Las bacterias simbiontes de los nematodos entomopatógenos como fuente de nuevos antibióticos

  1. VICENTE-DÍEZ, I. 1
  2. VAQUERO, E. 1
  3. POU, A. 1
  4. CAMPOS-HERRERA, R. 1
  1. 1 Instituto de Ciencias de la Vid y del Vino (Gobierno de La Rioja, Universidad de La Rioja, CSIC)
Revista:
SEM@foro

ISSN: 2254-4399

Año de publicación: 2022

Número: 74

Páginas: 6-7

Tipo: Artículo

Otras publicaciones en: SEM@foro

Repositorio institucional: lock_openAcceso abierto Editor

Referencias bibliográficas

  • A d e o l u , M . , A l n a j a r , S . , Naushad, S., Gupta, R.S., 2016. Genomebased phylogeny and taxonomy of the ‘Enterobacteriales’: Proposal for enterobacterales ord. nov. divided into the families Enterobacteriaceae, Erwiniaceae fam. nov., Pectobacteriaceae fam. nov., Yersiniaceae fam. nov., Hafniaceae fam. nov., Morgane. Int. J. Syst. Evol. Microbiol. 66, 5575–5599. https://doi.org/10.1099/ijsem.0.001485
  • Flórez, L. V., Biedermann, P.H.W.,Engl, T., Kaltenpoth, M., 2015. Defensive symbioses of animals with prokaryotic andeukaryotic microorganisms. Nat. Prod.Rep. 32, 904–936. https://doi.org/10.1039/c5np00010f
  • Kusakabe, A., Wang, C., Xu, Y.,Molnár, I., Stock, S.P., 2022. Selective toxicity of secondary metabolites from the entomopathogenic bacterium Photorhabdus luminescens sonorensis against plantparasitic nematodes. Microbiol Spectr. 23;10:e0257721. https://doi.org/ 10.1128/spectrum.02577-21
  • Lanois-Nouri, A., Pantel, L., Fu, J., Houard, J., Ogier, J.C., Polikanov, Y.S., Racine, E., Wang, H., Gaudriault, S., Givaudan, A., Gualtieri, M., 2022. The Odilorhabdin Antibiotic Biosynthetic Cluster and Acetyltransferase SelfResistance Locus Are Niche and Species Specific. MBio, e02826-21. https://doi.org/10.1128/MBIO.02826-21
  • Racine, E., Gualtieri, M., 2019.From Worms to Drug Candidate: The Story of Odilorhabdins, a New Class of Antimicrobial Agents. Front. Microbiol. 10. https://doi.org/10.3389/fmicb.2019.02893
  • Sarciaux, M., Pantel, L., Midrier, C., Serri, M., Gerber, C., Marcia de Figueiredo, R., Campagne, J.-M., VillainGuillot, P., Gualtieri, M., Racine, E., 2018. Total Synthesis and Structure–Activity Relationships Study of Odilorhabdins, a New Class of Peptides Showing Potent Antibacterial Activity. J. Med. Chem. 61, 7814–7826. https://doi.org/10.1021/acs. jmedchem.8b00790
  • T o b i a s , N . J . , W o l f f , H . , Djahanschiri, B., Grundmann, F., Kronenwerth, M., Shi, Y.M., Simonyi, S., Grün, P., Shapiro-Ilan, D., Pidot, S.J., Stinear, T.P., Ebersberger, I., Bode, H.B., 2017. Natural product diversity associated with the nematode symbionts Photorhabdus and Xenorhabdus. Nat. Microbiol. 2, 1676–1685. https://doi.org/10.1038/s41564-017-0039-9
  • Vicente-Díez, I., Blanco-Pérez, R., Chelkha, M., Puelles, M., Pou, A., Campos-Herrera, R., 2021a. Exploring the use of entomopathogenic nematodes and the natural products derived from their symbiotic bacteria to control the grapevine moth, Lobesia botrana (Lepidoptera: Tortricidae). Insects 12, 1033. https://doi. org/10.3390/insects12111033
  • Vicente-Díez, I., Blanco-Pérez, R., González-Trujillo, M. del M., Pou, A., Campos-Herrera, R., 2021b. Insecticidal Effect of Entomopathogenic Nematodes and the Cell-Free Supernatant from Their Symbiotic Bacteria against Philaenus spumarius (Hemiptera: Aphrophoridae) Nymphs. Insects 12, 448. https://doi. org/10.3390/insects12050448