Otaiku, Ayodele A. (2022) Biofertilizer Impacts | Cassava (Manihot Esculenta Crantz) Cultivation Crop Yield and Regenerative Agriculture. Global Journal of Agricultural Research, 10 (1). pp. 1-90. ISSN 2053-5805(Print), 2053-5813(Online)
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Abstract
Cassava (Manihot Esculenta Crantz) demand by 700 million people and cultivated in 105 countries between Tropic of Cancer and Tropic of Capricorn within 2300m elevations globally
for food security and the cultivation impact on biodiversity require biofertilizer to mitigate climate challenges, crop sustainable development and regenerative agriculture. Nigeria is the world largest producer with a global average yield of 11.80 t/ha, cassava yields can reach 80 t/ha, compared to the current world average yield of just 12.8 t/ha. Biofertilizer solves the traceability problem of chemical farm inputs, suitability and nutrient use efficiency as an integral function of the rhizosphere microbiome via plant microbe interactions for improved soil health quality and crop degradation management. Cassava cultivation with biofertilizer will reduce hydrogen cyanide (HCN) levels in
the crop as an integral bioavailability of soil organic matter and nutrient use efficiency. Plant growth-promoting rhizobacteria (PGPR) in the biofertilizer will ameliorate plant abiotic stress and bio-control diseases management. Easily accessed agrobacterium inoculant in biofertilizer has potential for transgenic cassava cultivar development for improved yield and nutrient biofortification. This book chapter encapsulate the case studies trilogy research article papers on biofertilizer impacts on soil microbiome during cassava cultivation for crop yield, soil health, regenerative agriculture, value chain development, food and nutrition security.
Item Type: | Article |
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Subjects: | S Agriculture > S Agriculture (General) |
Depositing User: | Professor Mark T. Owen |
Date Deposited: | 16 Apr 2022 11:06 |
Last Modified: | 16 Apr 2022 11:06 |
URI: | https://tudr.org/id/eprint/394 |