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Soil Erosion Control and Moisture Conservation Using Contour Ridge Tillage in Bougouni and Koutiala, Southern Mali

DOI: 10.4236/jep.2019.1010079, PP. 1333-1360

Keywords: Runoff and Erosion, Nutrients Loss, Yields

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Abstract:

Soil erosion is among the critical environmental constraint for crop production in southern Mali. Contour ridge tillage (CRT), a water conservation technique had been locally applied since 1990. The objective of this study was to determine the effects of CRT compared with farmer conventional agriculture practice (NoCRT) on runoff, soil loss, nutrient loss, moisture conservation and cereals yields under rainfed conditions in two Southern Mali sites, in 2016 and 2017 in farmer fields. Measurements were performed on erosion plots composed of CRT and NoCRT plots from which water samples were collected to determine sedimentation levels, concentration and nutrients losses using pairwise comparison. Average runoff coefficient in NoCRT plots was 35.62% compared to 19.25% for the CRT plots explaining a runoff reduction of 46%. Mean soil losses of 12,095 t·ha-1 and 4970 t·ha-1 were respectively measured in NoCRT and CRT plots. Losses in calcium, magnesium and potassium nutrients in the NoCRT plots were 80%, 66%, 75% higher compared to CRT ones, respectively. Sorghum grain yield was at least two folds higher in CRT plots compared to the NoCRT plots. Maize average grain yield was 87% higher in CRT plots than in the NoCRT. For sustained soil productivity, CRT is advocated as a better soil and water management technique than the NoCRT one.

References

[1]  FAO (2017) Country Fact Sheet on Food and Agriculture Policy Trends.
http://www.fao.org/3/a-i7617e.pdf
[2]  USAID (2011) Mali Agricultural Sector Assessment. Michigan State University Food Security Team Department of Agricultural, Food and Resource Economics.
https://www.canr.msu.edu/afre/uploads/files/Staatz/MSU_Mali_Ag_Sector_Assessment_2011-3.pdf
[3]  Breman, H. and Kessler, J.J. (1995) Role of Woody Plants in Agro-Ecosystems of Semiarid Regions, with an Emphasis on the Sahelian Countries. Advanced Series in Agricultural Sciences. Springer, Berlin, 340.
https://doi.org/10.1007/978-3-642-79207-6
[4]  Van Duivenbooden, V.N., Pala, M., Studer, C. and Bielders, C.L. (2000) Cropping Systems and Crop Complementarity in Dryland Agriculture: A Review. Netherlands Journal of Agricultural Science, 48, 213-236.
https://doi.org/10.1016/S1573-5214(00)80015-9
[5]  Gigou, J., Traore, K., Giraudy, F., Coulibaly, H., Sogoba, B. and Doumbia, M. (2006) Aménagement paysan des terres et réduction du ruissellement dans les savanes africaines. Cahiers Agricultures, 15, 116-122.
[6]  Bertrand, R. and Gigou, J. (2000) La fertilité des sols tropicaux. Maisonneuve et Larose (Le technicien d’agriculture tropicale), Paris, 397 p.
[7]  Baptista, I., Ritsema, C. and Geissen, V. (2015) Effect of Integrated Water-Nutrient Management Strategies on Soil Erosion Mediated Nutrient Loss and Crop Productivity in Cabo Verde Drylands. PLoS ONE, 10, e0134244.
https://doi.org/10.1371/journal.pone.0134244
[8]  FAO (1995) Land and Environmental Degradation and Desertification in Africa. FAO Corporate Document Repository.
[9]  Ngwu, O.E., Mbagwu, J.S.C. and Obi, M.E. (2005) Effect of Desurfacing on Soil Properties and Maize Yield—Research Note. Nigerian Journal of Soil Science, 15, 148-150.
[10]  Pierce, F.J. and Lal, R. (1994) Monitoring Soil Erosion’s Impact on Crop Productivity. In: Lal, R., Ed., Soil Erosion Research Methods, Soil and Water Conservation Society, 2nd Edition, Ankeny, 235-263.
https://doi.org/10.1201/9780203739358-10
[11]  Van Der Pol, F. (1991) L’épuisement des terres, une source de revenu pour les paysans au Mali-Sud. In: Pieri, C., Ed., Savanes d’Afrique, terres fertile, France CIRAD, Montpellier, 403-419.
