Contribution of traditional goat farming systems to the sustainable intensification of smallholder agriculture in sub-Saharan Africa: The example of the western part of the Democratic Republic of Congo
[en] Integrated crop-livestock systems (ICLS) increase smallholder yields and environmental benefits by enabling positive interactions between livestock and crops. As goat farming is popular in Africa, in this study, we aimed to characterise goat-rearing systems and further understand the role of goat management and the relevant drivers in ecological intensification processes. We conducted an exploratory snowball sampling of 147 goat breeders in the western provinces of the Democratic Republic of Congo (DRC). The smallholders used five agroecosystem components: animal husbandry (100%), croplands (100%), rangelands (73%), fishponds (22%) and beekeeping (2%).
In 97% of the cases, the agroecosystem of a single farmer was fragmented, with an average of 3 1 plots of land.
In 31% of the cases, the plots of land were 2.5 km apart from the others, 40% were 2.5–5 km apart, and 29% were over 5 km apart. The short distance (<2.5 km) between animal husbandry land and cropland was positively associated (p < 0.05) with the use of manure as fertiliser and crop residues as animal feed, contributing to ecological intensification. Additional factors (training, breeding pigs and goats, vegetable gardening) were
significantly associated (p < 0.05) with the aforementioned agroecological practices. Consequently, three cate gories of goat breeders were distinguished. The first group, not committed to ecological intensification, had free grazing goats. The second group also had free-grazing goats, whereas the third tethered or kept goats in confined areas, and both were committed to ecological intensification. Traditional goat farming contributes to ecological intensification when smallholder farmers follow best management practices.
Research Center/Unit :
Agroécologie
Disciplines :
Agriculture & agronomy
Author, co-author :
Ndona Nzey, Alain ; Université de Liège - ULiège > TERRA Research Centre ; Université de Liège - ULiège > Gembloux Agro-Bio Tech > Gembloux Agro-Bio Tech ; Université de Liège - ULiège > Département GxABT > Animal Sciences (AS) ; Université de Kinshasa > Zootechnie
Kambashi, Bienvenu
Beckers, Yves ; Université de Liège - ULiège > TERRA Research Centre > Animal Sciences (AS)
Moulin, Charles-Henri
Bindelle, Jérôme ; Université de Liège - ULiège > TERRA Research Centre > Animal Sciences (AS)
Language :
English
Title :
Contribution of traditional goat farming systems to the sustainable intensification of smallholder agriculture in sub-Saharan Africa: The example of the western part of the Democratic Republic of Congo
Acevedo-Siaca, L., Goldsmith, P.D., Soy-maize crop rotations in sub-Saharan Africa: a literature review. Int. J. Agron. 2020 (2020), 1–14, 10.1155/2020/8833872.
Altieri, M.A., Funes-Monzote, F.R., Petersen, P., Agroecologically efficient agricultural systems for smallholder farmers: contributions to food sovereignty. Agron. Sustain. Dev. 32 (2012), 1–13, 10.1007/s13593-011-0065-6.
Ashit, K.P., Jakia, S.M., Fouzia, N., Management practices, reproductive performance and constraints of goat rearing in Bangladesh. Indian J. Small Rumin. 20 (2020), 138–141, 10.5958/0973-9718.2019.00055.2.
Baker, N.T., Capel, Capel, P.D., Environmental factors that influence the location of crop agriculture in the Conterminous United States. U.S. Geological Survey Scientific Investigations, 2011 Report 2011–5108, Reston, Virginia.
Biloso Moyenne, A., Valorisation des produits forestiers non ligneux des plateaux de Bateke en périphérie de Kinshasa (RDCongo). 2008, Thèse de Doctorat, ULB, Belgique, 252p.
Bisiaux, F., Peltier, R., Muliele, J.-C., Mampu, sur les plateaux Batéké, en R.D. Congo, le projet qui réconcilie Agroforesterie et production de bois-énergie : 8000 ha de jachères enrichies à Acacia auriculiformis produisent plus de 8000 T de charbon/an pour la ville de Kinshasa. Roose, E., Duchaufour, H., et Georges-De-Noni, (eds.) Lutte Antiérosive. Réhabilitation Des Sols Tropicaux et Protection Contre Les Pluies Exceptionnelles, 2012, IRD, Marseille, 10.4000/books.irdeditions.13775.
Bonaudo, T., Bendahan, A.B., Sabatier, R., Ryschawy, J., Bellon, S., Leger, F., Magda, D., Tichit, M., Agroecological principles for the redesign of integrated crop-livestock systems. Eur. J. Agron. 57 (2014), 43–51, 10.1016/j.eja.2013.09.010.
