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BY 4.0 license Open Access Published by De Gruyter Open Access November 18, 2019

Increasing potato equivalent yield increases returns to investment under potato-legume intercropping systems

  • Harun I Gitari EMAIL logo , Shadrack O Nyawade , Solomon Kamau , Charles K. K Gachene , Nancy N Karanja and Elmar Schulte-Geldermann
From the journal Open Agriculture

Abstract

In order to enhance sustainable intensification of potato-based cropping systems, especially in sub-Saharan Africa (SSA), there is a need to investigate the economic viability of investing in this lucrative venture. This study evaluated the economic returns under legume intercropping systems using value/cost ratio (VCR) and benefit/cost ratio (BCR) under treatments comprising of potato intercropped with dolichos (Lablab purpureus L.) (P-D), climbing bean (Phaseolus vulgaris L.) (P-B) and garden pea (Pisum sativum L.) (P-G), and a potato pure stand control (P-S). Across the seasons, tuber yield was not significantly (p < 0.05) affected by intercropping with P-D, whereas under P-B and P-G, it decreased by 19% and 16%, respectively compared to P-S. P-G, P-B and P-D recorded 6, 7 and 12% higher potato equivalent yield (PEY) relative to P-S. P-D was the most profitable intercropping system with VCR of 35 and BCR of 5.1 as compared to values recorded in P-S of 31 and 5, respectively. Regression of VCR against PEY resulted in a stronger coefficient (0.98) compared to that of BCR against PEY (0.82) implying that VCR is a simple tool that could be adopted for economic returns to investment studies such as potato-legume inter-cropping systems.

References

[1] Dawi T.B., Yoila A.I., Kayode D.C., Lucky A.U., Shero I.A., Alhaji Y.A., Abdu N., Tawa A.T., Raymond B.P., Marinus U.E., Haratu D., Ogbodo U.O., Optimizing fertilizer use within the context of integrated soil fertility management in Nigeria. In: Wortmann C.S., Sones K. (Eds.), Fertilizer use optimization in sub-Saharan Africa (pp. 148–162). CAB International, Nairobi, Kenya, 201710.1079/9781786392046.0148Search in Google Scholar

[2] Gachene C.K.K., Nyawade S.O., Karanja N.N., Soil and Water Conservation: An Overview. In: Leal F.W., Azul A., Brandli L., Özuyar P., Wall T. (Eds) Zero Hunger. Encyclopedia of the UN Sustainable Development Goals. Springer, Cham, 201910.1007/978-3-319-69626-3_91-1Search in Google Scholar

[3] Garnett T., Appleby M.C., Balmford A., Bateman I.J., Benton T.G., Bloomer P., Burlingame B., Dawkins M., Dolan L., Fraser D., Herrero M., Hoffmann I., Smith P., Thornton P.K., Toulmin C., Vermeulen S.J., Godfray H.C.J., Sustainable intensification in agriculture: premises and policies. Science, 2013, 341, 33–34.10.1126/science.1234485Search in Google Scholar PubMed

[4] Gitari H.I., Potato-legume intercrop effects on water and nutrients use efficiency, crop productivity and soil fertility in a Humic Nitisol, Kenya. PhD Thesis, University of Nairobi, Kenya, 2018Search in Google Scholar

[5] Gitari H.I., Gachene C.K.K., Karanja N.N., Kamau S., Nyawade S., Schulte-Geldermann E., Potato-legume intercropping on a sloping terrain and its effects on soil physico-chemical properties. Plant Soil., 2019, 438, 447–46010.1007/s11104-019-04036-7Search in Google Scholar

[6] Gitari H.I., Karanja N.N., Gachene C.K.K., Kamau S., Sharma K., Schulte-Geldermann E., Nitrogen and phosphorous uptake by potato (Solanum tuberosum L.) and their use efficiency under potato-legume intercropping systems. Field Crops Res., 2018, 222, 78–8410.1016/j.fcr.2018.03.019Search in Google Scholar

[7] Gitari H.I., Mochoge B.E., Danga B.O., Effect of lime and goat manure on soil acidity and maize (Zea mays) growth parameters at Kavutiri, Embu County - Central Kenya. J. Soil Sci. Environ. Manag., 2015, 6, 275–28310.5897/JSSEM15.0509Search in Google Scholar

