A Simple Formula of the Endophytic Trichoderma viride, a Case Study for the Management of Rhizoctonia solani on the Common Bean
Author:
Ghoneem Khalid M.1, Al-Askar Abdulaziz A.2, Saber WesamEldin I. A.3ORCID
Affiliation:
1. Seed Pathology Research Department, Plant Pathology Research Institute, Agricultural Research Center, Giza 12619, Egypt 2. Botany and Microbiology Department, Faculty of Science, King Saud University, Riyadh 11451, Saudi Arabia 3. Microbial Activity Unit, Microbiology Department, Soils, Water and Environment Research Institute, Agricultural Research Center, Giza 12619, Egypt
Abstract
The utilization of beneficial endophytic microorganisms presents a promising and innovative strategy for attaining environmental sustainability and fostering development. The majority of microbial bioagents are unsuitable for preparation in a suitable granular formula, and few are prepared in complicated formulas. In this work, Trichoderma viride was simply prepared in a marketable granular formula to manage Rhizoctonia solani and improve common bean growth. The GC-MS analysis showed several antimicrobial compounds in the fungal filtrate. T. viride was able to suppress the phytopathogenic R. solani in the laboratory. The formula had up to 6 months of shelf-life viability. Under greenhouse conditions, the formula improved plant resistance against R. solani. Moreover, the vegetative plant growth and physiological performance (peroxidase, polyphenol, total phenols, phenylalanine ammonia-lyase, and photosynthetic pigments) of the common bean showed obvious promotion. The formula reduced the disease incidence by 82.68% and increased the yield by 69.28%. This work may be considered a step in the right direction for producing simple bioactive products on a large scale. Moreover, the study’s findings suggest that this method can be considered a novel approach to enhancing plant growth and protection, in addition to reducing costs, improving handling and application, and maintaining fungal viability for enhancing plant growth and protecting against fungal infections.
Funder
National Plan for Science, Technology, and Innovation
Subject
Paleontology,Space and Planetary Science,General Biochemistry, Genetics and Molecular Biology,Ecology, Evolution, Behavior and Systematics
Reference82 articles.
1. He, D.C., He, M.H., Amalin, D.M., Liu, W., Alvindia, D.G., and Zhan, J. (2021). Biological control of plant diseases: An evolutionary and eco-Economic consideration. Pathogens, 10. 2. Tyśkiewicz, R., Nowak, A., Ozimek, E., and Jaroszuk-Sciseł, J. (2022). Trichoderma: The current status of its application in agriculture for the biocontrol of fungal phytopathogens and stimulation of plant growth. Int. J. Mol. Sci., 23. 3. Potential biocontrol efficiency of Trichoderma species against oomycete pathogens;Liu;Front. Microbiol.,2022 4. Guzmán-Guzmán, P., Kumar, A., de los Santos-Villalobos, S., Parra-Cota, F.I., Orozco-Mosqueda, M.d.C., Fadiji, A.E., Hyder, S., Babalola, O.O., and Santoyo, G. (2023). Trichoderma species: Our best fungal allies in the biocontrol of plant diseases—A review. Plants, 12. 5. Plant defense activation and management of tomato root rot by a chitin-fortified Trichoderma/Hypocrea formulation;Solanki;Phytoparasitica,2011
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