Effect of Chicken Manure, Compost and Cow Dung on the Growth and Yield of Sweet Potato [ Ipomoea batatas (L.) Lam.] under Guinea Savannah Agroecological Zone of Ghana — Oak Academic Publishing
Research ArticleOpen AccessGoogle Scholar indexed
Effect of Chicken Manure, Compost and Cow Dung on the Growth and Yield of Sweet Potato [ Ipomoea batatas (L.) Lam.] under Guinea Savannah Agroecological Zone of Ghana
CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
,
CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
,
Reputed Agric4Dev Stichting and Foundation, Kumasi, Ghana
,
Reputed Agric4Dev Stichting and Foundation, Kumasi, Ghana
,
CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
,
CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
,
CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
,
CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
,
CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
,
CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
,
CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
,
CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
1 CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
2 CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
3 Reputed Agric4Dev Stichting and Foundation, Kumasi, Ghana
4 Reputed Agric4Dev Stichting and Foundation, Kumasi, Ghana
5 CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
6 CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
7 CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
8 CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
9 CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
10 CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
11 CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
12 CSIR-Savanna Agricultural Research Institute, Tamale, Ghana
Twelve percent (12%) of Ghanaians are food insecure, and climate-smart crops like sweet potatoes are required to help end poverty. Small-scale farmers in Ghana who produce low-technology, subsistence crops, such as sweet potatoes, are more food secure than those who do not. This study was initiated to investigate the effect of chicken manure, compost, and cow dung on the growth and yield of “apomuden”, “SARI-Nyoriberigu”, “SARI-Nan” and “kufour” sweet potato under the Guinea Savannah agroecological zone of Ghana. Organic fertilizer increased leaf chlorophyll content and leaf area index. The application of cow dung, chicken manure and compost in 2015 significantly increased total storage root yield by 38%, 55% and 98%, 62%, 45% and 37%, 52%, 61% and 44%, and 33%, 36% and 28% for SARI-Nyoriberigu, Kufour, SARI-Nan and Apomuden, respectively, when compared to the untreated check. In 2016, and in comparison with the untreated check, the application of cow dung, chicken manure and compost increased total storage root yield by 42%, 61% and 93%, 69%, 49% and 41%, 57%, 67% and 48%, and 36%, 39% and 30% for SARI-Nyoriberigu, Kufour, SARI-Nan and Apomuden, respectively. Hence, the application of organic fertilizers will increase sweet potato yield, give higher returns to resource-poor smallholder farmers and contribute to enhancing food and nutrition security.
KeywordsSweet PotatoFood SecurityStorage RootsOrganic FertilizerChicken ManureCow Dung and Compost
Food and Agriculture Organisation (FAO) (2022) Comprehensive Food Security and Vulnerability Analysis (CFSVA).
Food and Agriculture Organization (FAO) (2023) FAO Statistics.
Woolfe, J. (1992) Sweet Potato an Untapped Food Resource. Cambridge University Press.
Bovell-Benjamin, A.C. (2007) Sweet Potato: A Review of Its Past, Present, and Future Role in Human Nutrition. Advances in Food and Nutrition Research , 52, 1-59. https://doi.org/10.1016/s1043-4526(06)52001-7
Glenna, L., Borlu, Y., Gill, T., Larson, J., Ricciardi, V. and Adam, R. (2017) Food Security, Sweet Potato Production, and Proximity to Markets in Northern Ghana. FACETS , 2, 919-936. https://doi.org/10.1139/facets-2017-0027
Centner, T.J. (2010) Nutrient Pollution from Land Applications of Manure: Discerning a Remedy for Pollution. Stanford Law and Policy Review , 21, 213-244.
Musnamar, E.F. (2003) Organic Fertilizer. Liquid and Solid, How to Make and How to Apply It. Penebar Swadaya.
