Identification of a New Alcaligenes faecalis Strain MOR02 and Assessment of Its Toxicity and Pathogenicity to Insects

We report the isolation of a bacterium from Galleria mellonella larva and its identification using genome sequencing and phylogenomic analysis. This bacterium was named Alcaligenes faecalis strain MOR02. Microscopic analyses revealed that the bacteria are located in the esophagus and intestine of th...

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Published in:BioMed research international Vol. 2015; no. 2015; pp. 1 - 10
Main Authors: Ortíz-Hernández, Laura, Gaytán-Colín, Paul, Dantán-González, Edgar, Sánchez-Rodríguez, Federico, Guillén-Solís, Gabriel, Martínez-Garduño, Felipe, Hernández-Mendoza, Armando, Martínez-Ocampo, Fernando, Obregón-Barboza, Verónica, Mendoza-Mejía, Ared, Quiroz-Castañeda, Rosa Estela, Peña-Chora, Guadalupe
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Published: Cairo, Egypt Hindawi Publishing Corporation 01-01-2015
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Abstract We report the isolation of a bacterium from Galleria mellonella larva and its identification using genome sequencing and phylogenomic analysis. This bacterium was named Alcaligenes faecalis strain MOR02. Microscopic analyses revealed that the bacteria are located in the esophagus and intestine of the nematodes Steinernema feltiae, S. carpocapsae, and H. bacteriophora. Using G. mellonella larvae as a model, when the larvae were injected with 24,000 CFU in their hemocoel, more than 96% mortality was achieved after 24 h. Additionally, toxicity assays determined that 1 μg of supernatant extract from A. faecalis MOR02 killed more than 70% G. mellonella larvae 96 h after injection. A correlation of experimental data with sequence genome analyses was also performed. We discovered genes that encode proteins and enzymes that are related to pathogenicity, toxicity, and host/environment interactions that may be responsible for the observed phenotypic characteristics. Our data demonstrates that the bacteria are able to use different strategies to colonize nematodes and kill insects to their own benefit. However, there remains an extensive group of unidentified microorganisms that could be participating in the infection process. Additionally, a nematode-bacterium association could be established probably as a strategy of dispersion and colonization.
AbstractList We report the isolation of a bacterium from Galleria mellonella larva and its identification using genome sequencing and phylogenomic analysis. This bacterium was named Alcaligenes faecalis strain MOR02. Microscopic analyses revealed that the bacteria are located in the esophagus and intestine of the nematodes Steinernema feltiae, S. carpocapsae, and H. bacteriophora. Using G. mellonella larvae as a model, when the larvae were injected with 24,000 CFU in their hemocoel, more than 96% mortality was achieved after 24 h. Additionally, toxicity assays determined that 1 μg of supernatant extract from A. faecalis MOR02 killed more than 70% G. mellonella larvae 96 h after injection. A correlation of experimental data with sequence genome analyses was also performed. We discovered genes that encode proteins and enzymes that are related to pathogenicity, toxicity, and host/environment interactions that may be responsible for the observed phenotypic characteristics. Our data demonstrates that the bacteria are able to use different strategies to colonize nematodes and kill insects to their own benefit. However, there remains an extensive group of unidentified microorganisms that could be participating in the infection process. Additionally, a nematode-bacterium association could be established probably as a strategy of dispersion and colonization.
We report the isolation of a bacterium from Galleria mellonella larva and its identification using genome sequencing and phylogenomic analysis. This bacterium was named Alcaligenes faecalis strain MOR02. Microscopic analyses revealed that the bacteria are located in the esophagus and intestine of the nematodes Steinernema feltiae, S. carpocapsae , and H. bacteriophora . Using G. mellonella larvae as a model, when the larvae were injected with 24,000 CFU in their hemocoel, more than 96% mortality was achieved after 24 h. Additionally, toxicity assays determined that 1  μ g of supernatant extract from A. faecalis MOR02 killed more than 70% G. mellonella larvae 96 h after injection. A correlation of experimental data with sequence genome analyses was also performed. We discovered genes that encode proteins and enzymes that are related to pathogenicity, toxicity, and host/environment interactions that may be responsible for the observed phenotypic characteristics. Our data demonstrates that the bacteria are able to use different strategies to colonize nematodes and kill insects to their own benefit. However, there remains an extensive group of unidentified microorganisms that could be participating in the infection process. Additionally, a nematode-bacterium association could be established probably as a strategy of dispersion and colonization.