[12]  Birhanu, Z. and Tabo, R. (2016) Shallow Wells, the Untapped Resource with a Potential to Improve Agriculture and Food Security in Southern Mali. Agriculture & Food Security, 5, 5.
https://doi.org/10.1186/s40066-016-0054-8
[13]  Doumbia, M., Goto, Y. and Toba, N. (2007) Place de la Gestion Durable des Terres au Mali. TerrAfrica/Banque mondiale, 109 p.
https://www.on-mali.org/joomlaa/__GED/pdf/place_de_la_gestion_durable_des_terres_au_mali_.pdf
[14]  Vitale, J.D. and Lee, J.G. (2005) Land Degradation in the Sahel: An Application of Biophysical Modeling in the Optimal Control Setting. American Agricultural Economics Association Annual Meeting, Providence, 24-27 July 2005, 19 p.
https://ageconsearch.umn.edu/record/19494/
[15]  Bodnár, F. and De Graaff, J. (2003) Factors Influencing Adoption of Soil and Water Conservation Measures in Southern Mali. Land Degradation & Development, 14, 515-525.
https://doi.org/10.1002/ldr.579
[16]  Ogunwole, J., Pires, L., Shehu, B. and Gabriels, D. (2013) Impact of Two Management Practices on the Improvement of Soil Physical Quality: 1. Assessment of Capacity-Based Indicators and Dexter’s S-Index. Proceedings of the 3rd Workshop of the ICTP Soils Physics, Trieste, March 2013, 9 p.
[17]  Zougmoré, R., Jalloh, A. and Tioro, A. (2014) Climate-Smart Soil Water and Nutrient Management Options in Semiarid West Africa: A Review of Evidence and Analysis of Stone Bunds and Zaï Techniques. Agriculture & Food Security, 3, Article No. 16.
http://agricultureandfoodsecurity.com/content/3/1/16
https://doi.org/10.1186/2048-7010-3-16
[18]  Traore, K., Sidibe, K.S., Coulibaly, H. and Bayala, J. (2017b) Optimizing Yield of Improved Varieties of Millet and Sorghum under Highly Variable Rainfall Conditions Using Contour Ridges in Cinzana, Mali.
https://doi.org/10.1186/s40066-016-0086-0
[19]  Gigou, J., Traore, K.B., Coulibaly, H., Vaksman, M. and Kouressy, M. (1996) Aménagement en courbes de niveau et rendements des cultures en région Mali Sud. Bulletin Réseau Erosion, 19, 391-404.
[20]  Doumbia, M., Jarju, A., Sene, M., Traore, K., Yost, R., Kablan, R., Brannan, K., Abou, B. and Charles, Y. (2008) Sequestration of Organic Carbon in West African Soils by Aménagement en Courbes de Niveau. Agronomy for Sustainable Development, 29, 267-275.
https://doi.org/10.1051/agro/2008041
[21]  Kablan, R., Yost, R.S., Brannan, K., Doumbia, M.D., Traoré, K. and Yoroté, A. (2008) Aménagement en courbes de niveau, Increasing Rainfall Capture, Storage, and Drainage in Soils of Mali. Arid Land Research and Management, 22, 62-80.
https://doi.org/10.1080/15324980701784191
[22]  Traore, K.B., Gigou, J.S., Coulibaly, H. and Doumbia, M.D. (2004) Contoured Ridge-Tillage Increases Cereal Yields and Carbon Sequestration. 13th International Soil Conservation Organization Conference, Brisbane, July 2004, 6.
[23]  Haileslassie, A., Hagos, F., Mapedza, E., Sadoff, C., Awulachew, S.B., Gebreselassie, S. and Peden, D. (2008) A Review of Hydrology, Sediment and Water Resource Use in the Blue Nile Basin. IWMI Working Paper 132, International Water Management Institute, Colombo, 81 p.
[24]  Traore, K. (2003) Le parc à karité, sa contribution à la durabilité de l’agrosystème: Cas d’une toposéquence à Konobougou dans le Mali-sud. Thèse de Doctorat en Sciences du Sol. Université de Montpellier II, ENSAM, FRANCE 180 pages + annexes (20).
