Fungi diseases are major diseases of Telfairiaoccidentalis (fluted pumpkin)
in the major growing areas of the crop in Cameroon. This study was conducted
between March and June in the cropping seasons of 2019 and 2020 to determine
the effect of some cultural strategies viz.:
tillage and no till, variation of sowing date and removal of diseased leaves on
the incidence and severity of leaf spot disease caused by Phomasorghina. There were four
sowing dates, and two tillage systems with no variation in planting distance in
the two cropping seasons. The design used was Randomized Complete Block Design
(RCBD) with three replications. There were three plots for each sowing date
within each replication. Seeds were sown at the rate of 1 m × 1 m, with four
seeds per experimental unit. Data for disease incidence and severity was
recorded every fortnight, commencing three weeks after emergence (WAE) and for
a period of eight weeks for each sowing date. Disease incidence and severity was
determined using Microsoft Excel 2010 and the data was subjected to statistical
analysis and the means separated by Duncan Multiple Range Test (DMRT) at 95%
confidence interval. In addition, the relationship between disease incidence
and disease severity was also determined using Pearson correlation. Analysis of
variance showed that there was no significant difference in leaf spot disease
incidence at till and no-till units within this study period irrespective of
sowing date. However, significant differences in leaf spot disease incidence
and severity was recorded between the two cropping seasons. Sowing date four
recorded the highest disease severity (1.611 ± 0.73) compared to sowing date
two and three which was significant but comparable to sowing date one. The
lowest disease severity (1.257 ± 0.697) was documented at sowing date two
compared to sowing date one and four but comparable to sowing date three. Pearson
correlation analysis revealed that there was a significant positive correlation
(+0.560) between leaf spot disease incidence and severity which was
statistically significant at α = 0.01
(p <
References
[1]
Nwonuala, A. and Obiefuna, J. (2015) Yield and Yield Components of Fluted Pumpkin (Telfairia occidentalis). International Journal of Agriculture Innovations and Research, 4, 421.
[2]
Orole, R.T., Orole, O.O., Aisoni, J.E., Isyaku, J. and Mohammed, Y.S. (2020) Comparative Study of the Physicochemical Properties of Male and Female Fluted Pumpkin (Telfairia occidentalis). The Journal of Medical Research, 6, 55-61.
[3]
Odiaka, N.I. and Schippers, R.R. (2004) Telfairia occidentalis Hook f. [Internet] Record from PROTA4U. Grubben, G.J.H. and Denton, O.A. (Editors), PROTA (Plant Resources of Tropical Africa).
[4]
Annih, M.G., Tatiana, N.C.B., Kinge, T.R., Mariette, A. and Kebei, A.K. (2020) Effect of Animal Manure on the Incidence and Severity of Leaf Spot Disease of Fluted Pumpkin (Telfairia occidentalis) in Dschang, West Region of Cameroon. American Journal of Plant Sciences, 11, 1057-1076. https://doi.org/10.4236/ajps.2020.117076
[5]
Ashely, B., Michelle, M., Ponder and Julia, G. (2018) Phoma Infections: Classification, Potential Food Sources, and Their Clinical Impact. Microorganisms, 6, 58.
https://doi.org/10.3390/microorganisms6030058
[6]
Udo, S.E., Osai, E.O., Umana, E.J., Markson, A.A. and Madunagu, B.E. (2013) Infection Related Changes in Nutritional Contents of Fluted Pumpkin (Telfairia occidentalis) Infected by Diplocossum spicatum and Control Using Plant Extracts. International Journal of Research in Applied Natural and Social Sciences, 1, 29-36.
[7]
Nwufo, M.I. and Ihejirika, G.O. (2008) Influence of Intercropping and Removal of Diseased Leaves on Incidence and Severity of Leaf Spot Disease of Telfairia occidentalis Hook f. Caused by Phoma sorghina.
[8]
Osai, E.O., Udo, S.E., Okoli, C.E. and Bemoh, B.E. (2017) Comparative Efficacy of Three Plant Extracts for the Control of Leaf Spot Disease in Fluted Pumpkin (Telfairia occidentalis Hook F.). Journal of Biology, Agriculture and Health Care, 7, 56-62.
[9]
Mbong, A.G., Tembe-Fokunang, E.A., Berinyuy, E.B., Manju, E.B., Ngo, V.N., Mbah, J.A., Galega, T.B.P. and Fokunang, C.N. (2019) An Overview of the Impact of Climate Change on Pathogens, Pest of Crops on Sustainable Food Biosecurity. International Journal of Ecotoxicology and Ecobiology, 4, 114-124.
https://doi.org/10.11648/j.ijee.20190404.15
[10]
Godwin-Egein, M.I., Okereke, V.C. and Justus, O.P. (2015) Effect of Fluted Pumpkin (Telfairia occidentalis) and Maize (Zea mays) Intercrop on Leaf Spot Disease. American Journal of Agricultural Science, 2, 133-137.
[11]
Kome, G.K., Enang, R.K. and Bine, F.K. (2017) Climate Change, Soil Fertility Management and the Nexus: A Knowledge and Opinions Study in Western Cameroon. Journal of Scientific Research & Reports, 13, 1-16.
https://doi.org/10.9734/JSRR/2017/31730
[12]
Plan Communal De Développement De Dschang, 2011.
[13]
Orji, O.J., Ibeawuchi, I.I. and Obilo, O.P. (2015) Effect of Poultry Manure on Incidence and Severity of Foliar Diseases and Weed of Telfairia occidentalis (ugu) Intercropped with Cassava and Maize. Journal of Biology, Agriculture and Healthcare, 5, 205-211.
[14]
Mbong, G.A., Akem, C.N., Labi, O.A., Emechebe, A.M. and Alegbejo, M.D. (2010) Effect of Sowing Date on the Incidence, Apparent Infection Rate and Severity of Scab on Cowpea. Asian Journal of Agricultural Sciences, 2, 63-68.
[15]
Okeke, C.G., Oluka, S.I. and Oduma, O. (2016) Effect of Tillage and Staking on the Production of Fluted Pumpkin. American Journal of Engineering Research, 5, 54-56.
[16]
Peigne, J., Ball, B.C., Roger-Estrade, J. and David, C. (2006) Is Conservation Tillage Suitable for Organic Farming? A Review. Soil Use and Management, 23, 129-144.
https://doi.org/10.1111/j.1475-2743.2006.00082.x
[17]
Edna, A.A. and Ime, O.U. (2017) Evaluation of Different Tillage Practices on Growth and Yield of Fluted Pumpkin, Telfairia occidentalis in Uyo, Southeastern Nigeria. International Journal of Sustainable Agricultural Research, 4, 45-49.
https://doi.org/10.18488/journal.70.2017.42.45.49
[18]
Marine, G.L.G., Martin, J.B., Ming, P.Y. and Roger, A.C. (2016) Effect of Temperature on Disease Severity in Plants of Subterranean Clover Infected Singly or in Mixed Infection with Bean Yellow Mosaic Virus and Kabatiella caulivora. Journal of Phytopathology, 164, 608-619. https://doi.org/10.1111/jph.12484
[19]
Yánez-López, R.I., Torres-Pacheco, R.G., Guevara-González, M.I., Hernández Zul, J.A., Quijano-Carranza and Rico-García, E. (2012) The Effect of Climate Change on Plant Diseases. African Journal of Biotechnology, 11, 2417-2428.
http://www.academicjournals.org/AJB
https://doi.org/10.5897/AJB10.2442