Page 55 - EER-2-3
P. 55
Explora: Environment
and Resource Maize–pigeon pea intercropping in Ghana
and crop productivity in the Guinea savanna of northern 29. Jean Pierre H, Ngassam A, Njendah FN. Nutrient-rich
Ghana. Field Crops Res. 2017;213:38-50. grains from legume-intercropped maize systems. J Food Sci
Technol. 2018;55(4):1239-1247.
doi: 10.1016/j.fcr.2017.07.008
doi: 10.1007/s13394-018-2845-3
20. Li QZ, Sun JH, Wei XJ, Christie P, Zhang FS, Li L.
Overyielding and interspecific interactions mediated by 30. Hobbs PR, Gupta R, Sayre KD. Conservation agriculture:
nitrogen fertilization in strip intercropping of maize with A review of the concept and its implementation in developing
faba bean, wheat, and barley. Plant Soil. 2011;339:147-161. countries. J Agric Sci Technol. 2017;17(2):257-272.
doi: 10.1007/s11104-010-0561-5 doi: 10.17265/2161-6264/2017.02.005
21. JASP Team. JASP (Version 0.19.1) [Computer Software]; 31. Jean Pierre HM, Kinama JM, Olubayo FM, Wanderi SW,
2024. Available from: https://jasp-stats.org [Last accessed on Muthomi JW, Nzuve FM. Effect of intercropping maize-
2024 Nov 18]. soybean on grain quality traits in Kenya. J Agric Sci.
2018;10(2):341.
22. Thinley K, Sithup K, Choden T, et al. Establishment of a
high-yield intercropping system for maize and legumes doi: 10.5539/jas.v10n2p341
under rainfed conditions in Eastern Bhutan. Plant Prod Sci. 32. Owusu Danquah E. Evaluation of Pigeonpea-White Yam
2024;27(3):170-184. (Cajanus cajan [L] Millsp.-Dioscorea rotundata [L] Poir)
doi: 10.1080/1343943X.2024.2354544 Cropping System for Improved yam Productivity and
Livelihood of Smallholder Farmers. Michigan: Michigan State
23. Owusu Danquah E, Ennin SA, Acheampong PP. Integrated University; 2020.
soil nutrient management option for sustainable yam
production. Agron Afr. 2017;29(2):69-81. 33. Abdulai A, Adams F, Boateng JK, et al. Maize production in
Ghana: A review. J Agric Sci Technol. 2018;18(3):537-554.
24. Nagar RK, Goud VV, Kumar R, Kumar R. Effect of organic
manures and crop residue management on physical, doi: 10.17265/2161-6264/2018.03.007
chemical, and biological properties of soils under pigeon pea- 34. Dobermann A, Bruulsema T, Cakmak I, et al. Responsible
based intercropping system. Int J Farm Sci. 2016;6(1):101- plant nutrition: A new paradigm to support food system
113. transformation. Glob Food Secur. 2022;33:100636.
25. Namatsheve T, Mulder J, Obia A, Martinsen V. Biological doi: 10.1016/j.gfs.2022.100636
N₂-fixation and grain yield of pigeon pea: The role of
biochar and conservation agriculture in low-input systems. 35. Renwick LLR, Kimaro AA, Hafner JM, Rosenstock TS,
Field Crops Res. 2025;328:109923. Gaudin ACM. Maize-pigeonpea intercropping outperforms
monocultures under drought. Front Sustain Food Syst.
doi: 10.1016/j.fcr.2025.109923 2020;4:562663.
26. ICRISAT. Pigeon Pea: A Lifeline for Dryland Communities. doi: 10.3389/fsufs.2020.562663
Patancheruvu: ICRISAT; 2023.
36. Kumar S, Patel MM, Yadav RK, Meena RK, Singh J.
27. Sapkota TB, Jat ML, Aryal JP. Climate-resilient agriculture: Intercropping of maize with pigeon pea: A review. J Agric Sci
A review. J Agric Sci Technol. 2019;19(1):1-15. Technol. 2020;20(2):257-272.
doi: 10.17265/2161-6264/2019.01.001 doi: 10.17265/2161-6264/2020.02.005
28. Snapp SS, Blackie MJ, Gilbert RA, et al. Evaluating the 37. Asante BO, Twumasi JA, Yaw F, et al. Climate change
economic benefits of conservation agriculture. J Sustain and maize production in Ghana. J Agric Sci Technol.
Agric. 2010;34(3):267-284. 2018;18(2):257-272.
doi: 10.1080/10440041003679694 doi: 10.17265/2161-6264/2018.02.005
Volume 2 Issue 3 (2025) 14 doi: 10.36922/EER025130026