[25]  Sultan, B. and Janicot, S. (2003) The West African Monsoon Dynamics. Part II: The “Preonset” and “Onset” of the Summer Monsoon. Journal of Climate, 16, 3407-3427.
https://doi.org/10.1175/1520-0442(2003)016<3407:TWAMDP>2.0.CO;2
[26]  CPCS (1967) Classification des sols: Commission de Pédologie et de Cartographie des sols. INRA, Paris, 96 p.
[27]  WRB (2006) World Reference Base for Soil Resources 2006. World Soil Resources Reports No. 103. FAO, Rome.
[28]  Soil Survey Staff (1999) Soil Taxonomy: A Basic System of Soil Classification for Making and Interpreting Soil Surveys. 2nd Edition, USDA Agric. Handb. 436. U.S. Gov. Print Office, Washington DC.
[29]  Adjognon, S.G., Liverpool-Tasie, L.S.O. and Reardon, T.A. (2017) Agricultural Input credit in Sub-Saharan Africa: Telling Myth from Facts. Food Policy, 67, 93-105.
https://doi.org/10.1016/j.foodpol.2016.09.014
[30]  Anderson, J.M. and Ingram, J.S.I. (1993) Tropical Soil Biology and Fertility: A Handbook of Methods. CAB International, Wallingford.
[31]  Nelson, D.W. and Sommer, L.E. (1982) Total Carbon, Organic Matter. Methods of Soil Analysis. ASA 92 Edition.
[32]  Bremner, J.M. and Mulvaney, C.S. (1982) Total Nitrogen. In: Page, A.L., Miller, R.H. and Keeney, D.R., Eds., Methods of Soil Analysis. Part 2. Chemical and Microbiological Properties, American Society of Agronomy and Soil Science Society of America, Madison, 593-624.
[33]  Page, A.L., Miller, R.H. and Kenney, D.R. (1982) Methods of Soil Analysis. Chemical and Microbiological Properties. American Society of Agronomy Monographs, Madison, No. 9 (2).
[34]  Sivakumar, M.V.K., Manu, A., Virmani, S.M. and Kanemasu, E.T. (1992) Relation between Climate and Soil Productivity. In: Lal, R. and Sanchez, P.A., Eds., Myths and Science of Soils of the Tropics, Vol. 29, Soil Science Society of America, Guilford, Special Publication, 92-120.
[35]  Lobell, D.B. and Field, C.B. (2007) Global Scale Climate-Crop Yield Relationships and the Impacts of Recent Warming. Environmental Research Letters, 2, Article ID: 014002.
https://doi.org/10.1088/1748-9326/2/1/014002
[36]  Nhemachena, C. and Hassan, R. (2007) Micro-Level Analysis of Farmers’ Adaptation to Climate Change in Southern Africa. IFPRI Discussion Paper 00714, Centre for Environmental Economics and Policy in Africa (CEEPA), Pretoria.
[37]  Amikuzuno, J. and Donkoh, S.A. (2012) Climate Variability and Yields of Major Staple Food Crops in Northern Ghana. African Crop Science Journal, 20, 349-360.
[38]  Casenave, A. and Valentin, C. (1989) Soil Surface Status in the Sahelian Zone. Influence on Infiltration. Office de Recherche Scientifique des Territoires d’Outre-Mer, Paris.
[39]  Quinton, J.N. and Catt, J.A. (2004) The Effects of Minimal Tillage and Contour Cultivation on Surface Runoff, Soil Loss and Crop Yield in the Long-Term Woburn Erosion Reference Experiment on Sandy Soil at Woburn, England. Soil Use and Management, 20, 343-349.
https://doi.org/10.1079/SUM2004267
[40]  Pieri, C. (1989) Fertilité des terres de savanes. Bilan de 30 ans de recherche et de développement agricoles au sud du Sahara. CIRAD/Ministère de la Coopération et du Développement, Paris, 444 p.
[41]  Sanchez, P.A. and Logan, T.J. (1992) Myths and Science about the Chemistry and Fertility of Soils in the Tropics. In: Lal, R. and Sanchez, P.A., Eds., Myths and Science of Soils of the Tropics, SSSA, Madison, SSSA Special Publication 29, 35-46.
[42]  Feller, C. (1995) La matière organique dans les sols tropicaux à argile 1:1. Recherche de compartiments fonctionnels. Une approche granulométrique. Collection TDM, Vol. 144, ORSTOM, Paris.
