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Federico di Montefeltro

2003/01/01 by Renata Tyśkiewicz, Artur Nowak, Ewa Ozimek +2 · 7 citations
Agricultural and Biological Sciences · #Mycorrhizal Fungi and Plant Interactions #Nematode management and characterization studies #Plant and Biological Electrophysiology Studies #Plant-Microbe Interactions and Immunity

paper · pdf · doi:10.3390/ijms23042329

openalex publication_date 2003/01/01 · openalex created_date 2016/06/24 · openalex updated_date 2026/05/05

Abstract

Rhizosphere filamentous fungi of the genus <i>Trichoderma</i>, a dominant component of various soil ecosystem mycobiomes, are characterized by the ability to colonize plant roots. Detailed knowledge of the properties of <i>Trichoderma</i>, including metabolic activity and the type of interaction with plants and other microorganisms, can ensure its effective use in agriculture. The growing interest in the application of <i>Trichoderma</i> results from their direct and indirect biocontrol potential against a wide range of soil phytopathogens. They act through various complex mechanisms, such as mycoparasitism, the degradation of pathogen cell walls, competition for nutrients and space, and induction of plant resistance. With the constant exposure of plants to a variety of pathogens, especially filamentous fungi, and the increased resistance of pathogens to chemical pesticides, the main challenge is to develop biological protection alternatives. Among non-pathogenic microorganisms, <i>Trichoderma</i> seems to be the best candidate for use in green technologies due to its wide biofertilization and biostimulatory potential. Most of the species from the genus <i>Trichoderma</i> belong to the plant growth-promoting fungi that produce phytohormones and the 1-aminocyclopropane-1-carboxylate (ACC) deaminase enzyme. In the present review, the current status of <i>Trichoderma</i> is gathered, which is especially relevant in plant growth stimulation and the biocontrol of fungal phytopathogens.

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