5,425
Views
12
CrossRef citations to date
0
Altmetric
SOIL & CROP SCIENCES

Management of yellow rust (Puccinia striiformis f.sp. tritici) and stem rust (Puccinia graminis f.sp tritici) of bread wheat through host resistance and fungicide application in Southern Ethiopia

| (Reviewing editor)
Article: 1739493 | Received 27 Dec 2019, Accepted 03 Mar 2020, Published online: 21 Mar 2020

References

  • Ayele, B., Eshetu, B., Betelehem, B., Bekele, H., Melaku, D., Asnakech, T., Melkamu, A., Amare, A., Kiros, M., & Fekede, A. (2008). Review of two decades of research on diseases of small cereal crops. In A. Tadesse (eds.), Increasing crop production through improved plant protection Vol I. Proceedings of 14th Annual Conference of Plant Protection Society of Ethiopia held in 19-22 December 2006 (pp. 375–416). Addis Ababa, Ethiopia. https://doi.org/10.1016/j.fertnstert.2007.02.050
  • Badebo, A. (2002). Breeding bread wheat with multiple disease resistance and high yielding for the Ethiopian highlands: Broadening the genetic base of Yellow rust and tan spot resistance [Ph.D. Thesis]. Georg-August University of Goettingen. 115 pp.
  • Beard, C., Jayasena, K., Thomas, G., & Loughman, R. (2004). Managing stem rust of wheat. Farmnote 73, State of Western Australia. http://www.agric.wa.gov.au. Accessed 6 February 2009.
  • Berger, R. D. (1981). Comparison of the gompertz and logistic equation to describe plant disease progress. Phytopathology, 71, 716–31. doi: 10.4994/Phyto-71-716
  • Boshoff, W. H. P., Pretorius, Z. A., & van Niekerk, B. D. (2003). Fungicide efficacy and the impact of Yellow rust on spring and winter wheat in South Africa. South African Journal of Plant and Soil, 20(1), 11–17. doi: 10.1080/02571862.2003.10634898.
  • Campbell, C. L., & Madden, L. V. (1990). Temporal analysis of epidemics I. Description and comparison of disease progress curves. In Introduction to plant disease epidemiology (pp. 532). ISBN 0471832367. John Wiley and Son.
  • Conceição, G., Rita, C., Ana, S. A., José, C., Nuno, P., João, C., Armindo, C., & Benvindo, M. (2016). Septoria leaf blotch and Yellow rust control by: Fungicide application opportunity and genetic response of bread wheat varieties. Emirates Journal of Food and Agriculture, 28(7), 493–500. doi: 10.9755/ejfa.2015.04.345
  • Cook, R. J., Hims, M. J., & Vaughan, T. B. (1999). Effects of fungicide spray timing on winter wheat disease control. Plant Pathology, 48(1), 33–50. doi: 10.1046/j.1365+3059.1999.00319.x.
  • Cook, R. J., & King, J. E. (1984). Loss caused by cereal diseases and the economics of fungicidal control, plant diseases: Infection, damage and loss. Blackwell.
  • CSA (Central Statistical Agency). (2018). Agricultural sample survey, 2017/2018 (Report on area and production of crops (Private peasant holdings, main season). Statistical Authority, Addis Ababa, Ethiopia. Statistical Bulletin No. 446. Volume 5. 60 pp).
  • FAO, IFAD, UNICEF, WFP, & WHO. (2018). The state of food security and nutrition in the world 2018. (Building climate resilience for food security and nutrition) (pp.202). FAO. Licence: CC BY-NC-SA 3.0 IGO. ISBN 978-92-5-130571-3. https://creativecommons.org/licenses/by-nc-sa/3.0/igo.
  • Foster, A. J., Lollato, R., Vandeveer, M., & De Wolf, E. D. (2017). Value of Fungicide Application in Wheat Production in Southwest Kansas. Kansas Agricultural Experiment Station Research Reports, 3(5), 8. https://doi.org/10.4148/2378-5977.7385
  • Getachew, G. M., & Biruk, K. M. (2018). Assessment on spatial distribution and their management options against wheat rust (Puccinia spp.) disease species in selected administrative zones of southern Ethiopia. International Journal of Research in Agriculture and Forestry, 5(3), 8–16.
  • Gomez, K. A., & Gomez, A. A. (1984). Statistical procedures for agricultural research (2nd ed.). John Wiley and Sons, Inc.
  • Green, M. B., Le Baron, H. M., & Moberg, W. K. (1990). Managing resistance to agrochemicals: From fundamental research to practical strategies. American chemical society symposium series number 421. American Chemical Society.
