla K, Karsai I, Bonis P, Kiss T, Berki Z, Horvath A, Mayer M, Bencze Sand Veisz O (2019) Heat stress responses in a large set of winter wheat cultivars (Triticum aestivum L.) depend on the timing and duration of stress. PLoS ONE 14(9): e0222639.

Bhusal N, Sarial AK, Saharan RP, Munjal R, Meena BK, Sareen S (2016) Phenotyping of RIL population derived from heat tolerant and susceptible parents for grain yield and its components in wheat under terminal heat stress. Advances in Life Sciences 5(12): 5021-5028.

Burton GW, Devane EH (1953) Estimating heritability in tall Fescue (Festuca arundinacea) from replicated clonal material. Agronomy Journal 45: 478-481.

Choudhary RC, Sharma NK, Kumar R, Kumar M (2015) Genetic variability, heritability and genetic advance in wheat under different normal and heat stressed environments. Electronic Journal of Plant Breeding 6(4): 1082-1087.

Eid MA (2009) Estimation of heritability and genetic advance of yield traits in wheat (Triticum aestivum L.) under drought condition. International Journal of Genetics and Molecular Biology 1(7): 115-120.

Falconer DS (1981) Introduction to quantitative genetics.Longman, London and New York. Pp. 150-158.

Farzamipour MR, Moghaddam M, Aharizad S, Rashidi V (2013) Genetic variation for agronomic characters and drought tolerance among the recombinant inbred lines of wheat from the Norstar × Zagross cross. International Journal of Biosciences 3(8):76-86.

Ferede M, Worede F, Alemayehu G (2020) Phenotypic performance, genetic advance and regression analysis in bread wheat (Triticum aestivum L.) genotypes in Northwestern Ethiopia. Cogent Food & Agriculture 6: 1746227.

Fisher R (1930) The agreement of field experiment. Journal of the Ministry of Agriculture 33: 503-513.

Gupta R, Somanathan E, Dey S (2016) Global warming and local air pollution have reduced wheat yields in India. Climatic Change 140, 593-604. DOI 10.1007/s10584-016-1878-8.

Hari Kesh, Yadav AS, Sarial AK, Khajuria S, Jain BT (2017) Genotypic variability and character association among yield and yield contributing traits in Pigeon pea (Cajanus cajan L. Millsp).  Research Journal of Agricultural Science 8(1): 194-198.

Hays D, Mason E, Hwa Do J, Menz M, Reynolds M (2007) Expression quantitative trait loci mapping heat tolerance during reproductive development in wheat (T. aestivum). In: Buck HT, Nissi JE, Salomo’n N (Eds) Wheat Production in stressed environments Springer, Amsterdam, Pp, 373-382.

Hiscox JD, Israelstam GFA (1979) Method for the extraction of chlorophyll from leaf tissue without maceration. Canadian Journal of Botany 57 (12): 1332-1334.

IIWBR (2019) Progress  Report  of  the  All  India  Co-ordinated  Wheat  and  Barley Improvement Project. Crop Improvm. 01. ICAR-Indian institute of Wheat and Barley Research, Karnal, India.

Islam AU, Chhabra, AK, Dhanda SS, Peerzada H (2017) Genetic diversity, heritability and correlation studies for yield and its components in bread wheat under heat stress conditions. Journal of Agriculture and Veterinary Sciences, 10: 71-77.

Jin H, Wen W, Liu J, Zhai S, Zhang Y, Yan J, Liu Z, Xia X, He Z (2016) Genome-wide QTL mapping for wheat processing quality parameters in a Gaocheng 8901/Zhoumai 16 recombinant inbred line population. Frontiers in Plant Science 7: 1032.

Johnson HW, Robinson HF, Comstock RE (1955) Estimates of genetic and environmental variability in soybean. Journal of Agronomy 47: 314-318.

Kaushik SK, Tomar DS, Dixit AK, Saxena AK (2013) Assessment of wheat varieties in Central India under changed climatic scenario. Wudpecker Journal of Agricultural Research 2(2): 64-66.

