Full Length Research Paper
References
Aboubacar K, Ousmane ZM, Amadou HI, Issaka S, Zoubeirou AM (2013). Effet de la co-inoculation du rhizobium et de mycorhizes sur les performances agronomiques du niébé au Niger. Journal Applied Bioscience 72:5846-5854. |
|
Balogoun I, Saïdou A, Kindohoundé NS, Ahoton EL, Amadji GL, Ahohuendo BC, Babatoundé S, Chougourou D, Baba-Moussa L, Ahanchédé A (2015). Soil Fertility and Biodiversity of Arbuscular Mycorrhizal Fungi Associated with Cashew's (Anacardium occidentale L.) Cultivars Characteristics in Benin (West Africa). International Journal of Plant and Soil Science 5(1):50-63. |
|
Bamshaiye OM, Adegbola JA, Bamishaiye EI (2011). Bambara groundnut: An Under-Utilized Nut in Africa. Advances in Agricultural Biotechnology (1):60-72. |
|
Bohrer G, Kangan-Zur V, Roth-Bejerano N, Ward D, Beck G, di Bonifacio E (2003). Effect of different Kalahari-desert VA mycorrhizal communities on mineral acquisition and depletion from soil by hast plants. Journal of Arid Environment 55:193-208. |
|
Bossou LDR, Houngnandan HB, Adandonon A, Zoundji C, Houngnandan P (2019). Diversité des champignons mycorhiziens arbusculaires associés à la culture du maïs (Zea mays L.) au Bénin. International Journal of Biological and Chemical Sciences 13 (2):597-609. |
|
Brito I, Goss MJ, De Carvalho M (2012). Effect of tillage and crop on arbuscular mycorrhiza colonization of winter wheat and triticale under Mediterranean conditions. Soil Use and Management 28:202-208. |
|
Brundrett M (2009). Mycorrhizal associations and other means of nutrition of vascular plants: understanding the global diversity of host plants by resolving conflicting information and developing reliable means of diagnosis. Plant Soil 32:37-77. |
|
Dalpé Y (1989). Ericoid mycorrhizal fungi in the Myxotrichaceae and Gymnoascaceae. New Phytologist 113(4):523-527. |
|
Daniell TJ, Husband R, Fitter AH, Young JPW (2001). Molecular diversity of arbuscular mycorrhizal fungi colonising arable crops. FEMS Microbiology Ecology 36:203-209. |
|
Dansi A, Vodouhè R, Azokpota P, Yedomonhan H, Assogba P, Adjatin A, Loko YL, Dossou-Aminon I, Akpagana K (2012). Diversity of the Neglected and Underutilized Crop Species of Importance in Benin. The Scientific World Journal, pp. 932-947. |
|
Diop TA, Gueye M, Dreyfus BL, Plenchette C, Strullu DG (1994). Indigenous arbuscular mycorrhizal fungi associated with Acacia albida Del. in different areas of Senegal. Applied and Environmental Microbiology 60(9):3433-3436. |
|
Do Rego FA, Diop I, Sadio O, Da Sylva MC, Agbangba CE, Touré O, Kane A, Neyra M, Ndoye I, Krasova-Wade T (2015). Response of cowpea to symbiotic microorganism's inoculation (Arbuscular mycorrhizal fungi and Rhizobium) in cultivated soils in Senegal. Universal Journal of Plant Science 3(2):32-42. |
|
Eom AH, Hartnett DC, Wilson GWT (2004). Host plant species effects on arbuscular mycorrhizal fungal communities in tallgrass prairie. Ecology 122:435-444. |
|
Gbaguidi AA, Dossou-Aminon I, Agre AP, Dansi A, Rudebjer P, Hall R, Vodouhe R (2016). Promotion de la chaine des valeurs des espèces négligées et sous-utilisées au Bénin: cas du voandzou (Vigna subterranea L. Verdcourt.). International Journal of Neglected and Underutilized Species 2:19-32. |
|