[43]  Asadu, C.L.A., Diels, J. and Vanlauwe, B.A. (1997) Comparison of the Contributions of Clay, Silt, and Organic Matter to the Effective CEC of Soils of Sub-Saharan Africa. Soil Science, 162, 785-794.
https://doi.org/10.1097/00010694-199711000-00003
[44]  Rider, N.D. and Van Keulen, H. (1990) Some Aspect of Organic Matter Role in Sustainable Arable Farming Systems in West Africa Semi-Arid-Tropics (SAT). Fertilizer Research, 26, 325-345.
https://doi.org/10.1007/BF01048768
[45]  Igwe, C.A. (2011) Tropical Soils, Physical Properties. In: Glinski, J., Horabik, J. and Lipiec, J., Eds., Encyclopedia of Agrophysics, Springer, Berlin, 934-937.
https://doi.org/10.1007/978-90-481-3585-1_258
[46]  Casenave, A. and Valentin, C. (1992) A Runoff Capability Classification System Based on Surface Features Criteria in Semi-Arid Areas of West Africa. Journal of Hydrology, 130, 231-249.
https://doi.org/10.1016/0022-1694(92)90112-9
[47]  Guillobez, S., Zougmoré, R. and Kaboré, B. (1995) L’érosion en Afrique soudanienne. Confrontation des points de vue des chercheurs et des paysans. Cas du Burkina. Proceedings of the Scope Workshop, Dakar, 15-19 November 1993, 203-212.
[48]  Mallants, D., Mohanty, B.P., Jacques, D. and Feyen, J. (1996) Spatial Variability of Hydraulic Properties in a Multi-Layered Soil Profile. Soil Science, 161, 167-181.
https://doi.org/10.1097/00010694-199603000-00003
[49]  Peugeot, C., Esteves, M., Rajot, J.L., Vandervaere, J.P. and Galle, S. (1997) Runoff Generation Processes: Results and Analysis of Field Data Collected at the Central Supersite of the Hapex-Sahel Experiment. Journal of Hydrology, 188-189, 179-202.
https://doi.org/10.1016/S0022-1694(96)03159-9
[50]  Arnaud, P., Bouvier, C., Cisneros, L. and Dominguez, R. (2002) Influence of Rainfall Spatial Variability on Flood Prediction. Journal of Hydrology, 260, 216-230.
https://doi.org/10.1016/S0022-1694(01)00611-4
[51]  Gomez, J.A., Romero, P., Giraldez, J.V. and Fereres, E. (2004) Experimental Assessment of Runoff and Soil Erosion in an Olive Grove on a Vertic Soil in Southern Spain as Affected by Soil Management. Soil Use and Management, 20, 426-431.
https://doi.org/10.1079/SUM2004275
[52]  Barthès, B., Azontonde, A., Boli Baboulé, Z., Prat, C. and Roose, E. (2000) Field-Scale Run-Off and Erosion in Relation to Topsoil Aggregate Stability in Three Tropical Regions (Benin, Cameroon, Mexico). European Journal of Soil Science, 51, 485-495.
https://doi.org/10.1046/j.1365-2389.2000.00322.x
[53]  Birhanu, B.Z., Traore, K., Gumma, M.K., Badolo, F., Tabo, R. and Whitbread, A.M. (2018) A Watershed Approach to Managing Rainfed Agriculture in the Semiarid Region of Southern Mali: Integrated Research on Water and Land Use. Environment, Development and Sustainability, 21, 2459-2485.
https://doi.org/10.1007/s10668-018-0144-9
[54]  Mati, B.M. (2005) Overview of Water and Soil Nutrient Management under Smallholder Rain-Fed Agriculture in East Africa. Working Paper No. 105. International Water Management Institute (IWMI), Colombo.
[55]  Barungi, M., Ng’ong’ola, D.H., Edriss, A., Mugisha, J., Waithaka, M. and Tukahirwa, J. (2013) Factors Influencing the Adoption of Soil Erosion Control Technologies by Farmers along the Slopes of Mt. Elgon in Eastern Uganda. Journal of Sustainable Development, 6, 9-25.
https://doi.org/10.5539/jsd.v6n2p9
[56]  Diallo, D. (2000) Erosion des sols en zone soudanienne du Mali, transfert des matériaux érodés dans le bassin versant de Djitiko (Haut Niger). Thèse Université Grenoble IRD Montpellier, 202.