Bourban, M., Croissance démographique et changement climatique : repenser nos politiques dans le cadre des limites planétaires. La Pensée Ecol. 3 (2019), 19–37, 10.3917/lpe.003.0019.
Boval, M., Angeon, V., Rudel, T., Tropical grasslands: a pivotal place for a more multi-functional agriculture. Ambio 46 (2017), 48–56, 10.1007/s13280-016-0806-5.
Boval, M., Coppry, O., Naves, M., Alexandre, G., L’élevage traditionnel, une source et un support pour l'innovation agroécologique: la pratique du piquet aux antilles. Courr. Environ. de l'INRA n°62, Décembre, 2012, p87–p97 2012.
Cairns, J.E., Hellin, J., Sonder, K., Araus, J.L., MacRobert, J.F., Thierfelder, C., Prasanna, B.M., Adapting maize production to climate change in sub-Saharan Africa. Food Secur. 5 (2013), 345–360, 10.1007/s12571-013-0256-x.
Chebli, Y., El Otmani, S., Hornick, J.-L., Keli, A., Bindelle, J., Cabaraux, J.-F., Chentouf, M., Forage availability and quality, and feeding behaviour of indigenous goats grazing in a mediterranean silvopastoral system. Ruminator 2 (2022), 74–89, 10.3390/ruminants2010004.
Chen, P., Cheng, W., Li, S., Optimization strategies for mitigating nitrogen loss in the aerobic composting of pig manure and microbial changes revealed by metagenomic analysis. Process Saf. Environ. Protect. 169 (2023), 270–284, 10.1016/j.psep.2022.11.014.
Dossa, L.H., Sangaré, M., Buerkert, A., Schlecht, E., Production objectives and breeding practices of urban goat and sheep keepers in West Africa: regional analysis and implications for the development of supportive breeding programs. SpringerPlus, 4, 2015, 281, 10.1186/s40064-015-1075-7.
Faber-Langendoen, D., Tropical, temperate, and mediterranean grasslands of the world. Encycl. World's Biomes, 2020, 424–433, 10.1016/B978-0-12-409548-9.12093-7.
Food and Agriculture Organization of the United Nations (FAO). La situation mondiale de l'alimentation et de l'agriculture 2021: Rendre les systèmes agroalimentaires plus résilients face aux chocs et aux situations de stress, La situation mondiale de l'alimentation et l'agriculture. 2021, Food and Agriculture Organization of the United Nations, Rome, 10.4060/cb4476fr.
Food and Agriculture Organization of the United Nations (FAO). The State of Food and Agriculture. Leveraging Food Systems for Inclusive Rural Transformation. 2017, Food and Agriculture Organization of the United Nations, Rome.
Food and Agriculture Organization of the United Nations (FAO). La situation mondiale de l'alimentation et de l'agriculture 2014: Ouvrir l'agriculture familiale à l'innovation. 2015, Food and Agriculture Organization of the United Nations, Rome.
Food and Agriculture Organization Statistics (FAOSTAT). Food and agriculture data. Food and Agriculture Organization of the United Nations, 2020 www.fao.org/faostat 5.10.22.
Fonds National REDD (FONAREED). Programme intégré REDD+ dans la province de Kwilu - la promotion de l'agroforesterie dans les savanes pour la séquestration de carbone, l'atténuation de la déforestation et l'amélioration de la vie de la population locale (Rapport No. AMI n°15). 2018, Fonds National REDD-RDC, Kinshasa.
Gamage, A., Gangahagedara, R., Gamage, J., Jayasinghe, N., Kodikara, N., Suraweera, P., Merah, O., Role of organic farming for achieving sustainability in agriculture. Farming Syst, 1, 2023, 100005, 10.1016/j.farsys.2023.100005.
Garcia, R., Un seul bien-être : un cadre pour favoriser l'application des normes de l'OIE sur le bien-être animal. Bull. de l'OIE, 2017, 3–8, 10.20506/bull.2017.1.2588.
Ghaley, B.B., Porter, J.R., Sandhu, H.S., Soil-based ecosystem services: a synthesis of nutrient cycling and carbon sequestration assessment methods. Intern. J. of Biodivers. Sci., Ecosyst. Serv. & Manag. 10 (2014), 177–186, 10.1080/21513732.2014.926990.