[8] Jansen J.A., Wortmann C.S., Stockton M.A., Kaizzi C.K., Maximizing Net Returns to Financially Constrained Fertilizer Use. Agron. J., 2013, 105, 573–57810.2134/agronj2012.0413Search in Google Scholar

[9] Kaizzi K.C., Byalebeka J., Semalulu O., Alou I.N., Zimwanguyizza W., Nansamba A., Odama E., Musinguzi P., Ebanyat P., Hyuha T., Kasharu A.K., Wortmann C.S., Optimizing smallholder returns to fertilizer use: Bean, soybean and groundnut. Field Crops Res., 2012, 127, 109–11910.1016/j.fcr.2011.11.010Search in Google Scholar

[10] Kaizzi K.C., Cyamweshi A.R., Kibunja C.N., Senkoro C., Nkonde D., Maria R., Wortmann C.S., Bean yield and economic response to fertilizer in eastern and southern Africa. Nutr. Cycl. Agroecosyst., 2018, 111, 47–6010.1007/s10705-018-9915-9Search in Google Scholar

[11] Lambin E.F., Gibbs H.K., Ferreira L., Grau R., Mayaux P., Meyfroidt P., Morton D.C., Rudel T.K., Gasparri I., Munger J., Estimating the world’s potentially available cropland using a bottom-up approach. Global Environ. Change, 2013, 23, 892–90110.1016/j.gloenvcha.2013.05.005Search in Google Scholar

[12] Niyuhire M., Pypers P., Vanlauwe B., Nziguheba G., Roobroeck D., Merckx R., Profitability of diammonium phosphate use in bush and climbing bean-maize rotations in smallholder farms of Central Burundi. Field Crops Res., 2017, 212, 52–6010.1016/j.fcr.2017.06.024Search in Google Scholar

[13] Nyawade S.O., Gachene C.K.K., Karanja N.N., Gitari H.I, Schulte-Geldermann E., Parker M., Controlling soil erosion in smallholder potato farming systems using legume intercrops. Geoderma Regional, 2019a, 15 e0022510.1016/j.geodrs.2019.e00225Search in Google Scholar

[14] Nyawade S.O., Karanja N.N., Gachene C.K.K., Gitari H.I., Schulte-Geldermann E., Parker M., Intercropping Optimizes Soil Temperature and Increases Crop Water Productivity and Radiation Use Efficiency of Rainfed Potato. Am. J. Potato Res. In Press, 2019b10.1007/s12230-019-09737-4Search in Google Scholar

[15] Nyawade S.O., Karanja N.N., Gachene C.K.K., Gitari H.I., Schulte-Geldermann E., Parker M.L., Short-term dynamics of soil organic matter fractions and microbial activity in smallholder legume intercropping systems. Applied Soil Ecol., 2019c, 142, 123–13510.1016/j.apsoil.2019.04.015Search in Google Scholar

[16] Rens L.R., Zotarelli L., Rowland D.L., Morgan K.T., Optimizing nitrogen fertilizer rates and time of application for potatoes under seepage irrigation. Field Crops Res., 2018, 215, 49–5810.1016/j.fcr.2017.10.004Search in Google Scholar

[17] Sharma N.K., Singh R.J., Mandal D., Kumar A., Alam N.M., Keesstra S., Increasing farmer’s income and reducing soil erosion using intercropping in rainfed maize-wheat rotation of Himalaya, India. Agric. Ecosyst. Environ., 2017, 247, 43–5310.1016/j.agee.2017.06.026Search in Google Scholar

[18] Singh R.J., Pande K.K., Sachan V.K., Singh N.K., Sahu R.P., Singh M.P., Productivity, profitability, and energy consumption of potato-based intercropping systems. Int. J. Vegetable Sci., 2016. 22, 190–19910.1080/19315260.2014.1003632Search in Google Scholar

[19] UNDESA - United Nations, Department of Economic and Social Affairs, Population Division, World Population Prospects: The 2017 Revision. New York: United Nations, 2017, Available from: https://esa.un.org/unpd/wpp/Graphs/Probabilistic/POP/TOT/. Accessed December 19, 2018Search in Google Scholar

Received: 2019-07-06
Accepted: 2019-08-25
Published Online: 2019-11-18

© 2019 Harun I Gitari et al., published by De Gruyter

This work is licensed under the Creative Commons Attribution 4.0 Public License.

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