African Journal of
Agricultural Research

  • Abbreviation: Afr. J. Agric. Res.
  • Language: English
  • ISSN: 1991-637X
  • DOI: 10.5897/AJAR
  • Start Year: 2006
  • Published Articles: 6860

Full Length Research Paper

Effect of scab disease on the yield of intercrop systems of cowpea maize and sorghum

G. A. Mbong
  • G. A. Mbong
  • Department of Plant Biology, University of Dschang, B.P. 67, Dschang, Cameroon
  • Google Scholar
C. N. Fokunang
  • C. N. Fokunang
  • International Institute of Tropical Agricultural, Kano, Kano State, Nigeria
  • Google Scholar
E. A. Tembe-Fokuang
  • E. A. Tembe-Fokuang
  • International Institute of Tropical Agricultural, Kano, Kano State, Nigeria
  • Google Scholar
O. O. Alabi
  • O. O. Alabi
  • Department of crop Protection, Institute for Agricultural Research, Ahmadu Bello University, Samaru, P. M. B. 1044, Zaria, Kaduna State, Nigeria.
  • Google Scholar
A. M. Emechebe
  • A. M. Emechebe
  • Department of crop Protection, Institute for Agricultural Research, Ahmadu Bello University, Samaru, P. M. B. 1044, Zaria, Kaduna State, Nigeria.
  • Google Scholar
M. B. Bambot
  • M. B. Bambot
  • Department of Pharmaceutical Sciences and Traditional Pharmacopoea, University of Yaounde 1, Cameroon
  • Google Scholar
M. D. Alegbejo
  • M. D. Alegbejo
  • Department of crop Protection, Institute for Agricultural Research, Ahmadu Bello University, Samaru, P. M. B. 1044, Zaria, Kaduna State, Nigeria.
  • Google Scholar


  •  Received: 28 March 2013
  •  Accepted: 20 November 2015
  •  Published: 14 April 2016

References

Alabi O (1994). Epidemiology of cowpea brown blotch induced by Collectrichum capsici and assessment of crop losses due to the disease. A Ph.D. thesis submitted to the Ahmadu Bello University Zaria, Nigeria. 95 p.

 

Atuahene-Amankwa G, Beatrice AD, Micheals TE, Falk DE (2004). Cropping system evaluation and selection of common bean genotypes for maize/bean intercrop. Afr. Crop Sci. J. 12(2):105-113.
Crossref

 
 

Carsky RJB, Vanlauwe OL (2002). Cowpea rotation as a resource management technology for cereal-based systems in the savanns of West Africa. In: Challenges and opportunities for enhancing sustainable cowpea production, edited by Ftokun CA, Tarawali SA, Singh BB, Kormawa PM, Tamo OM. IITA. Ibadan, Nigeria. pp. 250-264.

 
 

Davis DW, Oelke EA, Oplinger ES, Doll JD, Hanson CV, Putman DH (1991). Alternative Field Crops Manual. University of Wisconsin-Extension, Cooperative Extension, University of Minnesota: Centre for Alternative Plant and Animal Productions and the Minnesota Extension Service. pp. 1-8.

 
 

Edema R, Adipala E (1996). Effect of crop protection management practice on yield of seven cowpea varieties in Uganda. Int. J. Pest Manag. 42:317-320.
Crossref

 
 

Edema R, Adipala E, Florini DA (1997). Influence of season and cropping systems on occurrence of cowpea diseases in Uganda. Plant Dis. 81:465-468.
Crossref

 
 

Emechebe AM (1980). Scab disease of cowpea (Vigna unguiculata) caused by a species of the fungus Sphaceloma. Ann. Appl. Biol. 96:11-16.
Crossref

 
 

Emechebe AM, Shoyinka SA (1985). Fungal and bacterial diseases of cowpea in Africa in: Singh SR, Rachie KO (eds), Cowpea Research, Production and Utilization. John Wiley and Sons, Chichester, UK. pp. 173-192.

 
 

FAO (2006). FAOSTAT Database, Food and Agricultural Organization of the United Nations, Rom, Italy.

 
 

Iceduna C (1993). Selection for resistance and fungicidal control of cowpea scabs (Sphaceloma sp.) in Uganda. M.Sc Thesis, Makerere University, Kampala. 79 p.

 
 

Mungo CM, Emechebe AM,Cardwell KF (1995). Assessment of crop loss in cowpea (Vigna unquilata L. Walp.) caused by Sphaceloma sp. causal agent of scab disease. Crop Prot. 14(3):1999-203.
Crossref

 
 

Myaka FA, Kabissa JCB, Myaka DF, Mligo JK (2002). Farmer participatory evaluation of newly developed components of cowpea and cotton intercropping technology. In: Challenges and Opportunities for enhancing sustainable cowpea production, edited by Fatokun CA, Tarawali SA, Kormawa PM, Tamo M. Proceedings of the World Cowpea Conference held at the International Institute of Tropical Agric. (IITA), Ibadan, Nigeria, 4-8 September 2000. IITA, Ibadan, Nigeria. pp. 329-337.

 
 

Niringiye CS, Kyamanywa S, Ssekabanbe CS (2005). Effect of plant population on yield of maize and climbing beans grown in an intercropping system. Afr. Crop Sci. J. 13(1):83-93.

 
 

Ogbuinya PO (1997). Advances in Cowpea Research. Biotechnol. Dev. Monit. 33:10-12.

 
 

Olufajo OO, Singh BB (2002). Advances in cowpea cropping systems research. In: Challenges and Opportunities for enhancing sustainable cowpea production, edited by Fatokun CA, Tarawali SA, Kormawa PM, Tamo M. Proceedings of the World Cowpea Conference held at the International Institute of Tropical Agriculture (IITA), Ibadan, Nigeria, 4-8 September 2000. IITA, Ibadan, Nigeria. pp. 267-277.

 
 

Price M, Cishahayo D (1985). Field evaluation of seven fungicides for the Control of scab disease and ascochyta blight on cowpeas in Rwanda. Phytopathology (Abstr.) 75:1308.

 
 

Singh BB, Chambliss OL, Sharma B (1997). Recent advances in cowpea breeding. In: Advances in cowpea research edited by Singh BB, Mohan Raj DR, Dashiell KE, Jackai LEN Copublication of International Institute of Tropical Agriculture (IITA) and Japan International Research Centre for Agric. Science (JIRCAS). IITA, Ibadan, Nigeria. pp. 30-49.

 
 

Singh BB, Mai-Kodomi Y, Terao T (1995). A simple screening method for draught tolerance in cowpea. Agronomy abstracts 1995. Am. Soc. Agron. Madison, Wisconsin, USA, P 71.

 
 

Tumwegamire S, Rubaihayo PR, Adipala E (1998). Genetics of resistance to Sphaceloma scab of cowpea. Afr. Crop Sci. J. 6(3):227-240.
Crossref