Martanto, E.A., Tanati, A., Baan, S. and Djuuna, I.A.F. (2016) The Increasing of Sweetpotato Production through Application of Organic Fertilizer. International Journal of Applied Agricultural Research , 11, 143-157.
Marsono and Sigit, P. (2002) Fertilizer Association, Type and Application. Penebar Swadaya.
Oliveira, A.P., Santos, J.F., Cavalcante, L.F., Pereira, W.E., Santos, M.D.C.C., Oliveira, A.N.P., et al . (2010) Yield of Sweet Potato Fertilized with Cattle Manure and Biofertilizer. Horticultura Brasileira , 28, 277-281. https://doi.org/10.1590/s0102-05362010000300006
Lin, Y., Ye, G., Kuzyakov, Y., Liu, D., Fan, J. and Ding, W. (2019) Long-Term Manure Application Increases Soil Organic Matter and Aggregation, and Alters Microbial Community Structure and Keystone Taxa. Soil Biology and Biochemistry , 134, 187-196. https://doi.org/10.1016/j.soilbio.2019.03.030
Natalli, L.H., Munaretto, L.F., Bianchini, D.C. and Henkes, J.A. (2020) Práticas de sustentabilidade ambiental em propriedades rurais. Revista Gestão & Sustentab ilidade Ambiental , 9, 351-374. https://doi.org/10.19177/rgsa.v9e12020351-374
Primavesi, A. (2014) Pergunte ao solo e às raízes: Uma análise do solo tropical e mais de 70 casos resolvidos pela agroecologia. Nobel, 272.
Gupta, K.K., Aneja, K.R. and Rana, D. (2016) Current Status of Cow Dung as a Bioresource for Sustainable Development. Bioresources and Bioprocessing , 3, Article No. 28. https://doi.org/10.1186/s40643-016-0105-9
Harti, A.R., Sukmasari, M.D. and Ghita, (2020) Application of Cow Manure at Different Height of Mound to Increase Sweet Potato Potatoes Productivity. IOP Conference Series : Earth and Environmental Science , 466, Article ID: 012032. https://doi.org/10.1088/1755-1315/466/1/012032
Zhang, X., Fang, Q., Zhang, T., Ma, W., Velthof, G.L., Hou, Y., et al . (2019) Benefits and Trade-Offs of Replacing Synthetic Fertilizers by Animal Manures in Crop Production in China: A Meta-Analysis. Global Change Biology , 26, 888-900. https://doi.org/10.1111/gcb.14826
MoFA (2022) Facts and Figures: Agriculture in Ghana, 2020. Statistics Research, and Information Directorate, 46.
Keating, P. (2005) Final Project Report: Understanding the Use of Chicken Manure in Vegetable Production on Sandy Soil. Horticulture Australia Limited, 15.
Rós, A.B., Narita, N. and Hirata, A.C.S. (2014) Produtividade de batata-doce e propriedades físicas e químicas de solo em função de adubação orgânica e mineral. Semina : Ciências Agrárias , 35, 205-214. https://doi.org/10.5433/1679-0359.2014v35n1p205
Graves, R.E., Hattemer, G.M. and Stettler, D. (2000) Chapter 2 Composting. Part 637 Environmental Engineering National Engineering Handbook. USDA.
Zongo, K.F., Coulibaly, A., Guebre, D., Naba, A., Nandkangre, H., Sanon, A., et al . (2023) Effects of Agro-Ecological Practices on the Productivity of Orange-Fleshed Sweet Potato ( Ipomoea batatas (L.) Lam) and Soil Fertility in the Sudano-Sahelian Zone of Burkina Faso. Agricultural Sciences , 14, 1624-1642. https://doi.org/10.4236/as.2023.1412105
Esan, V.I., Omilani, O.O. and Okedigba, I. (2021) Effects of Organic and Inorganic Fertilizers on Sweet Potato Production in Iwo, Nigeria. African Journal of Plant Science , 15, 131-137.