  • Hailu, D., & Fininsa, C. (2009). relationship between yellow rust (puccinia striiformis) and common wheat (triticum aestivum) yield loss in the highlands of bale, southeastern ethiopia. Archives of Phytopathology and Plant Protection, 42(6), 508–523. doi: 10.1080/03235400701191663
  • Hovmoller, M. S., Yahyaoui, A. H., Milus, E. A., & Justesen, A. F. (2008). Rapid global spread of two aggressive strains of a wheat rust fungus. Molecular Ecology, 17(17), 3818–3826. https://doi.org/10.1111/j.1365-294X.2008.03886.x
  • International Center for Agricultural Research in the Dry Areas [ICARDA]. (2012). Meeting the challenge of yellow rust. In C. Crops. Ed. Proceedings of the 2nd, 3rd and 4th Regional Conferences on Yellow Rust in the Central and West Asia and North Africa (CWANA), 22–26 March 2004 Tashkent, Uzbekistan,on 8–11 June 2006; and Antalya, Turkey, on 10–12 October 2009. ISBN: 92-9127-273-6 (pp. 422). https://doi.org/10.1094/PDIS-11-11-0999-PDN
  • International Maize and Wheat Improvement Center [CIMMYT]. (1988). Farm agronomic data to farmer recommendations: An economics training manual. Completely revised edition. CIMMYT. 968-6127-18-6.
  • International Maize and Wheat Improvement Center [CIMMYT]. (2005). Sounding the alarm on global stem rust: An assessment of race Ug99 in Kenya and Ethiopia and the potential for impact in neighboring regions and beyond (Expert Panel Report) (p. 26). International Center for Maize and Wheat Improvement.
  • Jeger, M. J. (2004). Analysis of disease progress as a basis for evaluating disease management practices. Annual Review of Phytopathology, 42, 61–82. https://doi.org/10.1146/annurev.phyto.42.040803.140427
  • Jones, D. G. (1998). The epidemiology of plant diseases. Kluwer Academic Publishers.
  • Krishna, D. J., Ghulam, U., Attiq, U. R., Muhammad, M. J., Javed, A., Makhdoom, H., Angela, P., Ibni, A. K., & Amanullah, B. (2017). Wheat yield response to foliar fungicide application against leaf rust caused by Puccinia triticina. Journal of Agricultural Science and Technology A, 7, 160–168. doi: 10.17265/2161-6256/2017.03.003
  • Leonard, K. J., & Szabo, L. J. (2005). Stem rust of small grains and grasses caused by Puccinia graminis. Molecular Plant Pathology, 6(2), 99–111. https://doi.org/10.1111/j.1364-3703.2005.00273.x
  • Mercer, P. C., & Ruddock, A. (2005). Disease management of winter wheat with reduced doses of fungicides in Northern Ireland. Crop Protection, 24(3), 221–228. doi: 10.1016/j.cropro.2004.07.009
  • Milus, E. A. (1994). Effect of foliar fungicides on disease control, yield and test weight of soft red winter wheat. Crop Protection, 13, 291–295. doi: 10.1016/0261-2194(94)90018-3
  • Milus, E. A., Kristensen, K., & Hovmoller, M. (2009). Evidence of increased aggressiveness in a recent wide spread strain of Puccinia striiformis f.sp. tritici causing Yellow rust of wheat. Phytopathology, 99(1), 89–94. https://doi.org/10.1094/PHYTO-99-1-0089
  • MoA (Ministry of Agriculture). (2012). Animal and plant health regulatory directorate crop variety register. Issue No. 15. Ministry of Agriculture.
  • MoA (Ministry of Agriculture). (2015). Plant health regulatory directorate. List of registered pesticides as of October, 2015.
  • MoANR (Ministry of Agriculture and Natural Resources). (2016). Plant variety release, protection and seed quality control directorate. Crop Variety Register, (19), 7–18. Addis Ababa, Ethiopia: Ministry of Agriculture.
  • MoANR (Ministry of Agriculture and Natural Resources) & EATA (Ethiopian Agricultural Transformation Agency). (2016). Soil fertility status and fertilizer recommendation Atlas of the southern nations, nationalities and peoples’ regional state, Ethiopia. ATA.
  • MoANR (Ministry of Agriculture and Natural Resources) & EATA (Ethiopian Agricultural Transformation Agency). (2018). Crop production and development package. In Amharic Version (pp. 215). Ministry of Agriculture.
  • Peterson, R. F., Campbell, A. B., & Hannah, A. E. (1948). A diagrammatic scale for estimating rust intensity on leaves and stems of cereals. Canadian Journal of Research, 26, 496–500. doi: 10.1139/cjr48c-033
  • Phillip, N. S., & Nathan, M. (2018). Evaluation of foliar fungicide programs in mid-Atlantic winter wheat production systems. Crop Protection, 13, 103–110. https://doi.org/10.1016/j.cropro.2017.09.012
  • Ram, C. S., Kumarse, N., Amir, A., Zafar, Z., & Anwar, U. J. (2016). Reduction of Winter Wheat Yield Losses Caused by Yellow Rust through Fungicide Management. Journal of Phytopathology, 164, 671–677. doi: 10.1111/jph.12490
  • Ransom, J. K., & McMullen, M. P. (2008). Yield and disease control on hard winter wheat varieties with foliar fungicides. Agronomy Journal, 100(4), 1130–1137. doi: 10.2134/agronj2007.0397
  • Robert, G. D., & James, H. T. (1991). A biomerical approach. In Principles of statistics (2nd ed.) (pp. 633). McGraw-Hill College. ISBN-10: 0070610282; ISBN-13: 978-0070610286.
