Arbuscular-mycorrhizal fungi, rhizobia and Metarhizium anisopliae enhance P, N, Mg, K and Ca accumulatons in fields grown cowpea

The concentrations ofP, N, K, Mg, Cain cowpea (Vigna unguiculata (L.) Walp.) roots and shoots were assessed at 45 Days After Planting (DAP) in inoculated and uninoculated plants at sowing with rhizobia and Arbuscular-Mycorrhizal Fungi (AMF). Those of harvested seeds from inoculated and uninoculated plants at sowing or sprayed and unsprayed plants at flowering with Metarhizium anisopliae were also assessed. Field trials were carried out in a complete Randomized Block Design with four treatments, in the Sudano-Sahelian (zone I), Guinea-Savannah (zone II), monomodal and bimodal hlllIlid-forest rainfall (zone IV and V) of Cameroon. The contributions of rhizobia and AMF to cowpea shoots and roots nutrients uptake at 45 DAP significantly accOlmted for up to 17% for total N, 52% for available P, 19% for Ca, 55% for Mg, 46% for K. Compared to the control, AMF+rhizobia, M. anisopliae, AMF+rhizobia and M. anisopliae significantly increased (p ~ 0.04) the N, P, Ca, Mg and K seed concentrations in zone-I (2000 and 2001), zone-II (1999), zone-IV (2004) and zone-V (1999 and 2001) at harvest. The two symbionts and M. anisopliae almost had the same influence on plant nutrient uptake within agro ecological zones. These results demonstrate the dependency of cowpea on microbial inoculants for nutrient acclUllulations in cowpea plants. However, more work still need to be camed out to investigate on the mechanisms by which M. anisopliae contributes to the increment of nutrient uptake in harvested cowpea seeds.

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Main Authors: Ngakou, A., Nwaga, D., Nebane, C.L.N., Ntonifor, N.N., Tamo, Manuele, Parh, I.A.
Format: Journal Article biblioteca
Language:English
Published: 2007
Subjects:arbuscular mycorrhiza, fungi, cowpeas, inoculation, metarhizium anisopliae, rhizobia,
Online Access:https://hdl.handle.net/10568/92545
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spelling dig-cgspace-10568-925452023-02-15T07:17:27Z Arbuscular-mycorrhizal fungi, rhizobia and Metarhizium anisopliae enhance P, N, Mg, K and Ca accumulatons in fields grown cowpea Ngakou, A. Nwaga, D. Nebane, C.L.N. Ntonifor, N.N. Tamo, Manuele Parh, I.A. arbuscular mycorrhiza fungi cowpeas inoculation metarhizium anisopliae rhizobia The concentrations ofP, N, K, Mg, Cain cowpea (Vigna unguiculata (L.) Walp.) roots and shoots were assessed at 45 Days After Planting (DAP) in inoculated and uninoculated plants at sowing with rhizobia and Arbuscular-Mycorrhizal Fungi (AMF). Those of harvested seeds from inoculated and uninoculated plants at sowing or sprayed and unsprayed plants at flowering with Metarhizium anisopliae were also assessed. Field trials were carried out in a complete Randomized Block Design with four treatments, in the Sudano-Sahelian (zone I), Guinea-Savannah (zone II), monomodal and bimodal hlllIlid-forest rainfall (zone IV and V) of Cameroon. The contributions of rhizobia and AMF to cowpea shoots and roots nutrients uptake at 45 DAP significantly accOlmted for up to 17% for total N, 52% for available P, 19% for Ca, 55% for Mg, 46% for K. Compared to the control, AMF+rhizobia, M. anisopliae, AMF+rhizobia and M. anisopliae significantly increased (p ~ 0.04) the N, P, Ca, Mg and K seed concentrations in zone-I (2000 and 2001), zone-II (1999), zone-IV (2004) and zone-V (1999 and 2001) at harvest. The two symbionts and M. anisopliae almost had the same influence on plant nutrient uptake within agro ecological zones. These results demonstrate the dependency of cowpea on microbial inoculants for nutrient acclUllulations in cowpea plants. However, more work still need to be camed out to investigate on the mechanisms by which M. anisopliae contributes to the increment of nutrient uptake in harvested cowpea seeds. 2007 2018-05-14T14:53:48Z 2018-05-14T14:53:48Z Journal Article Ngakou, A., Nwaga, D., Nebane, C.L.N., Ntonifor, N.N., Tamò, M. & Parh, I.A. (2007). Arbuscular-mycorrhizal fungi, rhizobia and Metarhizium anisopliae enhance P, N, Mg, K, and Ca accumulations in fields grown cowpea. Journal of Plant Science, 2, 518-529. 1816-4951 https://hdl.handle.net/10568/92545 en Limited Access 518-529 Journal of Plant Sciences
institution CGIAR
collection DSpace
country Francia
countrycode FR
component Bibliográfico
access En linea
databasecode dig-cgspace
tag biblioteca
region Europa del Oeste
libraryname Biblioteca del CGIAR
language English
topic arbuscular mycorrhiza
fungi
cowpeas
inoculation
metarhizium anisopliae
rhizobia
arbuscular mycorrhiza
fungi
cowpeas
inoculation
metarhizium anisopliae
rhizobia
spellingShingle arbuscular mycorrhiza
fungi
cowpeas
inoculation
metarhizium anisopliae
rhizobia
arbuscular mycorrhiza
fungi
cowpeas
inoculation
metarhizium anisopliae
rhizobia
Ngakou, A.
