2023
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Native Trichoderma isolates from soil and rootstock to Fusarium spp. control and growth promotion of Humulus lupulus L. plantlets. ,
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Vineyard management and physicochemical parameters of soil affect native Trichoderma populations, sources of biocontrol agents against Phaeoacremonium minimum. P ,
2022
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Spores of Trichoderma strains over P. vulgaris beans: Direct effect on insect attacks and indirect effect on agronomic parameters. ,
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Effects of trichothecene production by Trichoderma arundinaceum isolates from bean-field soils on the defense response, growth and development of bean plants (Phaseolus vulgaris). ,
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Novel culture chamber to evaluate in vitro plant-microbe volatile interactions: Effects of Trichoderma harzianum volatiles on wheat plantlets. ,
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Organic and conventional bean pesticides in development of autochthonous Trichoderma strains. ,
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Distribution, function, and evolution of a gene essential for Trichothecene toxin biosynthesis in Trichoderma. Frontiers in Microbiology, 2022, 122, 791641
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Volatile-mediated interactions between Trichoderma harzianum and Acanthoscelides obtectus: A novel in vitro methodology to evaluate the impact of microbial volatile compounds on dry grain storage pests. Biological Control, 2022, 169, 104868
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Effect of cry toxins on Xylotrechus arvicola (Coleoptera: Cerambycidae) larvae. Insects, 2022, 13(1), 27
2021
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Influence of physicochemical characteristics of bean crop soil in Trichoderma spp. development. Agronomy, 2021, 11(2), 274
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The influence of temperature on the growth, sporulation, colonization, and survival of Trichoderma spp. in grapevine pruning wounds. Agronomy, 2021, 11 (9), 1771
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Influence of fungicide application and vine age on Trichoderma diversity as source of biological control agents. Agronomy, 2021, 11(3), 446
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Trichoderma species isolated from hop soils in the Órbigo valley, León, Spain. ,
2020
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Colonization of Vitis vinifera L. by the endophyte Trichoderma sp. strain T154: Biocontrol activity against Phaeoacremonium minimum. Frontiers in plan sciences, 2020, 11:1170
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Toxicity of five Cry proteins against the insect pest Acanthoscelides obtectus (Coleoptera: Chrisomelidae: Bruchinae). Journal of Invertebrate Pathology, 2020, 169:107295
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Evaluation of substrates and additives to Trichoderma harzianum development by qPCR. Agronomy Journal, 2020, 1-7
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Spores of Trichoderma strains sprayed over Acanthoscelides obtectus and Phaseolus vulgaris L. beans: Effects in the biology of the bean weevil. Journal of Stored Products Research, 2020, 88:101666
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Self-inhibitory activity of Trichoderma soluble metabolites and their antifungal effects on Fusarium oxysporum. Journal of Fungi, 2020, 6(3):176
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Toxicity of five Cry proteins against the insect pest Acanthoscelides obtectus (Coleoptera: Chrisomelidae: Bruchinae). Journal of Invertebrate Pathology, 2020, 169:107295
2019
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Insecticidal properties of Ocimum basilicum and Cymbopogon winterianus against Acanthoscelides obtectus, insect pest of the common bean (Phaseolus vulgaris, L.). Insects, 2019, 10(5):151
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Effect of trichodiene synthase encoding gene expression in Trichoderma strains on their effectiveness in the control of Acanthoscelides obtectus. Journal of Stored Products Research 2019, 83:275-280
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Effect of Trichoderma velutinum and Rhizoctonia solani on the metabolome of bean plants (Phaseolus vulgaris L.). International Journal of Molecular Sciences 2019, 20:549
2018
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Effect of deletion of a trichothecene toxin regulatory gene on the secondary metabolism transcriptome of the saprotrophic fungus Trichoderma arundinaceum. Fungal Genetics and Biology, 2018 119:29-46
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Evolution of structural diversity of trichothecenes, a family of toxins produced by plant pathogenic and entomopathogenic fungi. PLoS Pathogens, 2018 14(4):e1006946
