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Evaluation of forty‑five rice (Oryza species) accessions for resistance to rice blast (Magnaporthe oryzae) disease under natural conditions

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Africa Rice (2011): Lessons from the Rice Crisis: Policies for Food Security in Africa; Africa Rice Center: Cotonou, Benin. Pp. 75 – 89. Search in Google Scholar

Balasubramanian V., Sie M., Hijmans R. J., Otsuka K. (2007): Increasing Rice Production in Sub‑Saharan Africa: Challenges and Opportunities. Advances in Agronomy 94: 55 – 133. http://dx.doi.org/10.1016/S0065‑2113(06)94002‑4 Search in Google Scholar

Bano D.A., Singh S.P., Waza S.A. (2017): Generation mean analysis for yield and quality traits in aromatic genotypes of rice (Oryza sativa L.). International Journal of Pure Applied Bioscience 5: 870 – 878. Search in Google Scholar

Chidiebere‑Mark N., Ohajianya D., Obasi P., Onyeagocha S. (2019): Profitability of rice production in different production systems in Ebonyi State, Nigeria. Open Agriculture 4: 237 – 246. Search in Google Scholar

Dipti S.S., Bergman C., Indrasari S.D., Herath T., Hall R., Lee H., Habibi F., Bassinello P.Z., Gratero E., Ferraz J.P., Fitzgerald M. (2012): The potential of rice to offer solutions for malnutrition and chronic diseases. R ice 5: 1 – 18. https://doi.org/10.1186/1939‑8433‑5‑16. Search in Google Scholar

Fakir G.A.I., Hossain M.U., Ahmed M.A., Doullah U., Alam M. (2002): Quality of farmers Boro and T. Aman rice seeds collected before sowing from Bogra, Rajshahi and Rangpur districts of Bangladesh. A paper presented in the review and planning meeting of the Rice Seed Health Improvement (SHIP), PETRRA Project held on 17 – 18 April at BRRI, Gazipur, Bangladesh. Search in Google Scholar

FAO (2012): FAO Rice Market Monitor, Trade and Markets Division Food and Agriculture Organization of the United Nations Volume XV – Issue No. 3: Available online at http://www.fao.org. Search in Google Scholar

Food and Agricultural Organisation Statistics (FAO) (2018): Food and Agriculture Organisation of the United Nations; FAOSTAT Statistics Database: Rome, Italy. Available online: http://faostat3.fao.org/. Search in Google Scholar

Food and Agricultural Organisation Statistic (FAO) (2019): Food and Agricultural Organisation 2019 report. http://www.fao.org/faostat/en/#home. Search in Google Scholar

FMARD (2012): Federal Ministry of Agriculture and Rural Development, Rice Transformation Project Proposal. FMARD, Abuja, Nigeria. Pp. 1 – 8. Search in Google Scholar

Ghazanfar M.U., Habib A., Sahi S.T. (2009): Screening of rice germplasm against Pyricularia oryzae the cause of rice blast disease. Pakistan Journal of Phytopathology 21: 41 – 44. Search in Google Scholar

Gwary D.M., BDliya B.S., Bwatanglang N. (2009): Integration of fungicides, crop varieties and sowing dates for the management of sorghum smuts in Nigerian Savanna. Archives of Phytopathology and Plant Protection 42: 988 – 999 Search in Google Scholar

Habib A., Javed N., Sahi S.M.T., Waheed M. (2012): Detection of seed borne mycoflora of different coarse and fine rice varieties and their management through seed treatment. Pakistan Journal of Phytopathology 24: 133 – 136. Search in Google Scholar

Haq I. M., Fadnan M., Jamil F.F., Rehman A. (2002): Screening of rice germplasm against Pyricularia oryzae and evaluation of various fungitoxicants for control of disease. Pakistan Journal of Phytopathology 14: 32 – 35. Search in Google Scholar

Hossain M.M., Srikant K. (2001): Field evaluation of fungicides, neem‑based for mulations and biological agents against blast of rice. Jaranul Maharashtra Agriculture University 26: 148 – 150. Search in Google Scholar

Idowu O.O., Salami A.O., Ajayi S.A., Akinwale R.O., Sere Y. (2013): Varietal resistance of rice to blast fungus Magnaporthe oryzae at two sites in south‑western Nigeria. African Journal of Biotechnology 12: 5173 – 5182. Search in Google Scholar

IRRI (2002): Standard Evaluation System for Rice, 2nd ed. IRRI Los Banos, Philippines, 44 p. Search in Google Scholar

Izge A.U., Muhammad Z.H., Goni H. (2007): Level of variability in groundnut (Arachis hypogaea L.) to Cercospora leaf spot disease implication for selection. Journal of Sustainable Development in Agriculture and Environment 2: 64 – 72. Search in Google Scholar

Jamal H.G., Serwar S.M., Ali K., Mubeen L., Mumtaz P. (2012): In‑vitro evaluation of fungicides, plant extracts and bio‑control agents against rice blast pathogen, Magnaporthe oryzae couch. Sindh Agriculture University, Tandojam, Sindh, Pakistan. Pakistan Journal of Botany 44: 1775 – 1778. Search in Google Scholar

Khati P., Hooda K. S., Shukla S. K. (2007): Screening of soybean genotypes against frogeye leaf spot. Indian Phytopathology 60: 121 – 122. Search in Google Scholar

Khush G.S. (2005): What it will take to feed 5.0 billion rice consumers in 2030. Plant Molecular Biology 59: 1 – 6. Search in Google Scholar