González-De-Molina, M., Guzmán Casado, G., Agroecology and ecological intensification. A discussion from a metabolic point of view. Sustain. Times, 9, 2017, 86, 10.3390/su9010086.
Gracinda, A.M., Visser, C., Sitoe, A., Smallholder goat production in Southern Africa: a review. Dubeuf, J.P., (eds.) Future Prospects on the Goat Activities for the Coming Decades in the Context of a World in Transition. Goat Science - Environment, Health and Economy, 2021, IntechOpen, London, 10.5772/intechopen.97792.
Grillot, M., Vayssières, J., Masse, D., Agent-based modelling as a time machine to assess nutrient cycling reorganization during past agrarian transitions in West Africa. Agric. Syst. 164 (2018), 133–151, 10.1016/j.agsy.2018.04.008.
Kleijn, D., Bommarco, R., Fijen, T.P.M., Garibaldi, L.A., Potts, S.G., Van Der Putten, W.H., Ecological intensification: bridging the gap between science and practice. Trends Ecol. Evol. 34 (2019), 154–166, 10.1016/j.tree.2018.11.002.
Kouadjo Paul, A., Hugues Annicet, N., Henri Cousin, G., Bien cultiver l'arachide et le maïs en rotation. J. Appl. Biosci., 146, 2020, 10.35759/JABs.v146.6.
Kumar, M., Ram, J., Meena, S., Banerjee, A., Ecological Intensification of Natural Resources for Sustainable Agriculture. 2021, Springer Nature, Singapore, 10.1007/978-981-33-4203-3.
Kuyah, S., Sileshi, G.W., Nkurunziza, L., Chirinda, N., Ndayisaba, P.C., Dimobe, K., Öborn, I., Innovative agronomic practices for sustainable intensification in sub-Saharan Africa. A review. Agron. Sustain. Dev., 41, 2021, 16, 10.1007/s13593-021-00673-4.
Lamming, L., Alternative weed strategies: successfully controlling noxious weeds with goats. Beyond Pestic 21:4 (2001), 19–23.
Latruffe, L., Diazabakana, A., Bockstaller, C., Desjeux, Y., Finn, J., Kelly, E., Ryan, M., Uthes, S., Measurement of sustainability in agriculture: a review of indicators. Stud. Agr. Econ. 118 (2016), 123–130, 10.7896/j.1624.
Lee, S.-H., Lee, J., Chowdhury, M.M.R., Jeon, D., Lee, S.-S., Kim, S., Kim, D.H., Kim, K.-W., Grazing behavior and forage selection of goats (Capra hircus). J. Kor. Grassl. Forage. Sci. 39 (2019), 189–194, 10.5333/KGFS.2019.39.3.189.
Liu, X., Sustainable intensification: a historical perspective on China's farming system. Farming Syst, 1, 2023, 100001, 10.1016/j.farsys.2023.100001.
Lohmann, U., Sausen, R., Bengtsson, L., Cubasch, U., Perlwitz, J., Roeckner, E., The Köppen climate classification as a diagnostic tool for general circulation models. Clim. Res. 3 (1993), 177–193, 10.3354/cr003177.
Losch, B., Structural transformation to boost youth labour demand in sub-Saharan Africa: the role of agriculture, rural areas and territorial development. International Labour Office, 2016, (ILO) Employment Policy Dept, Geneva.
Lugangu, M.H., Kunyima, C.K., Kamalandua, L.B., Komanda, J.A., La problématique des espaces ruraux non intégrés : une approche géo-sociale des territoires de Kasangulu, Kimvula et Madimba, dans la province du Kongo Central, en République Démocratique du Congo. Int. J. Innovat. Appl. Stud. 24 (2018), 1209–1219.
Mafwila, K.P., Kambashi, M.B., Dochain, D., Rollin, X., Mafwila, J., Bindelle, J., Smallholders' practices of integrated agriculture aquaculture system in peri-urban and rural areas in Sub Saharan Africa. Tropicultura 37 (2018), 1–18, 10.25518/2295-8010.1396.
Mafwila, K.P., Kambashi, M.B., Dogot, T., Dochain, D., Rollin, X., Mvubu, R.N., Kinkela, C., Mafwila, J., Bindelle, J., Diversity of farming systems integrating fish pond aquaculture in the province of Kinshasa in the democratic republic of the Congo. J. Agric. Rural Dev. Tropics Subtropics 118 (2017), 149–160.