Haliru, M., Dikko, A., Audu, M. and Aliyu, I. (2015) Effect of Cow Dung on Soil Properties and Performance of Sweet Potato ( Ipomoea batatas L.) in Sudan Savanna, Nigeria. International Journal of Plant & Soil Science , 5, 212-216. https://doi.org/10.9734/ijpss/2015/14471
Bremmer, D.C. and Mulvaney, J.M. (1982) Total Nitrogen. In: Page, A.L., Miller, R.H. and Keaney, D.R., Eds., Methods of Soil Analysis ( Number 9 Part 2), American Society of Agronomy, 595-624.
Bray, R.H. and Kurtz, L.T. (1945) Determination of Total, Organic, and Available Forms of Phosphorus in Soils. Soil Science , 59, 39-46. https://doi.org/10.1097/00010694-194501000-00006
Thomas, G.W. (1982) Exchangeable Cations. In: Page, A.L., Miller, R.H. and Keaney, D.R., Methods of Soil Analysis ( Number 9 Part 2), American Society of Agronomy, 159-165.
Walkley, A. and Black, I.A. (1934) An Examination of the Degtjareff Method for Determining Soil Organic Matter, and a Proposed Modification of the Chromic Acid Titration Method. Soil Science , 37, 29-38. https://doi.org/10.1097/00010694-193401000-00003
SAS Institute (2008) SAS/STAT User’s Guide. Version 9.1.3. SAS Institute, Inc.
Larcher, W. (1995) Physiological Plant Ecology: Ecophysiology and Stress Physiology of Functional Groups. 3rd Edition, Springer.
Croft, H., Chen, J.M., Luo, X., Bartlett, P., Chen, B. and Staebler, R.M. (2017) Leaf Chlorophyll Content as a Proxy for Leaf Photosynthetic Capacity. Global Change Biology , 23, 3513-3524. https://doi.org/10.1111/gcb.13599
Hokmalipour, S. and Darbandi, M.H. (2011) Effects of Nitrogen Fertilizer on Chlorophyll Content and Other Leaf Indicate in Three Cultivars of Maize ( Zea mays L.). World Applied Sciences Journal , 15, 1780-1785.
Purbajanti, E.D., Kusmiyati, F., Slamet, W. and Adinurani, P.G. (2016) Chlorophyll, Crop Growth Rate and Forage Yield of Brachiaria ( Brachiaria brizantha Stapf) as the Result of Goat Manure in Various Nitrogen Dosage. AIP Conference Proceedings , 1755, Article ID: 130013. https://doi.org/10.1063/1.4958557
Pangaribuan, D.H., Sarno, S., Liliana, Y. and Bahriana, S. (2020) Effects of Chicken Compost and KCL Fertilizer on Growth, Yield, Post-Harvest Quality of Sweet Corn and Soil Health. AGRIVITA Journal of Agricultural Science , 42, 131-142. https://doi.org/10.17503/agrivita.v42i1.1805
Simo, C., Nono, G.V. and Taffouo, V.D. (2017) Evaluation of Different Sweet Potato Varieties for Growth, Quality and Yield Traits under Chemical Fertilizer and Organic Amendments in Sandy Ferralitic Soils. African Journal of Agricultural Research , 12, 3379-3388. https://doi.org/10.5897/ajar2017.12675
Khadem, S.A., Galavi, M., Ramrodi, M., Mousavi, S.R., Rousta, M.J. and Rezvanimoghadam, P. (2010) Effect of Animal Manure and Superabsorbent Polymer on Corn Leaf Relative Water Content, Cell Membrane Stability and Leaf Chlorophyll Content under Dry Condition. Australian Journal of Crop Science , 4, 642-647.