Kifle Z, Firew M, Tadesse D (2016) Genetic variability, heritability and genetic advance in bread wheat (Triticum aestivum L) genotypes at Gurage zone, Ethiopia. International Journal of Microbiology and Biotechnology 1: 1–9.

Kumar R, Prasad BK, Singh MK, Verma A, Tyagi BS (2014) Genetic analysis for phenological and physiological traits in wheat (Triticum aestivum L.) under heat stress environment. Indian Journal of Agricultural Research 48 (1): 62-66.

Kumar S, Saxena S, Dubey SK, Chaudhary K, Sehgal S, Neetu, Ray SS (2019) Analysis of wheat crop forecasts, in india, generated using remote sensing data, under fasal project. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XLII-3/W6, 2019. ISPRS-GEOGLAM-ISRS Joint Int. Workshop on “Earth Observations for Agricultural Monitoring”, 18–20 February 2019, New Delhi, India

Lobell DB, Gourdji SM (2012) The influence of climate change on global crop productivity. Plant Physiology 160: 1686-1697.

Mansouri A, Oudjehih B, Benbelkacem A, Fellahi ZEA, Bouzerzour H (2018) Variation and relationships among agronomic traits in durum wheat [Triticum turgidum L. Thell. ssp. turgidum conv. durum (Desf.) MacKey] under South Mediterranean growth conditions: stepwise and path analyses. International Journal of Agronomy, pp. 11. https://doi.org/10.1155/2018/8191749.

Mekuria T, Hussein M, Tesfaye L (2018) Genetic improvement in grain yield and yield related traits of durum wheat (Triticum turgidum var.durum L.) in Ethiopia. International Journal of Advances in Scientific Research and Engineering 4(8): 150–162.

Patil C, Koujalagi D (2018) Genetic variability study in F2 population of tetraploid dicoccum wheat crosses. Journal of Applied and Natural Science 10: 773-778.

Peng J, Sun D, Nevo E (2011) Wild emmer wheat, Triticum dicoccoides, occupies a pivotal position in wheat domestication. Australian Journal of Crop Science 5: 1127-1143.

Rathwa HK, Pansuriya AG, Patel JB, Jalu RK (2018) Genetic variability, heritability and genetic advance in durum wheat (Triticum durum Desf.). International Journal of Current Microbiology and Applied Sciences 7: 1208-1215.

Reynolds MP, Nagarajan S, Razzaque MA, Ageeb OAA (2001) Heat tolerance. In: Reynolds MP, Ortiz Monasterio JI,  McNab A (Eds.), Application of Physiology in Wheat Breeding, CIMMYT, Mexico, D.F. Pp, 124-135.

Shankarrao BS, Mukherjee S, Pal, AK, De DK (2010) Estimation of variability for yield parameters in bread wheat (Triticum aestivum L.) grown in gangetic West Bengal. Electrical Journal of Plant Breeding 1(4): 764-768.

Thapa RS, Sharma PK, Pratap D, Singh T, Kumar A (2019) Assessment of genetic variability, heritability and genetic advance in wheat (Triticum aestivum L.) genotypes under normal and heat stress environment. Indian Journal of Agricultural Research 53: 51-56.

Upasna M, Sharma AK, Shailja C (2019) Genetic variability, heritability and genetic advance in bread wheat (Triticum aestivum L.). International Journal of Current Microbiology and Applied Sciences 8(7):2311–2315.

Wahid A, Gelani S, Ashraf M, Foolad MR (2007) Heat tolerance in plants: an overview. Environmental and Experimental Botany 61: 199-223.

Wang P, Wang H, Liu Q, Tian X, Shi Y and Zhang X (2017) QTL mapping of selenium content using a RIL population in wheat.
Plos One 12: e0184351.

Yadawad A, Hanichinal RR, Naday HL, Desai SA, Biradar S, Naik VR (2015) Genetic variability for yield parameters and rust resistance in F2 population of wheat (Triticum aestivum L.). The Bioscan 10(2): 707-710.

Editorial Board
Indexed & Listed In
Scimago Journal Rank
Track manuscript
Manuscript Statistics
Articles Statistics
Publication Statistics