JOURNAL OF AGRICULTURAL SCIENCE AND PRACTICE
Integrity Research Journals

ISSN: 2536-7072
Model: Open Access/Peer Reviewed
DOI: 10.31248/JASP
Start Year: 2016
Email: jasp@integrityresjournals.org


Variability, seasonal effects and principal component analysis of cowpea (Vigna unguiculata) genotypes in Uyo, Nigeria

https://doi.org/10.31248/JASP2022.354   |   Article Number: 429932891   |   Vol.7 (2) - June 2022

Received Date: 28 May 2022   |   Accepted Date: 27 June 2022  |   Published Date: 30 June 2022

Authors:  Peter, A. M. , Bassey, E. E.* and Harry, G. I.

Keywords: Cowpea, yield., seasons., principal component

Field experiments were conducted in 2017 early and late cropping seasons at National Cereals Research Institute, Uyo Out Station, Owot Uta, Ibesikpo Asutan LGA of Akwa Ibom State to determine variability, seasonal effects and principal components of growth characters, yield and yield components of seven cowpea genotypes. The experiments were laid out in a randomized complete block design in four replications. Fourteen characters were studied namely; percentage establishment (%), plant height (cm), number of leaves, leaf area (cm2), number of branches per plant, days to first flowering, days to 50% flowering, length of pods (cm), girth of pods (cm), number of pods per plant, number of seeds per pod, weight of pods (g), weight of 100 seeds (g) and seed yield (kg/ha). Significant differences (p<0.05) were observed among the cowpea genotypes in plant height, number of leaves, number of branches per plant, number of pods per plant, number of seeds per pod and seed yield (kg/ha). The cowpea genotypes IT89KD391B was superior in 5 characters, namely plants heights (cm), number of leaves, leaf area (cm2), length of pods (cm), girth of pods and weight of 100 seeds, followed by Ife brown for days to first flowering, days to 50% flowering, number of pods per plant, number of seeds per pod and seed yield (kg/ha) while IT89KD260 recorded the highest percentage establishment and number of branches per plant. First 4PC with Eigen values greater than 1.0 jointly explained 89.3% of the total variations in the genotypes. Significant seasonal effects were observed on plant height, number of leaves, number of branches, number of pods, number of seeds per pod, and seed yield (kg/ha). The result identified late cropping season as the best season for cowpea production in Uyo, Southern Nigeria.

Adeniji, O. T., & Kehinde, O. B. (2003). Inheritance of pods and seed characters in West African okra (Abelmoschus cailei) generation mean analysis. Nigerian Journal of Genetics, 18, 1-4.
 
Adipala, E., Obuo, J. E., & Osiru, D. S. O. (1997). A survey of cowpea cropping systems in some districts of Uganda. In African Crop Science Conference Proceedings (Vol. 3, No. pt. 2, pp. 665-672).
 
Agbogidi, O. M., & Egho, E. O. (2012). Evaluation of eight varieties of cowpea (Vigna unguiculata (L.) Walp) in Asaba agro-ecological environment, Delta State, Nigeria. European Journal of Sustainable Development, 1(2), 303-303.
 
Asuquo, U. J. (2002). Effects of plant population on growth and yield of okra (Abelmoschus esculentus (L.) Moench) varieties in Uyo, Southeastern Nigeria. B. Agric. Thesis, Department of Crop Science, Faculty of Agriculture, University of Uyo, Akwa Ibom State, Nigeria. Pp. 25-33.
 
Ayenlere, A. E., Mohammed, A. B., Dutse, F., Abdullahi, M., & Mohammed-Lawal, A. (2012). An assessment of the economics of maize-cowpea cropping system in Ogun area of Kwara State. Nigeria Biological and Environmental Sciences Journal for the Tropics, 9(1), 39-43.
 
Bizeti, H. S., Carvalho, C. G. P. D., de Souza, J. R. P., & Destro, D. (2004). Path analysis under multicollinearity in soybean. Brazilian Archives of Biology and Technology, 47(5), 669-676.
Crossref
 
Clark, A. (2007). Managing cover crops (3rd edition). Sustainable Agriculture Research and Education, University of Maryland, College Park, Md. Pp. 125-129.
 