Gbaguidi AA, Sanoussi F, Orobiyi A, Dansi M, Akouegninou BA, Dansi A (2015). Connaissances endogènes et perceptions paysannes de l'impact des changements climatiques sur la production et la diversité du niébé (Vigna unguiculata (L.) Walp.) et du voandzou (Vigna subterranea (L) Verdcourt.) au Bénin. International Journal of Biological and Chemical Sciences 9(5):2520-2541. |
|
Gnangle PC, Afouda YJ, Yegbemey RN, Glèlè Kakaï RL, Sokpon N (2012). Rentabilité économique des systèmes de production des parcs à karité dans le contexte de l'adaptation au changement climatique du Nord-Bénin. African Crop Science Journal 20(2):589-602. |
|
Gryndler M, Hrselová H, Cajthaml T, Havránková M, Rezá?ová V, Gryndlerová H, Larsen J (2009). Influence of soil organic matter decomposition on arbuscular mycorrhizal fungi in terms of asymbiotic hyphal growth and root colonization. Mycorrhiza 19:255-266. |
|
Guissou T, Bâ AM, Ouadba J-M, Guinko S, Duponnois R (1998). Responses of Parkia biglobosa (Jacq.) Benth, Tamarindus indica L. and Zizyphus mauritiana Lam. to arbuscular mycorrhizal fungi in a phosphorus-deficient sandy soil. Biology and Fertility of Soils 26:194-198. |
|
Haougui A, Souniabe PS, Doumma A, Adam T (2013). Evolution of mycorrhizal fungi population on weeds of four garden in the Maradi region of Niger. International Journal of Biological and Chemical Sciences 7(2):554-565. |
|
Haro H, Sanon KB, Krasova-Wade T, Kane A, N'doye I, Traore AS (2015). Réponse à la double inoculation mycorhizienne et rhizobienne du niébé (variété, KVX396-4-5-2D) cultivé au Burkina Faso. International Journal of Biological and Chemical Sciences 9(3):1485-1493. |
|
Houngnandan P, Yemadje RGH, Kane A, Boeckx P, Van Cleemput O (2009). Les glomales indigènes de la forêt claire à Isoberlinia doka (Craibet Stapf) à Wari-Maro au centre du Bénin. Tropicultura 27(2):83-87. |
|
Igue AM, Saidou A, Adjanohoun A, Ezui G, Attiogbe P, Kpagbin G, Gotoechan Hodonou H, Youl S, Pare T, Balogoun I, Ouedraogo J, Dossa E, Mando A, Sogbedji JM (2013). Evaluation de la fertilité des sols au sud et centre du Bénin. Bulletin de la Recherche Agronomique du Bénin (BRAB) 12(23):1840-7099. |
|
Johnson JM, Houngnandan P, Kane A, Sanon KB, Neyra M (2013). Diversity patterns of indigenous arbuscular mycorrhizal fungi associated with rhizosphere of cowpea (Vigna unguiculata (L.) Walp.) in Benin, West Africa. Pedobiologia 56:121-128. |
|
Liu Y, Shi G, Mao L, Cheng G, Jiang S, Ma X, An L, Du G, Johnson NC, Feng H (2012). Direct and indirect influences of 8yr of nitrogen and phosphorus fertilization on Glomeromycota in an alpine meadow ecosystem. New Phytologist 194:523-535. |
|
Lovelock CE, Andersen K, Morton JB (2003). Arbuscular mycorrhizal communities in tropical forests are affected by host tree species and environment. Ecologia 135:268-279. |
|
Massawe FJ, Mwale SS, Azam-Ali SN, Roberts JA (2005). Breeding in Bambara groundnut [Vigna subterranea (L.) Verdcourt]: Strategic considerations. African Journal of Biotechnology 4(6):463-471. |
|
Mathimaran N, Ruh R, Vullioud P, Frossard E, Jansa J (2005). Glomus intraradices dominates arbuscular mycorrhizal communities in a heavy textured agricultural soil. Mycorrhiza 16:61-66. |
|