Mahungu, N.M., Hangy, K.W.T., Bidiaka, S.M., Multiplication de materiel de plantation de manioc et gestion des maladies et ravageurs. CGIAR Research Program on Roots, Tubers and Bananas, 2014 https://www.rtb.cgiar.org/publications/multiplication-de-materiel-de-plantation-de-manioc-et-gestion-des-maladies-et-ravageurs 8.3.23) (In french).
Maltais-Landry, G., Neufeld, K., Poon, D., Grant, N., Nesic, Z., Smukler, S., Protection from wintertime rainfall reduces nutrient losses and greenhouse gas emissions during the decomposition of poultry and horse manure-based amendments. J. Air Waste Manag. Assoc. 68 (2018), 377–388, 10.1080/10962247.2017.1409294.
Marín, D., De Martino, G., Guenni, O., Guédez, Y., Biomasse et productivité de la strate herbacée des savanes de l'Etat de Guarico (Venezuela). Fourrages (Frankfort On The Main) 165 (2001), 89–102 (In french).
Menzi, H., Stoll, P., Schlegel, P., Nouvelles valeurs de référence pour les déjections des porcs. Rech. Agron. Suisse 7:11–12 (2016), 484–489 (In french).
Musafiri, C.M., Kiboi, M., Macharia, J., Ng'etich, O.K., Kosgei, D.K., Mulianga, B., Okoti, M., Ngetich, F.K., Adoption of climate-smart agricultural practices among smallholder farmers in Western Kenya: do socioeconomic, institutional, and biophysical factors matter?. Heliyon, 8, 2022, e08677, 10.1016/j.heliyon.2021.e08677.
Nasiru, A., Ibrahim, M.H., Ismail, N., Nitrogen losses in ruminant manure management and use of cattle manure vermicast to improve forage quality. Int. J. Recycl. Org. Waste Agric., 3, 2014, 57, 10.1007/s40093-014-0057-z.
N'Dri, Y.B., Shou-Wei, H., Hao-Ran, L., Yao, D.K., Irsa, E., Ahmad, L.V., Yash, P.D., Xin, Z., Hai-Lin, Z., Effects of fertilizer application strategies on soil organic carbon and total nitrogen storage under different agronomic practices: a meta-analysis. Land Degrad. Dev., 2023, 10.1002/ldr.4885.
Neuweiler, R., Krauss, J., Fertilisation des cultures maraîchères. 2017, Recherche Agronomique Suisse publication spéciale, Suisse (In french).
Office for the Coordination of Humanitarian Affairs (OCHA). Manual Kobo Toolbox. Office for the Coordination of Humanitarian Affairs in West and Central Africa. 2019 https://www.kobotoolbox.org/#home 5.7.22.
Ogisi, O.D., Begho, T., Adoption of climate-smart agricultural practices in sub-Saharan Africa: a review of the progress, barriers, gender differences and recommendations. Farming Syst, 1, 2023, 100019, 10.1016/j.farsys.2023.100019.
Omasombo-Tshonda, J., Zenga, K.J., Leonard, G., Mpene, N.Z., Zana, E.M., Edwine, S., Krawczyk, J., Laghmouch, M., Kwango : le pays des Bana Lunda, Le Cri édition, Bruxelles. 2012 (In french).
Renisio, Y., Sinthon, R., L'analyse des correspondances multiples au service de l'enquête de terrain: pour en finir avec le dualisme « quantitatif »/« qualitatif ». Genèses 4:97 (2014), 109–125, 10.3917/gen.097.0109 (In french).
Salas, M., Planchenault, D., Roy, F., Etude des systèmes d'élevage bovin traditionnel en Guadeloupe, Antilles françaises. Résultats d ’enquêtes. Rev. Elev. Med. Vet. Pays Trop. 41:2 (1988), 197–207 (In French).
Sejian, V., Silpa, M.V., Chauhan, S.S., Bagath, M., Devaraj, C., Krishnan, G., Nair, M.R.R., Anisha, J.P., Manimaran, A., Koenig, S., Bhatta, R., Dunshe, F.R., Eco-intensified breeding strategies for improving climate resilience in goats. Kumar, M., Ram, J., Meena, S., Banerjee, A., (eds.) Ecological Intensification of Natural Resources for Sustainable Agriculture, 2021, Springer Nature, Singapore, 627–655, 10.1007/978-981-33-4203-3_18.
Seydoux, S., Côté, D., Gasser, M.O., Caractérisation des lisiers de porcs: volumes, teneurs et charges fertilisantes. Agro Solutions 19:1 (2008), 39–48 (In french).
