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- W2139607710 abstract "Arbuscular mycorhizal fungi (AMF) produce a glycoprotein (glomalin) important for soil structure, fertility and therefore plant nutrition which can be used to evaluate the impact of agricul tural practices on soil quality across many land use syst ems. In the present study, its influence was invest igated on soil fertility and aggregation in 3 different la nd use systems of the humid forest zone of southern Cameroon. Soils were sampled at 10 cm depth from 03 native forest, 03 fallow and 03 continuous growing fields systems at Metet (South Cameroon) for the determination of easily extractable glomalin (EEG), total glomalin (TG), carbon (C), nitrogen (N ) and soil water stable aggregate of 1-2 mm diamete r (WSA 1-2mm ). Results showed that both EEG and TG concentrations significantly decreased (P < 0.01) from the forest to the growing field, via the fallo w system. The rate of EEG decrease was 29.82 % and 38.35 % in the fallow and the growing field system compared to the forest system, respectively. For TG , the decrease rate was 16.65 % to 46.04 % for the fa llow and the growing field system compare to the forest system respectively; while C, N, and organic matter (OM) did not changed significantly. The proportion of C, N and OM were 93.6 %, 88.3 %, 93.7 % for the growing field system compared to the forest system respectively. The WSA 1-2mm decreased from the forest to fallow and growing fi eld systems, with respective rates of 19.69% and 32.81 %. There was high positive correlation between C, N and EEG (r 2 = 0.76, 0.55; P < 0.01), suggesting the possible im plication of glomalin to soil stock of C and N." @default.
- W2139607710 created "2016-06-24" @default.
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- W2139607710 date "2013-12-20" @default.
- W2139607710 modified "2023-10-01" @default.
- W2139607710 title "GLOMALIN, CARBON, NITROGEN AND SOIL AGGREGATE STABILITY AS AFFECTED BY LAND USE CHANGES IN THE HUMID FOREST ZONE IN SOUTH CAMEROON" @default.
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- W2139607710 doi "https://doi.org/10.15666/aeer/1104_581592" @default.
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