Related Experiment Video
Updated: May 20, 2025

A Plate Competition Assay As a Quick Preliminary Assessment of Disease Suppression
Published on: October 28, 2018
Aqueous compost extracts with stabilized biofertilizing microbiota promote plant root growth and drought resilience
R Lerma-Moliz1, J Hu2, J A López-González1
1Unit of Microbiology, Department of Biology and Geology, CITE II-B, Agrifood Campus of International Excellence ceiA3, CIAIMBITAL, University of Almería, 04120 Almería, Spain.
Abstract:
The excessive use of agrochemicals has caused significant negative environmental impacts, highlighting the growing need for more sustainable alternatives. Among these, aqueous composts extracts enable less harmful intensive agricultural practices. The objective of this study was to explore methods for stabilizing the biofertilizing microbiota of compost extracts and to evaluate their effects on drought and oxidative stress. For this, an aqueous extract was prepared from agri-food waste compost by suspending it in water at a 1:5 ratio and incubating the mixture for 14 days at room temperature. The physicochemical properties of the extract were analyzed. In addition, microorganisms associated with the biofertilizing capacity of the extract, which was formulated with various compounds were monitored over the course of one month storage at different temperatures. The bioformulations showing better biofertilizing potential were selected for testing on cucumber seedlings to evaluate their capability for promoting plant growth and alleviating oxidative stress. Additionally, a drought stress test was conducted on grass to evaluate the effect of applying the extract. The results of the physicochemical characterization and bacterial abundance showed a good nutritional composition and a rich microbiota with biofertilizing activity. In terms of microorganism counts under storage conditions, the most stable formulations were those formed by the extract supplemented with 2 % glycerol, as well as the extract without supplement (as extracted). Cucumber seedlings treated with the more stable extracts exhibited enhanced agronomic traits, particularly improved root development, and reduced oxidative stress. The root-promoting effect was also observed in the drought stress test, where grass seedlings subjected to 30 % soil moisture and treated with a combination of the extract with chemical fertilizer presented greater root development (around 5.50 g cm-3) compared to treatments lacking the extracts (around 2-3.30 g cm-3). These results suggest that aqueous compost extracts provide drought resistance and increased root development, offering a promising alternative to conventional mineral fertilization.
More Related Videos
09:04Monitoring Bacterial Colonization and Maintenance on Arabidopsis thaliana Roots in a Floating Hydroponic System
Published on: May 28, 2019
11:57Ecosystem Fabrication EcoFAB Protocols for The Construction of Laboratory Ecosystems Designed to Study Plant-microbe Interactions
Published on: April 10, 2018
Related Concept Videos
Responses to Drought and Flooding
Water and Mineral Acquisition
Adaptations that Reduce Water Loss
Bioremediation
The Roles of Bacteria and Fungi in Plant Nutrition