Darko, C., Yeboah, S., Amoah, A., Opoku, A. and Berchie, J.N. (2020) Productivity of Sweet Potato ( Ipomoea batatas (L) Lam) as Influenced by Fertilizer Application in Different Agro-Ecologies in Ghana. Scientific African , 10, e00560. https://doi.org/10.1016/j.sciaf.2020.e00560
Steele, M.R., Gitelson, A.A. and Rundquist, D.C. (2008) A Comparison of Two Techniques for Nondestructive Measurement of Chlorophyll Content in Grapevine Leaves. Agronomy Journal , 100, 779-782. https://doi.org/10.2134/agronj2007.0254n
Alton, P.B. (2016) The Sensitivity of Models of Gross Primary Productivity to Meteorological and Leaf Area Forcing: A Comparison between a Penman-Monteith Ecophysiological Approach and the MODIS Light-Use Efficiency Algorithm. Agricultural and Forest Meteorology , 218, 11-24. https://doi.org/10.1016/j.agrformet.2015.11.010
Asner, G.P., Braswell, B.H., Schimel, D.S. and Wessman, C.A. (1998) Ecological Research Needs from Multiangle Remote Sensing Data. Remote Sensing of Environment , 63, 155-165. https://doi.org/10.1016/s0034-4257(97)00139-9
Boussetta, S., Balsamo, G., Beljaars, A., Kral, T. and Jarlan, L. (2012) Impact of a Satellite-Derived Leaf Area Index Monthly Climatology in a Global Numerical Weather Prediction Model. International Journal of Remote Sensing , 34, 3520-3542. https://doi.org/10.1080/01431161.2012.716543
Jarlan, L., Balsamo, G., Lafont, S., Beljaars, A., Calvet, J.C. and Mougin, E. (2008) Analysis of Leaf Area Index in the ECMWF Land Surface Model and Impact on Latent Heat and Carbon Fluxes: Application to West Africa. Journal of Geophysical Research : Atmospheres , 113, D24117. https://doi.org/10.1029/2007jd009370
Yeng, S.B., Agyarko, K., Dapaah, H.K., Adomako, W.J. and Asare, E. (2012) Growth and Yield of Sweet Potato ( Ipomoea batatas L.) as Influenced by Integrated Application of Chicken Manure and Inorganic Fertilizer. African Journal Agricultural Research , 7, 5387-5395.
Adeyeye, A.S., Akanbi, W.B., Sobola, O.O., Lamidi, W.A. and Olalekan, K.K. (2016) Comparative Effect of Organic and In-Organic Fertilizer Treatment on the Growth and Tuberyeild of Sweet Potato ( Ipomea batata L). International Journal of Sustainable Agricultural Research , 3, 54-57. https://doi.org/10.18488/journal.70/2016.3.3/70.3.54.57
Ferreira, C.C., Brunner, P.K.C., Lobato, A.C.N., Negreiros, T.M.N., Soares, D.O.P. and Castro, A.P.D. (2020) Chicken Manure: An Alternative in Increasing Production of Sweet Potato ( Ipomoea batatas ). Journal of Agricultural Science , 12, 141-153. https://doi.org/10.5539/jas.v12n10p141
Sowley, E.N.K., Neindow, M. and Abubakari, A.H. (2015) Effect of Poultry Manure and NPK on Yield and Storability of Orange-and White-Fleshed Sweetpotato [ Ipomoea batatas (L) Lam]. Journal of Food and Agricultural Science , 5, 1-6.
Abdulraheem, M.I., Omogoye, A.M. and Charles, E.F. (2018) Influence of NPK Fertilizer and Cow Dung Manure Application on Soil Chemical Properties, Growth and Yield of Sweet Potato ( Ipomoea batatas ). European Modern Studies Journal , 2, 5-10.
Boru, M., Tsadik W, K. and Tana, T. (2017) Effects of Application of Farmyard Manure and Inorganic Phosphorus on Tuberous Root Yield and Yield Related Traits of Sweet Potato [ Ipomoea batatas (L.) Lam] at Assosa, Western Ethiopia. Advances in Crop Science and Technology , 5, Article ID: 1000302. https://doi.org/10.4172/2329-8863.1000302