[57]  Roose, E., Sabir, M., Arabi, M., Morsli, B. and Mazour, M. (2012) Soixante années de recherches en coopération sur l’érosion hydrique et la lutte antiérosive au Maghreb. Physio-Géo, 6, 43-69.
https://journals.openedition.org/physio-geo/2319
https://doi.org/10.4000/physio-geo.2319
[58]  Lenka, N.K., Mandal, D. and Sudhishri, S. (2014) Permissible Soil Loss Limits for Different Physiographic Regions of West Bengal. Current Science, 107, 665-670.
[59]  Singh, R.K., Somasundaram, J., Lakaria, B.L., Mandal, D., Sethy, B.K., Sinha, N.K. and Lal, R. (2017) Using Credible Soil Loss Tolerance Value for Conservation Planning and Managing Diverse Physiographic Regions in Rajasthan. Agricultural Research, 6, 169-178.
https://doi.org/10.1007/s40003-017-0248-8
[60]  Sudhishri, S., Kumar, A., Singh, J.K., Dass, A. and Nain, A.S. (2014) Erosion Tolerance Index under Different Land Use Units for Sustainable Resource Conservation in a Himalayan Watershed Using Remote Sensing and Geographic Information System (GIS). African Journal of Agricultural Research, 9, 3098-3110.
https://doi.org/10.5897/AJAR2013.7933
[61]  Zougmoré, R., Mando, A. and Stroosnijder, L. (2009) Soil Nutrient and Sediment Loss as Affected by Erosion Barriers and Nutrient Source in Semi-Arid Burkina Faso. Arid Land Research and Management, 23, 85-101.
https://doi.org/10.1080/15324980802599142
[62]  Sharaiha, R.K. and Ziadat, F.M. (2008) Alternative Cropping Systems to Control Soil Erosion in the Arid to Semi-Arid Areas of Jordan. Arid Land Research and Management, 22, 16-28.
https://doi.org/10.1080/15324980701784266
[63]  Pimentel, D. (2006) Soil Erosion: A Food and Environmental Threat. Environment, Development and Sustainability, 8, 119-137.
http://saveoursoils.com/userfiles/downloads/1368007451-Soil%20Erosion-David%20Pimentel.pdf
https://doi.org/10.1007/s10668-005-1262-8
[64]  Roose, E. and Barthes, B. (2001) Organic Matter Management for Soil Conservation and Productivity Restoration in Africa: A Contribution from Francophone Research. Nutrient Cycling in Agroecosystems, 61, 159-170.
https://doi.org/10.1023/A:1013349731671
[65]  Lee, G.-J., Lee, J.-T., Ryu, J.-S., Zhang, Y.-S. and Jung, Y.-S. (2010) Loss of Soil and Nutrient from Different Soil Managements in Highland Agriculture. 19th World Congress of Soil Science, Soil Solutions for a Changing World, Brisbane, 1-6 August 2010, 184 p.
[66]  Mohamoud, Y.M. (2012) Effect of Contour Ridging on Runoff and Soil Loss. African Journal of Agricultural Research, 7, 6115-6124.
http://www.academicjournals.org/AJAR
https://doi.org/10.5897/AJAR11.2307
[67]  Pimentel, D. and Burgess, M. (2013) Soil Erosion Threatens Food Production. Agriculture, 3, 443-463.
https://doi.org/10.3390/agriculture3030443
[68]  An, J., Liu, Q.J. and Wu, Y.Z. (2015) Optimization of the Contour Ridge System for Controlling Nitrogen and Phosphorus Losses under Seepage Condition. Soil Use and Management, 31, 89-97.
https://doi.org/10.1111/sum.12171
[69]  Ashagrie, Y., Zech, W., Guggenberger, G. and Mamo, T. (2007) Soil Aggregation and Total and Particulate Organic Matter Following Conversation of Native Forests to Continuous Cultivation in Ethiopia. Soil & Tillage Research, 94, 101-108.