Mazahib AM, Nuha MO, Salawa IS, Babiker EE (2013). Some nutritional attributes of bambara groundnut as influenced by domestic processing. International Food Research Journal 20(3):1165-1171. |
|
Mechri B, Mariem FB, Baham M, Elhadj SB, Hammami M (2008). Change in soil properties and the soil microbial community following land spreading of olive mill wastewater affects olive trees key physiological parameters and the abundance of arbuscular mycorrhizal fungi. Soil Biology Biochemical 40:152-161. |
|
Ndiang Z, Bell JM, Missoup AD, Fokam PE, Amougou A (2012). Etude de la variabilité morphologique de quelques variétés de voandzou [Vigna subterranea (L.) Verdc] au Cameroun. Journal of Applied Biosciences 60:4410-4420. |
|
Oehl F, Sieverding E, Ineichen K, Mäder P, Boller T, Wiemken A (2003). Impact of land use intensity on the species diversity of arbuscular mycorrhizal fungi in agroecosystems of central Europe. Applied and Environmental Microbiology 69:2816-2824. |
|
Phillips JM, Hayman DS (1970). Improved procedures for cleaning roots and staining parasitic and vesicular-arbuscular mycorrhizal fungi for rapid assessment of infection. Transactions of the British Mycological Society 55:158-161. |
|
Saïdou A, Etèka AC, Amadji GL, Hougni D-GJM, Kossou D (2012). Dynamique des champignons endomycorhiziens dans les jachères manioc sur sols ferrugineux tropicaux du Centre Bénin. Annales des Sciences Agronomiques 16(2):215-228. |
|
Sano SM, Abbott LK, Solaiman MZ, Robson AD (2002). Influence of liming, inoculum level and inoculum placement on root colonization of subterranean clover. Mycorrhiza 12:285-290. |
|
Scheublin TR, Ridgway KP, Young JPW, van der Heijden MGA (2004). Nonlegumes, Legumes, and Root Nodules Harbor Different Arbuscular Mycorrhizal Fungal Communities. Applied Environmental Microbiology 70(10):6240-6246. |
|
Smith SE, Read DJ (2008). Mycorrhizal Symbiosis. Academic 787 P. |
|
Subramanian KS, Santhanakrishnan P, Balasubramanian P (2006). Responses of field grown tomato plants to arbuscular mycorrhizal fungal colonization under varying intensities of drought stress. Scientia Horticulturae 107:245-253. |
|
Tchabi A, Coyne D, Hountondji F, Lawouin L, Wiemken A, Oehl F (2008). Arbuscular mycorrhizal fungal communities in sub-Saharan savannas of Benin, West Africa, as affected by agricultural land use intensity and ecological zone. Mycorrhiza 18:181-195. |
|
Touré Y, Koné M, Silué YS, Kouadio J (2013). Prospection collecte et caractérisation agromorphologique des morphotypes de voandzou [Vigna Subterranea (L.) Verdcourt (Fabaceae)] de la zone savanicole en Côte d'Ivoire. European Scientific Journal 9(24):1857-7881. |
|
Trouvelot A, Kouch J, Gianinazzi-Pearson V (1986). Les mycorhizes, physiologie et génétique. INRA, Dijon pp. 217-221. |
|
Usharani G, Sujitha D, Sivasakthi S, Saranraj P (2014). Effect of arbuscular Mycorrhizal (AM) fungi (Glomus fasciculatum L.) for the improvement of growth and yield of maize (Zea mays L.). Central European Journal of Experimental Biology 3(2):30-35. |
|
Vertès F, Jeuffroy MH, Louarn G, Voisin AS, Justes E (2015). Légumineuses et prairies temporaires : des fournitures d'azote pour les rotations. Fourrages 223:221-232. |
Copyright © 2025 Author(s) retain the copyright of this article.
This article is published under the terms of the Creative Commons Attribution License 4.0