  • Roelfs, A. P. (1985). Chapter 13, Epidemiology in North America. In Roelfs, A.P. & Bushnell, W.R. (Eds), The cereal rusts, Vol. II: Diseases, distribution, epidemiology and control (pp. 403–434). Academic Press.
  • SAS (Statistical Analysis System) Institute. (2014). SAS/STATA user’s guide for personal computers, version 9.3. SAS Institute Inc.
  • Tadesse, K. (2005). Temporal development of stem rust (Puccinia graminis f.sp. tritici) and its effect on grain yield and protein content of bread wheat in Bale, Ethiopia [M.Sc. Thesis]. Haramaya University.
  • Tadesse, K., Ayalew, A., & Badebo, A. (2010). Effect of fungicide on the development of wheat stem rust and yield of wheat varieties in highlands of Ethiopia. African Crop Science Journal, 18(1), 23–33. doi: 10.4314/acsj.v18i1.54194
  • Teklay, A., Getaneh, W., Woubit, D., Adhiena, M., & Yemane, N. (2013). Distribution and Seasonal Variation in Occurrence of Wheat Yellow Rust in Tigray, Ethiopia. Direct Research Journal of Agriculture and Food Science, 1(2), 11–17. Retreived from http://directresearchpublisher.org/drjafs
  • USDA (United State Department of agriculture). (2018, November) Foreign agricultural service: World agricultural production global analysis (World agricultural supply and demand report). 31. Circular series WAP 11-18, DC 20250-1051. Foreign Agricultural Service/USDA.
  • van der Plank, J. E. (1963). Plant diseases: Epidemics and control. Academic Press.
  • Wanyera, R., Kinyua, M. G., Jin, Y., & Singh, R. P. (2006). The spread of stem rust caused by Puccinia graminis f. sp. tritici, with virulence on Sr31 in wheat in Eastern Africa. Plant Disease, 90(1), 113. https://doi.org/10.1094/PD-90-0113A
  • Wilcoxson, R.D., Skovmand, B., & Atif, A.H. (1975). Evaluation of wheat cultivars for ability to retard development of stem rust. Annals of Applied Biology, 80, 275–2181.
  • Willyerd, K. T., Bradley, C. A., Chapara, V., Conley, S. P., Esker, P. D., Madden, L. V., Wise, K. A., & Paul, P. A. (2015). Revisiting fungicide-based management guidelines for leaf blotch diseases in soft red winter wheat. Plant Disease, 99(10), 1434–1444. https://doi.org/10.1094/PDIS-02-15-0218-RE
  • Worku, D., Ayele, B., & Tameru, A. (2013). Evaluation of ethiopian commercial wheat cultivars for resistance to stem rust of wheat race ‘UG99’. International Journal of Agronomy and Plant Production, 4(1), 15–24.
  • Wubishet, A., & Chemeda, F. (2016). Effects of environment on wheat varieties’ Yellow Rust resistance, yield and yield related traits in South-Eastern Ethiopia. Plant, 4(3), 14–22. https://doi.org/10.11648/j.plant.20160403.11
  • Wubishet, A., Chemeda, F., & Bekele, H. (2015). Effects of environment on epidemics of yellow rust (Puccinia striiformis West.) of bread wheat (Triticum aestivum L.) in Bale highlands, South-Eastern Ethiopia.. Global Journal of Pests, Diseases and Crop Protection, 3(2), 096–107. Retrieved from http://www.globalscienceresearchjournals.org/
  • Wubishet, A., & Tamene, M. (2016). Verification and evaluation of fungicides efficacy against wheat rust diseases on bread wheat (Triticum aestivum L.) in the Highlands of Bale, Southeastern Ethiopia. International Journal of Research Studies in Agricultural Sciences, 2(9), 35–40. doi: 10.20431/2454-6224.0209005
  • Zadoks, J. C., Chang, T. T., & Kanzak, C. F. (1974). A decimal code for the growth stage of cereals. Weed Research, 14, 415–421. https://doi.org/10.1111/j.1365-3180.1974.tb01084.x
  • Zegeye, T., Taye, G., Tanner, D., Verkuijl, H., Agidie, A., & Mwangi, W. (2001). Adoption of improved bread wheat varieties and inorganic fertilizer by small scale farmers. In Y. Densa & Farta districts of Northern Ethiopia (Ed.), (pp. 3–5). Ethiopian Agricultural Research Ogranization [EARO] and CIMMYT.