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Antagonism of Pseudomonas sp. EMM-1 and its potential as biocontrol agent

Joint Conference International Conference on Environmental Microbiology and Microbial Ecology & International Conference on Ecology and Ecosystems

Catherine Cesa-Luna, Joel de la Cruz-Enriquez, Ana Laura Hernandez-Tenorio, Fernando Xicale-Nava, Yolanda Elizabeth Morales-Garcia, Rocio Perez-y-Terron, Antonino Baez-Rogelio, Jesus Munoz-Rojas and Veronica Quintero-Hernandez

Beneme?rita Universidad Auto?noma de Puebla, Mexico

Posters & Accepted Abstracts: J Ecosyst Ecography

DOI: 10.4172/2157-7625-C1-030

Abstract
Bacteria may exhibit antagonistic interactions to compete for space and nutrients in their habitat. This competition has been mainly evaluated by double-layer agar and simultaneous inhibition assays. The best known antagonistic bacteria are Enterococcus, Lactococcus, Streptomyces, Bacillus, Pseudomonas, Klebsiella, Escherichia and Burkholderia due to their potential to produce inhibitory substances such as broad-spectrum antibiotics, organic acids, siderophores, antifungal and bacteriocins. Our study model, Pseudomonas sp. EMM-1, is a Gram-negative bacterium isolated from contaminated soil highly competitive due to the production of one or more inhibitory substances. It has been demonstrated its antimicrobial activity against diverse beneficial and pathogenic microorganisms including the genera Bradyrhizobium, Azotobacter, Staphylococcus, Streptococcus, Klebsiella and Burkholderia; as well as the phytopathogenic fungi Pantoea and Fusarium. In this work the ability of Pseudomonas sp. EMM-1 to inhibit diverse fungi isolated from soil and plants with fungal diseases, such as Aspergillum and Fusarium was verified by the double-layer agar assay, leading us to assume its potential as biocontrol agent.
Biography

Catherine Cesa-Luna has completed her bachelor’s degree in Clinical Chemistry in 2012 from Universidad Veracruzana, México and obtained her master’s degree in Microbiologic Sciences (Medical Microbiology) in 2016 at the Beneme?rita Universidad Auto?noma de Puebla, Mexico; where she is currently pursuing her Ph.D in microbiology. She is evaluating the antimicrobial activity of synthetic IsCT-like peptides derived from scorpion venoms on bacteria of clinical interest and also working on the purification and identification of compounds related to the activity of the inhibitory substance produced by Pseudomonas sp. EMM-1.

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