Ekpeh, I. J. (1994). Physiography, climate and vegetation in Akwa Ibom State. In: Peters, S. W., Iwok E. R., & Uya, O. E. (eds.). Akwa Ibom State: The land of promise. Gabumo Publishing Co. Ltd., Lagos, Pp. 239-245.
 
FAO (2017). Food and Agriculture Organisation.
 
FAOSTAT (2008). FAO country statistic.
 
FAOSTAT (2012). Food and Agriculture Organisation.
 
FAOSTAT (2017). Online statistical database. Rome, Italy. Food and Agricultural Organisation of the United Nations.
 
Ileke, K. D., Bulus, D. S., & Aladegoroye, A. Y. (2013). Effects of three medicinal plant products on survival, oviposition and progeny development of cowpea bruchid, Callosobruchus maculatus (Fab.) [Coleoptera: Chrysomelidae] infesting cowpea seeds in storage. Jordan Journal of Biological Science, 6(1), 61-66.
 
Mukhtar, F. B., & Singh, B. B. (2006). Influence of photoperiod and gibberellic acid (GA~ 3) on the growth and flowering of cowpea [Vigna unguiculata (L) WALP]. Journal of Food Agriculture and Environment, 4(2), 201-203.
 
National Agricultural Extension and Research Liaison Services (NAERLS) and Planning Research and Statistics Department (PRSD) (2012). Agricultural performance survey report of 2012 wet season in Nigeria. NAERLS Press. p. 222.
 
Nausherwan, N. N., Ghulam, M. S., Khalid, M., Qamar, S. and Akhtar, S. (2008). Generic variability, correlation and path analysis studies in garden pea (Pisum sativum L.). Journal of Agricultural Research, 46(4), 333-340.
 
Osekita, O. S., Ariyo, O. J., & Kehinde, O. B. (2000). Variation and inter-character association in the segregating F3 populations arising from two crosses of okra (Abelmoschus esculentus (L.) Moench). Moor Journal of Agricultural Research, 1(1), 32-36.
 
Oyewale, R. O., & Bamaiyi, L. J. (2013). Management of cowpea insect pests. School Academic Journal of Bioscience, 1, 217-226.
 
Peters, K., Usoro, J., Obot, U. W., & Okpon, N. (1989). Akwa Ibom State: Physical background, soils and land use and ecological problems. A Technical Report of the Task Force, Soils and Land Use Survey, Akwa Ibom State, 603p.
 
Remison, S. O. (2012). Arable and vegetable crops of the tropics. De-winner Printers, Ekpoma. Pp. 53-55.
 
Sharma, D., Mehta, N., Singh, J., & Gupta, C. R. (2013). Genetic study for some pod characters in vegetable cowpea (Vigna unguiculata (L.) Walp.). Vegetable Science, 40(1), 73-76.
 
Sharma, J. R. (1996). Principles and practice of plant breeding. Tata McGraw-Hill Publishing Company Limited, New Delhi. Pp. 23-163.
 
Singh, B. B., Mohan, D., Dashiell, K., & Jackai, L. (1997). Advances in cowpea research. IITA - IJRCASS, Ibadan, Nigeria.
 
Uarrota, V. G. (2010). Response of cowpea (Vigna unguiculata L. Walp.) to water stress and phosphorus fertilization. Journal of Agronomy, 9(3), 87-91.
 
Uguru, M. I. (2005). Crop genetics and breeding (2nd Edition). Ephrata Press, Nsukka, Nigeria.
 
Uma, M. S., & Kalubowila, I. (2010). Line x Tester analysis for yield and rust resistance in cowpea (Vigna unguiculata [L.] Walp). Electronic Journal of Plant Breeding, 1(3), 254-267.
 
Wahua, T. A. (1999). Applied statistics for scientific studies. Africa Link Press, Ibadan, Nigeria. p. 171.
 
Wannows, A. A., Azzam, H. K., & Al-Ahmad, S. A. (2010). Genetic variances, heritability, correlation and path coefficient analysis in yellow maize crosses (Zea mays L.). Agriculture and Biology Journal of North America, 1(4), 630-637.