<i>Trichoderma asperellum</i> and <i>T. asperelloides</i>: Comparative Genomic Study for Genes Implicated in Biocontrol and Biofertilizer Activities. [PDF]
Ismaiel A, Maul J, Millner P.
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Functional Study of the Chitinase <i>CaChi93</i> Gene from the Mycoparasitic <i>Cladosporium</i> sp. SYC23. [PDF]
Chen C +6 more
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Beyond multilocus barcoding: harnessing phylogenomics and genome mining for next-generation Trichoderma-based bioproducts. [PDF]
Atta N, Fahmi AI, Abdel-Lateif KS.
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Protein QID74 protects the cell wall of <i>Trichoderma</i> from degradation caused by its own chitinase, which lacks a carbohydrate-binding module. [PDF]
Deng J-J +7 more
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Secondary Metabolites of Mycoparasitic Fungi
Verena Speckbacher, Susanne Zeilinger
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In-vitro evaluation of selected native <i>Trichoderma</i> species for management of <i>Pyricularia oryzae</i>. [PDF]
Nyakeko NF, Madege RR, Kilasi NL.
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Molecular Mechanisms and Metabolic Responses in the Biological Antagonism Between <i>Trichoderma harzianum</i> and <i>Fusarium oxysporum</i>. [PDF]
Chen T +7 more
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Microbiome and plant relationship: a symbiosis against phytopathogens. [PDF]
Zholdasbek A +11 more
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Biocontrol strategies for fungal diseases of <i>Ganoderma lucidum</i>: from antagonistic microbes and synthetic communities to intelligent technologies. [PDF]
Chang X +6 more
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Microbial biocontrol agents and the rhizosphere microbiome: integrating ecological function and climate resilience in sustainable agriculture. [PDF]
Iqbal M.
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