Nwaga, D.
Nebane, C.L.N.
Ntonifor, N.N.
Tamo, Manuele
Parh, I.A.
Arbuscular-mycorrhizal fungi, rhizobia and Metarhizium anisopliae enhance P, N, Mg, K and Ca accumulatons in fields grown cowpea
description The concentrations ofP, N, K, Mg, Cain cowpea (Vigna unguiculata (L.) Walp.) roots and shoots were assessed at 45 Days After Planting (DAP) in inoculated and uninoculated plants at sowing with rhizobia and Arbuscular-Mycorrhizal Fungi (AMF). Those of harvested seeds from inoculated and uninoculated plants at sowing or sprayed and unsprayed plants at flowering with Metarhizium anisopliae were also assessed. Field trials were carried out in a complete Randomized Block Design with four treatments, in the Sudano-Sahelian (zone I), Guinea-Savannah (zone II), monomodal and bimodal hlllIlid-forest rainfall (zone IV and V) of Cameroon. The contributions of rhizobia and AMF to cowpea shoots and roots nutrients uptake at 45 DAP significantly accOlmted for up to 17% for total N, 52% for available P, 19% for Ca, 55% for Mg, 46% for K. Compared to the control, AMF+rhizobia, M. anisopliae, AMF+rhizobia and M. anisopliae significantly increased (p ~ 0.04) the N, P, Ca, Mg and K seed concentrations in zone-I (2000 and 2001), zone-II (1999), zone-IV (2004) and zone-V (1999 and 2001) at harvest. The two symbionts and M. anisopliae almost had the same influence on plant nutrient uptake within agro ecological zones. These results demonstrate the dependency of cowpea on microbial inoculants for nutrient acclUllulations in cowpea plants. However, more work still need to be camed out to investigate on the mechanisms by which M. anisopliae contributes to the increment of nutrient uptake in harvested cowpea seeds.
format Journal Article
topic_facet arbuscular mycorrhiza
fungi
cowpeas
inoculation
metarhizium anisopliae
rhizobia
author Ngakou, A.
Nwaga, D.
Nebane, C.L.N.
Ntonifor, N.N.
Tamo, Manuele
Parh, I.A.
author_facet Ngakou, A.
Nwaga, D.
Nebane, C.L.N.
Ntonifor, N.N.
Tamo, Manuele
Parh, I.A.
author_sort Ngakou, A.
title Arbuscular-mycorrhizal fungi, rhizobia and Metarhizium anisopliae enhance P, N, Mg, K and Ca accumulatons in fields grown cowpea
title_short Arbuscular-mycorrhizal fungi, rhizobia and Metarhizium anisopliae enhance P, N, Mg, K and Ca accumulatons in fields grown cowpea
title_full Arbuscular-mycorrhizal fungi, rhizobia and Metarhizium anisopliae enhance P, N, Mg, K and Ca accumulatons in fields grown cowpea
title_fullStr Arbuscular-mycorrhizal fungi, rhizobia and Metarhizium anisopliae enhance P, N, Mg, K and Ca accumulatons in fields grown cowpea
title_full_unstemmed Arbuscular-mycorrhizal fungi, rhizobia and Metarhizium anisopliae enhance P, N, Mg, K and Ca accumulatons in fields grown cowpea
title_sort arbuscular-mycorrhizal fungi, rhizobia and metarhizium anisopliae enhance p, n, mg, k and ca accumulatons in fields grown cowpea
publishDate 2007
url https://hdl.handle.net/10568/92545
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