- Brito, E. M. S., Martínez-Aldape, P. A., Toscano-Alaniz, S. L., Caretta, C. A., Martínez-Ramírez, M. J., Martínez-Ramírez, R. E., Sandoval-Vergara, M. E., Concha-Guerrero, S. I., Goñi-Urriza, M., Serafín-Muñoz, A. H., Ramírez-Valdespino C. A., Guyoneaud, R. (2025). Mixing of Two Microbial Consortia in the Search for Stimulating Chromium Depletion. International Journal of Microbiology, 2025(1), 8555038. https://doi.org/10.1155/ijm/8555038.
|
- Ramírez-Valdespino Claudia A., Morales-García Marlyn, Herrera-Pérez Guillermo, Romero-Contreras Yordan J., García-Mireles Enrique, Salas-Leiva Joan, González-Chávez Susana, Tarango-Rivero Socorro, Orrantia-Borunda Erasmo. Exploring the impact of copper oxide nanoparticles on the biocontrol activity and plant growth promotion of Trichoderma asperellum. Journal of Hazardous Materials Letters, 100147. https://doi.org/10.1016/j.hazl.2025.100147.
|
- Amézaga-Madrid, P., García-Mireles, E., García-Meléndez, E., Vázquez-Ramírez, A., & Ramírez-Valdespino, C. A.* (2025). Fe-based nanostructured particles affect the biocontrol activity of Trichoderma species by inducing their effector-like and mycoparasitism-associated genes. Chemosphere, 371, 144047. http://doi.org./10.1016/j.chemosphere.2024.144047
|
- Herrera Pérez, G. M., Castellano, L. E., & Ramírez Valdespino, C. A. (2024). Trichoderma and mycosynthesis of metal nanoparticles: role of their secondary metabolites. Journal of Fungi, 10(7), 443. https://doi.org/10.3390/jof10070443.
|
- Tarango-Rivero, S. H., Ávila-Quezada, G. D., Jacobo-Cuellar, J. L., Ramírez-Valdespino, C. A., Orrantia-Borunda, E., Rodríguez-Heredia, R., & Olivas-Tarango, A. L. (2022). Chelated zinc and beneficial microorganisms: A sustainable fertilization option for pecan production. Revista Chapingo. Serie horticultura, 28(3), 145-159. https://doi.org/10.5154/r.rchsh.2022.01.001.
|
- Balderrama-González, A. S., Piñón-Castillo, H. A., Ramírez-Valdespino, C. A., Landeros-Martínez, L. L., Orrantia-Borunda, E., & Esparza-Ponce, H. E. (2021). Antimicrobial resistance and inorganic nanoparticles. International journal of molecular sciences, 22(23), 12890. https://doi.org/10.3390/ijms222312890.
|
- Ramírez-Valdespino, C. A., & Orrantia-Borunda, E. (2021). Trichoderma and nanotechnology in sustainable agriculture: a review. Frontiers in Fungal Biology, 2, 764675. 10.3389/ffunb.2021.764675.
|
- Romero-Contreras, Y. J., Ramírez-Valdespino, C. A., Guzmán-Guzmán, P., Macías-Segoviano, J. I., Villagómez-Castro, J. C., & Olmedo-Monfil, V. (2019). Tal6 from Trichoderma atroviride is a LysM effector involved in mycoparasitism and plant association. Frontiers in Microbiology, 10, 2231. https://doi.org/10.3389/fmicb.2019.02231.
|
- Ramírez-Valdespino, C. A., Casas-Flores, S., & Olmedo-Monfil, V. (2019). Trichoderma as a model to study effector-like molecules. Frontiers in microbiology, 10, 1030. https://doi.org/10.3389/fmicb.2019.01030.
|
- Ramírez-Valdespino, C. A., Porras-Troncoso, M. D., Corrales-Escobosa, A. R., Wrobel, K., Martínez-Hernández, P., & Olmedo-Monfil, V. (2018). Functional characterization of TvCyt2, a member of the p450 monooxygenases from Trichoderma virens relevant during the association with plants and mycoparasitism. Molecular Plant-Microbe Interactions, 31(3), 289-298. https://doi.org/10.1094/MPMI-01-17-0015-R.
|