
Revista Científica Ciencia y Método | Vol.04 | Núm.01 | Ene–Mar | 2026 | www.revistacym.com pág. 152
en fabáceas forrajeras y arbustivas y uso como bioestimulante. Revista
Científica Zambos, 4(1), 30-44. https://doi.org/10.69484/rcz/v4/n1/74
Diniz, G. L., Costa, C. C., Sousa, V. F. de O., Lopes, K. P., Bomfim, M. P., & Santos,
J. B. dos. (2022). Uso de Trichoderma spp e estresse salino na produção de
mudas de melancia. Revista Em Agronegócio e Meio Ambiente, 15(4), 1–16.
https://doi.org/10.17765/2176-9168.2022v15n4e9939
Geng, Y., Chen, S., Lv, P., Li, Y., Li, J., Jiang, F., Wu, Z., Shen, Q., & Zhou, R. (2025).
Positive Role of Trichoderma harzianum in Increasing Plant Tolerance to Abiotic
Stresses: A Review. Antioxidants, 14(7), 807.
https://doi.org/10.3390/antiox14070807
Haj-Amor, Z., Araya, T., Kim, D.-G., Bouri, S., Lee, J., Ghiloufi, W., Yang, Y., Kang, H.,
Jhariya, M. K., Banerjee, A., & Lal, R. (2022). Soil salinity and its associated
effects on soil microorganisms, greenhouse gas emissions, crop yield,
biodiversity and desertification: A review. Science of The Total Environment,
843, 156946. https://doi.org/10.1016/j.scitotenv.2022.156946
Haouhach, S., Karkachi, N., Oguiba, B., Sidaoui, A., Chamorro, I., Kihal, M., & Monte,
E. (2020). Three New Reports of Trichoderma in Algeria: T. atrobrunneum,
(South) T. longibrachiatum (South), and T. afroharzianum (Northwest).
Microorganisms, 8(10), 1455. https://doi.org/10.3390/microorganisms8101455
Herrera-Sánchez, D. J., & Gavilánez-Buñay, T. C. (2023). Estrategias de agricultura
regenerativa para mejorar la salud del suelo. Revista Científica Ciencia Y
Método, 1(2), 15-28. https://doi.org/10.55813/gaea/rcym/v1/n2/12
Hu, G., Zhao, Z., Wei, Y., Hu, J., Zhou, Y., Li, J., & Yang, H. (2025). Trichoderma
asperellum 22043: Inoculation Promotes Salt Tolerance of Tomato Seedlings
Through Activating the Antioxidant System and Regulating Stress-Resistant
Genes. Journal of Fungi, 11(4), 253. https://doi.org/10.3390/jof11040253
Kumar, K., Rathore, S., Kumar, S., Mishra, M., Pandey, S., & Mishra, R. K. (2019).
Effect of salt tolerant Trichoderma spp on growth and nodulation of mungbean
(Vigna radiata L.). In Journal of Food Legumes (Vol. 32, Issue 4).
Liu, Z., Xu, N., Pang, Q., Khan, R. A. A., Xu, Q., Wu, C., & Liu, T. (2023). A Salt-
Tolerant Strain of Trichoderma longibrachiatum HL167 Is Effective in Alleviating
Salt Stress, Promoting Plant Growth, and Managing Fusarium Wilt Disease in
Cowpea. Journal of Fungi, 9(3), 304. https://doi.org/10.3390/jof9030304
Madala, N., & Nutakki, M. K. (2020). Hot Pepper – History- Health and Dietary Benefits
& Production. International Journal of Current Microbiology and Applied
Sciences, 9(4), 2532–2538. https://doi.org/10.20546/ijcmas.2020.904.303
Moreira-Cantos, E. A., & Mieles-Giler, J. W. (2025). Evaluación de impacto ambiental
en los atractivos turísticos Paseo Lúdico del cantón Montecristi, Manabí,
Ecuador. Revista Científica Ciencia Y Método, 3(3), 229-246.
https://doi.org/10.55813/gaea/rcym/v3/n3/72
Munzón, M., Holguin, B., & Chávez, G. (2022). Agronomic response of the pepper
(Capsicum annuumL) crop to two irrigation conditions. Agroindustrial Science,
12(1), 73–80. https://doi.org/10.17268/agroind.sci.2022.01.09