Shivakumara, C., Reddy, B.S., Patil, S.S., Socio-economic characteristics and composition of sheep and goat farming under extensive system of rearing. Agric. Sci. Digest 40:1 (2020), 105–108, 10.18805/ag.D-5006.
Sraïri, M.T., Azahra M'ghar, F., Benidir, M., Bengoumi, M., Analyse typologique de la diversité et des performances de l’élevage oasien. Cah. Agric., 26, 2017, 10.1051/cagri/2017002 (In french).
Stark, F., Fanchone, A., Semjen, I., Moulin, C.H., Archimède, H., Crop-livestock integration, from single practice to global functioning in the tropics: case studies in Guadeloupe. Eur. J. Agron. 80 (2016), 9–20, 10.1016/j.eja.2016.06.004.
Stark, F., González-García, E., Navegantes, L., Miranda, T., Poccard-Chapuis, R., Archimède, H., Moulin, C.H., Crop-livestock integration determines the agroecological performance of mixed farming systems in Latino-Caribbean farms. Agron. Sustain. Dev., 38, 2018, 10.1007/s13593-017-0479-x.
Struik, P.C., Kuyper, T.W., Sustainable intensification in agriculture: the richer shade of green. A review. Agron. Sustain. Dev., 37, 2017, 39, 10.1007/s13593-017-0445-7.
Syampunga, S., Handavu, F., Chama, L., Ouma, K., Matakala, N., Sumba, Chabu, Siachoono, S., Kapinga, K., Chirwa, P.W.C., Ecological intensification: towards food and environmental security in sub-Saharan Africa. Kumar, M., Ram, J., Meena, S., Banerjee, A., (eds.) Ecological Intensification of Natural Resources for Sustainable Agriculture, 2021, Springer Nature, Singapore, 597–625, 10.1007/978-981-33-4203-3_17.
Tang, K.H.D., Yap, P.-S., A systematic review of slash-and-burn agriculture as an obstacle to future-proofing climate change. Proceedings of the 4th International Conference on Climate Change, 4, 2020, 1–19, 10.17501/2513258X.2020.4101 Issue 1, 2020.
Thomaz, E.L., High fire temperature changes soil aggregate stability in slash-and-burn agricultural systems. Sci. Agric. 74 (2017), 157–162, 10.1590/1678-992x-2015-0495.
Thornton, P.K., Jones, P.G., Ericksen, P.J., Challinor, A.J., Agriculture and food systems in sub-Saharan Africa in a 4°C+ world. Philos. Trans. R. Soc. A 369 (2011), 117–136, 10.1098/rsta.2010.0246 2011.
Vall, E., Koutou, M., Blanchard, M., Coulibaly, K., Diallo, M.A., Andrieu, N., Intégration agriculture-élevage et intensification écologique dans les systèmes agrosylvopastoraux de l'Ouest du Burkina Faso, province du Tuy. Nov 2011, Bobo-Dioulasso, Burkina Faso. Vall, E., Andrieu, N., Chia, E., Nacro, H.B., (eds.) Actes de Séminaires, Partenariat, Modélisation, Expérimentations : Quelles Leçons Pour La Conception de l'innovation et l'intensification Écologique ? Bobo-Dioulasso, 2012, 1–13 Burkina Faso.
Vall, E., Marre-Cast, L., Kamgang, H.J., Chemins d'intensification et durabilité des exploitations de polyculture-élevage en Afrique subsaharienne: contribution de l'association agriculture-élevage. Cah. Agric., 26, 2017, 10.1051/cagri/2017011.
Vall, E., Salgado, P., Corniaux, C., Blanchard, M., Dutilly, C., Alary, V., Changements et innovations dans les systèmes d’élevage en Afrique. INRA Product. Animal 27 (2014), 161–174, 10.20870/productions-animales.2014.27.2.3064.
Van Vliet, N., Mertz, O., Heinimann, A., Langanke, T., Pascual, U., Schmook, B., Adams, C., Schmidt-Vogt, D., Messerli, P., Leisz, S., Castella, J.-C., Jørgensen, L., Birch-Thomsen, T., Hett, C., Bech-Bruun, T., Ickowitz, A., Vu, K.C., Yasuyuki, K., Fox, J., Padoch, C., Dressler, W., Ziegler, A.D., Trends, drivers and impacts of changes in swidden cultivation in tropical forest-agriculture frontiers: a global assessment. Global Environ. Change 22 (2012), 418–429, 10.1016/j.gloenvcha.2011.10.009.