https://doi.org/10.1016/j.still.2006.07.005
[70]  Feller, C., Albrecht, A., Blanchart, E., Cabidoche, Y.M., Chevallier, T., Hartmann, C., Eschenbrenner, V., Larre Larrouy, M.-C. and Ndandou, J.-F. (2001) Soil Organic Carbon Sequestration in Tropical Areas: General Considerations and Analysis of Some Edaphic Determinants for Lesser Antilles Soils. Nutrient Cycling in Agroecosystems, 61, 19-31.
https://doi.org/10.1023/A:1013359319380
[71]  Ganry, F., Feller, C., Harmand, J.M. and Guibert, H. (2001) Management of Soil Organic Matter in Semiarid Africa for Annual Cropping Systems. Nutrient Cycling in Agroecosystems, 61, 105-118.
https://doi.org/10.1023/A:1013320800721
[72]  Nciizah, A.D. and Wakindiki, I.I.C. (2015) Physical Indicators of Soil Erosion, Aggregate Stability and Erodibility. Archives of Agronomy & Soil Science, 61, 827-842.
https://doi.org/10.1080/03650340.2014.956660
[73]  Sharpley, A.N., Smith, S.J. and Jones, O.R. (1992) The Transport of Bioavailable Phosphorus in Agricultural Runoff. Journal of Environmental Quality, 21, 30-35.
https://doi.org/10.2134/jeq1992.00472425002100010003x
[74]  Daniel, T.C., Sharpley, A.N. and Lemunyon, J.L. (1998) Agricultural Phosphorus and Eutrophication: A Symposium Overview. Journal of Environmental Quality, 27, 251-257.
https://doi.org/10.2134/jeq1998.00472425002700020002x
[75]  Sharpley, A.N., Daniel, T., Sims, T., Lemunyon, J., Stevens, R. and Parry, R. (2003) Agricultural Phosphorus and Eutrophication. 2nd Edition, US Department of Agriculture, Agricultural Research Service, ARS-149, 44 p.
[76]  Chardon, W.J. and. Schoumans, O.F. (2007) Soil Texture Effects on the Transport of Phosphorus from Agricultural Land in River Deltas of Northern Belgium, the Netherlands and North-West Germany. Soil Use and Management, 23, 16-24.
https://doi.org/10.1111/j.1475-2743.2007.00108.x
[77]  Henao, J. and Baanante, C. (1999) Estimating Rates of Nutrient Depletion in Soils of Agricultural Lands of Africa. International Fertilizer Development Center, Muscle Shoals, 73 p.
[78]  Traore, K., Sidibe, D.K. and Coulibaly, H. (2017) Climate Smart Agriculture as Final Goal: Use of Improved Cereals Varieties in Cinzana, Mali. Journal of Agricultural Studies, 5, 50.
https://doi.org/10.5296/jas.v5i1.10582
[79]  Sunday, E.O., Mohammed, M.B., John, C. and Nwite, J.C. (2012) Soil Degradation-Induced Decline in Productivity of Sub-Saharan African Soils: The Prospects of Looking Downwards the Lowlands with the Sawah Ecotechnology. Applied and Environmental Soil Science, 2012, Article ID: 673926.
https://doi.org/10.1155/2012/673926
[80]  Khlifi, S., Arfa, H., Ben Dhiab D’beya, L., Ghedhoui, S. and Baccouche, E.S. (2010) Effects of Contour Ridge Bench on Several Physical and Chemical Soil Characteristics at el Ghrifettes Site (Zaghouan, Tunisia). Arid Land Research and Management, 24, 196-212.
https://doi.org/10.1080/15324982.2010.485627
[81]  Rattunde, H.F.W., Sidibé, A., Vom Brocke, K., Diallo, A. and Weltzien, E. (2011) Semences hybrides de sorgho: Hybrides de sorgho et méthodologie pour la production de leurs semences. International Crops Research Institute for the Semis-Arid Tropics (ICRISAT), Institut d’&EACUTE;conomie Rurale (IER) of Mali; Centre de Coopération Internationale en Recherche Agronomique pour le Développement (CIRAD) s/c ICRISAT; 18 p.
https://agritrop.cirad.fr/570033/1/document_570033.pdf
[82]  Coulibaly, D., Sissoko, F., Doumbia, S., Ba, A. and Dembele, B. (2017) Evaluation de l’effet de la fertilisation minérale sur la production de variétés améliorées de maïs et le disponible fourrager en zone cotonnière du Mali sud (Mali). Agronomie Africaine, 29, 109-117.

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