Rhizobium and Mycorrhizal Fungal Species Improved Soybean Yield Under Drought Stress Conditions
Ozede N. Igiehon, Olubukola O. Babalola

TL;DR
This study shows that using Rhizobium and mycorrhizal fungi together can improve soybean growth and yield under drought conditions, offering a sustainable solution to food insecurity.
Contribution
The study demonstrates the effectiveness of co-inoculation with Rhizobium and mycorrhizal fungi in enhancing soybean drought tolerance and productivity.
Findings
Co-inoculation with Rhizobium spp. and mycorrhizal fungi significantly improved soybean leaf water content and reduced electrolyte leakage under drought stress.
Plants inoculated with R1+R3MY showed the highest spore count and mycorrhization percentage across all water regimes.
R1+R3MY treatment at 40% field capacity promoted soybean growth, pod number, seed number, and seed weight compared to non-inoculated plants.
Abstract
Food insecurity is a serious threat due to the increasing human population particularly in developing countries and may be minimized by the use of microbial inoculants. Also, the problems of excessive use of chemical fertilizers including the fact that most of the fertilizers are relatively non-affordable and that they also contaminate underground and surface water, which can increase the risk of blue baby syndrome in infants and stomach cancer in adults. There is therefore the need to harness a more cost-effective, eco-friendly and beneficial biological agents to improve crops productivity especially under drought conditions. Thus, in this study, the ability of rhizobia species and arbuscular mycorrhizal fungi (AMF) to enhance soybean tolerance to drought stress under water regimens of 100, 70 and 40% field capacity (FC) was investigated. It was observed that co-inoculation of soybean…
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Taxonomy
TopicsLegume Nitrogen Fixing Symbiosis · Mycorrhizal Fungi and Plant Interactions · Nematode management and characterization studies