Kobayashi T., Sasahara M., Kanda E., Ishiguro K., Hase S., Torigoe Y. (2016): Assessment of rice panicle blast disease using airborne hyperspectral imagery. Open Agricultural Journal 10: 28 – 34. doi: 10.2174/1874331501610010028 Search in Google Scholar

Magar P.B., Acharya B., Pandey B. (2015): Use of chemical fungicides for the management of rice blast (Pyricularia grisea) disease at Jyotinagar, Chitwan, Nepal. International Journal of Applied Sciences and Biotechnology 3: 474 – 478. Search in Google Scholar

Mahendra P., Akshya W., Hirendra K., Jenish T. M., Jitendra B., Nirmal B., Shristi U., Narayan D., Prakash P., Jitendra U. (2022): Screening of rice genotypes against blast disease (Pyricularia oryzae) under direct seeded rice condition at Gokuleshwor, Baitadi, Canadian Journal of Agricultural and Applied Sciences CJAAS 2:1 – 16. Search in Google Scholar

Manandhar H.K., Timila R.D., Sharma S., Joshi S., Manandhar S., Gurung S.B., Sthapit S., Palikhey E., Pandey A., Joshi B.K., Manandhar G., Gauchan D., Jarvis D.I., Sthapit B.R. (2016): A field guide for identification and scoring methods of diseases in the mountain crops of Nepal. NARC, DoA, LI‑BIRD and Bioversity International, Nepal. Pp. 10 – 25. Search in Google Scholar

Mikaberidze A., McDonald B. A. (2020): A trade‑off between tolerance and resistance to a major fungal pathogen in elite wheat cultivars. New Phytologist 226: 879 – 890. doi: 10.1111/nph.16418 Search in Google Scholar

Mohanta B.K., Aslam M.R., Kabir M.E., Anam M.K. Alam Md.K., Habib M.A. (2003): Performance of different genotypes/cultivars to blast disease of rice in Boro and T. Aman crop in Bangladesh. Asian Journal of Plant Science 2: 575 – 577. Search in Google Scholar

Nalley L., Tsiboe F., Durand‑Morat A., Shew A., Thoma G. (2016): Economic and environmental impact of rice blast pathogen (Magnaporthe oryzae) alleviation in the United States. PLoS One 11: 1 – 15. DOI: 10.1371/journal.pone.0167295. Search in Google Scholar

Ney B., Bancal M.O., Bancal P., Bingham I. J., Foulkes J., Gouache D., Paveley N., Smith J. (2013): Crop architecture and crop tolerance to fungal diseases and insect herbivory. Mechanisms to limit crop losses. European Journal of Plant Pathology 135: 561 – 580. Search in Google Scholar

Neupane N., Bhusal K. (2021): A Review of Blast Disease of Rice in Nepal. Journal of Plant Pathology and Microbiology 12: 34 – 43. Search in Google Scholar

Pagán I., García‑Arenal F. (2018): Tolerance to Plant Pathogens: Theory and Experimental Evidence. International Journal of Molecular Science 19: 810. doi: 10.3390/ijms19030810 Search in Google Scholar

Raboin L .M., Ballini E., Tharreau D., Ramanantsoanirina A., Frouin J., Courtois B., Ahmadi N. (2016): Association mapping of resistance to rice blast in upland field conditions. Rice 9: 1 – 12. DOI: 10.1186/s12284‑016‑0131‑4. Search in Google Scholar

Salih A., Sreewongchai T., Sripichitt P., Parinthawong N. (2013): Identification of blast‑resistant varieties from landrace, improved and wild species of rice. Thailand Kasetsart Journal (Natural Science) 47: 1 – 7. Search in Google Scholar

Seck P. A., Diagne A., Mohanty S., Wopereis M. C.S. (2012): Crops that feed the world. Rice Food Security 4: 7 – 24. Search in Google Scholar

Seck P., Touré A., Coulibaly J., Diagne A., Wopereis M. (2013): Africa’s rice economy before and after the 2008 rice crisis. In Realizing Africa’s Rice Promise; CABI: Wallingford, UK, 138 p. Search in Google Scholar

Sellamuthu R., Liu G. F., Ranganathan C. B., Serraj R. (2011): Genetic analysis and validation of quantitative trait loci associated with reproductive‑growth traits and grain yield under drought stress in a doubled haploid line population of rice (Oryza sativa). Field Crop Research 124: 46 – 58. Search in Google Scholar

Shah A., Rajendra K. S., Shukla D. N. (2014): Screening of some fungi isolation of rice cultivars in different sites of Allahabad, Varanasi, Mirzapur, Jaunpur and Chandauli District in Uttar Pradesh. Journal of Agronomy and Veterinary Science 7: 67 – 71. Search in Google Scholar

Wang X., Lee J., Wang J., Bianco T., Jia Y. (2014): Current advances on genetic resistance to rice blast disease. In Tech: Rice‑Germplasm, Genetics and Improvement. Pp. 195 – 217. Search in Google Scholar

WARDA (West African Rice Development Association) (1996): Rice trends in sub‑(Roumen, 1992) Saharan Africa. 2nd edition, 68 p. Search in Google Scholar

WARDA (West Africa Rice Development Association) (2004): Rice blast in West Africa: Characterization of pathogen diversity, key screening sites and host resistance. Proceedings of a stakeholder workshop, Project R7552, UK Department for International Development and Crop Protection Programme, Proceedings Series No. 3, 123 p. Search in Google Scholar

Zhang G., Xu T., Tian Y., Xu H., Song J., Lan Y. (2020): Assessment of rice leaf blast severity using hyperspectral imaging during late vegetative growth. Australasian Plant Pathology 49: 571 – 578. doi: 10.1007/s13313‑020‑00736‑2 Search in Google Scholar

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