Literature DB >> 25171761

The toolbox of Trichoderma spp. in the biocontrol of Botrytis cinerea disease.

Christine M F Vos1, Kaat De Cremer, Bruno P A Cammue, Barbara De Coninck.   

Abstract

Botrytis cinerea is a necrotrophic fungal pathogen causing disease in many plant species, leading to economically important crop losses. So far, fungicides have been widely used to control this pathogen. However, in addition to their detrimental effects on the environment and potential risks for human health, increasing fungicide resistance has been observed in the B. cinerea population. Biological control, that is the application of microbial organisms to reduce disease, has gained importance as an alternative or complementary approach to fungicides. In this respect, the genus Trichoderma constitutes a promising pool of organisms with potential for B. cinerea control. In the first part of this article, we review the specific mechanisms involved in the direct interaction between the two fungi, including mycoparasitism, the production of antimicrobial compounds and enzymes (collectively called antagonism), and competition for nutrients and space. In addition, biocontrol has also been observed when Trichoderma is physically separated from the pathogen, thus implying an indirect systemic plant defence response. Therefore, in the second part, we describe the consecutive steps leading to induced systemic resistance (ISR), starting with the initial Trichoderma-plant interaction and followed by the activation of downstream signal transduction pathways and, ultimately, the defence response resulting in ISR (ISR-prime phase). Finally, we discuss the ISR-boost phase, representing the effect of ISR priming by Trichoderma spp. on plant responses after additional challenge with B. cinerea.
© 2014 BSPP AND JOHN WILEY & SONS LTD.

Entities:  

Keywords:  biological control; grey mould; induced systemic resistance; transcriptomics

Mesh:

Substances:

Year:  2014        PMID: 25171761      PMCID: PMC6638538          DOI: 10.1111/mpp.12189

Source DB:  PubMed          Journal:  Mol Plant Pathol        ISSN: 1364-3703            Impact factor:   5.663


  17 in total

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3.  Circadian oscillations in Trichoderma atroviride and the role of core clock components in secondary metabolism, development, and mycoparasitism against the phytopathogen Botrytis cinerea.

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9.  Transcriptome reprogramming, epigenetic modifications and alternative splicing orchestrate the tomato root response to the beneficial fungus Trichoderma harzianum.

Authors:  Monica De Palma; Maria Salzano; Nunzio D'Agostino; Marina Tucci; Clizia Villano; Riccardo Aversano; Matteo Lorito; Michelina Ruocco; Teresa Docimo; Anna Lisa Piccinelli
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10.  Design of Fungal Co-Cultivation Based on Comparative Metabolomics and Bioactivity for Discovery of Marine Fungal Agrochemicals.

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