We report the isolation of a bacterium from Galleria mellonella larva and its identification using genome sequencing and phylogenomic analysis. This bacterium was named Alcaligenes faecalis strain MOR02. Microscopic analyses revealed that the bacteria are located in the esophagus and intestine of the nematodes Steinernema feltiae, S. carpocapsae , and H. bacteriophora . Using G. mellonella larvae as a model, when the larvae were injected with 24,000 CFU in their hemocoel, more than 96% mortality was achieved after 24 h. Additionally, toxicity assays determined that 1 mu g of supernatant extract from A. faecalis MOR02 killed more than 70% G. mellonella larvae 96 h after injection. A correlation of experimental data with sequence genome analyses was also performed. We discovered genes that encode proteins and enzymes that are related to pathogenicity, toxicity, and host/environment interactions that may be responsible for the observed phenotypic characteristics. Our data demonstrates that the bacteria are able to use different strategies to colonize nematodes and kill insects to their own benefit. However, there remains an extensive group of unidentified microorganisms that could be participating in the infection process. Additionally, a nematode-bacterium association could be established probably as a strategy of dispersion and colonization.
Audience Academic
Author Sánchez-Rodríguez, Federico
Guillén-Solís, Gabriel
Dantán-González, Edgar
Peña-Chora, Guadalupe
Hernández-Mendoza, Armando
Ortíz-Hernández, Laura
Gaytán-Colín, Paul
Mendoza-Mejía, Ared
Obregón-Barboza, Verónica
Quiroz-Castañeda, Rosa Estela
Martínez-Garduño, Felipe
Martínez-Ocampo, Fernando
AuthorAffiliation 1 Centro de Investigación en Biotecnología, Universidad Autónoma del Estado de Morelos, 62210 Cuernavaca, MOR, Mexico
3 Instituto de Biotecnología, Universidad Nacional Autónoma de México, 62210 Cuernavaca, MOR, Mexico
2 Facultad de Ciencias, Universidad Autónoma del Estado de Morelos, 62210 Cuernavaca, MOR, Mexico
4 Centro de Investigaciones Biológicas, Universidad Autónoma del Estado de Morelos, 62210 Cuernavaca, MOR, Mexico
AuthorAffiliation_xml – name: 3 Instituto de Biotecnología, Universidad Nacional Autónoma de México, 62210 Cuernavaca, MOR, Mexico
– name: 1 Centro de Investigación en Biotecnología, Universidad Autónoma del Estado de Morelos, 62210 Cuernavaca, MOR, Mexico
– name: 2 Facultad de Ciencias, Universidad Autónoma del Estado de Morelos, 62210 Cuernavaca, MOR, Mexico
– name: 4 Centro de Investigaciones Biológicas, Universidad Autónoma del Estado de Morelos, 62210 Cuernavaca, MOR, Mexico
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Copyright Copyright © 2015 Rosa Estela Quiroz-Castañeda et al.
COPYRIGHT 2015 John Wiley & Sons, Inc.
Copyright © 2015 Rosa Estela Quiroz-Castañeda et al. Rosa Estela Quiroz-Castañeda et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
Copyright © 2015 Rosa Estela Quiroz-Castañeda et al. 2015
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Snippet We report the isolation of a bacterium from Galleria mellonella larva and its identification using genome sequencing and phylogenomic analysis. This bacterium...
We report the isolation of a bacterium from Galleria mellonella larva and its identification using genome sequencing and phylogenomic analysis. This bacterium...
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SubjectTerms Alcaligenes faecalis
Alcaligenes faecalis - genetics
Alcaligenes faecalis - isolation & purification
Alcaligenes faecalis - pathogenicity
Animals
Bacteria
Bacteriology
Biological Products - pharmacology
Deoxyribonucleic acid
DNA
DNA sequencing
Enzymes
Galleria mellonella
Genetic aspects
Genomes
Health aspects
Host-bacteria relationships
Larva - drug effects
Larva - microbiology
Maximum likelihood method
Methods
Moths - drug effects
Moths - microbiology
Motility
Nematoda
Nucleotide sequencing
Observations
Pest Control, Biological - methods
Phylogenetics
Phylogeny
Proteins
Proteobacteria
Servers
Steinernema feltiae
Toxicity
Title Identification of a New Alcaligenes faecalis Strain MOR02 and Assessment of Its Toxicity and Pathogenicity to Insects
URI https://search.emarefa.net/detail/BIM-1055950
https://dx.doi.org/10.1155/2015/570243
https://www.ncbi.nlm.nih.gov/pubmed/25667924
https://www.proquest.com/docview/1650071230
https://search.proquest.com/docview/1654701119
https://search.proquest.com/docview/1660418489
https://pubmed.ncbi.nlm.nih.gov/PMC4312618
Volume 2015
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