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Relevance of the deletion of the: Tatri4 gene in the secondary metabolome of Trichoderma arundinaceum. Organic and Biomolecular Chemistry, 2018 16(16):2955-2965
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Effect of trichodiene production by Trichoderma harzianum on Acanthoscelides obtectus. Journal of Stored Products Research, 2018 77:231-239
2017
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Small concentration of Lippia spp. can help in the control of the bean weevil Acanthoscelides obctetus Say. Planta Medica 2017 4(S 01): S1-S200
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Effect of farnesol production of Trichoderma on the development of bean (Phaseolus vulgaris L.). Phytopathologia Mediterranea, 2017 56(2)347
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Control of Xylotrechus arvicola (Coleoptera: Cerambycidae) larvae population by inoculating Trichoderma spp. in vine Wood. Planta Medica 2017 4(S 01): S1-S200
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In vitro effects of Trichoderma secondary metabolites on Phaeoacremonium aleophilum. Planta Medica 2017 4(S 01): S1-S200
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Control of Acanthoscelides obtectus (Coleoptera: Chrisomelidae: Bruchinae) adults through trichodiene produced by Trichoderma harzianum. Phytopathologia Mediterranea 2017 56 (2): 340-341
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Inhibitory activity of Beauveria bassiana and Trichoderma spp. on the insect pests Xylotrechus arvicola (Coleoptera: Cerambycidae) and Acanthoscelides obtectus (Coleoptera: Chrisomelidae: Bruchinae). Environmental Monitoring and Assessment 2017 189(1):12
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Involvement of the transcriptional coactivator ThMBF1 in the biocontrol activity of Trichoderma harzianum. Frontiers in Microbiology 2017 8: 2273
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Involvement of Trichoderma harzianum Epl-1 protein in the regulation of Botrytis virulence- and tomato defense-related genes. Frontiers in Plant Science 2017 8: 880
2016
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Fumigant toxicity of plant essential oils against Acanthoscelides obtectus (Say) (Coleoptera: Bruchidae), an insect pest in stored bean. Planta Medica 2016. 81: S1-S381
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Insecticidal activity of Trichoderma harzianum against Xylothechus arvicola and Acanthoscelides obtectus inmature stages. Planta Medica (2016). 81: S1-S381
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Effect of farnesol, a compound produced by Trichoderma when growing on bean (Phaseolus vulgaris L.). Planta Medica 2016. 81: S1-S381
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Trichothecenes and aspinolides produced by Trichoderma arundinaceum regulate expression of Botrytis cinerea genes involved in virulence and growth. Environmental Microbiology 2016 18(11): 3991-4004
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Development of a qPCR strategy to select bean genes involved in plant defence response and regulated by the Trichoderma velutinum – Rhizoctonia solani interaction. Frontiers in Plant Science 2016 7: 1109
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Interaction of common bean with Rhizoctonia solani and Trichoderma spp. Annual Report of the Bean Improvement Cooperative 2016 59: 69-70
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Trichothecenes and aspinolides produced by Trichoderma arundinaceum regulate expression of Botrytis cinerea genes involved in virulence and growth. Environmental Microbiology 2016 18(11): 3991-4004
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Botrydial and botcinins produced by Botrytis cinerea regulate the expression of Trichoderma arundinaceum genes involved in trichothecene biosynthesis. Molecular plant pathology 2016 17(7): 1017-1031
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Nitrogen metabolism and growth enhancement in tomato plants challenged with Trichoderma harzianum expressing the Aspergillus nidulans acetamidase amds gene. Frontiers in Microbiology 2016 7: 1182
2015
2014
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Biocontrol of Rhizoctonia solani against Trichoderma spp. membranes and dual culture. Annual Report of the Bean Improvement Cooperative 2014 57: 93-94
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Influence of the isolation Rhizoctonia solani and Trichoderma spp. on germination of bean. Annual Report of the Bean Improvement Cooperative 2014 57: 95-96
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The Cerato-Platanin protein Epl-1 from Trichoderma harzianum is involved in mycoparasitism, plant resistance induction and self cell wall protection. Scientific Reports 2015 5: 17998
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Effects of trichothecene production on the plant defense response and fungal physiology: Overexpression of the Trichoderma arundinaceum tri4 gene in T. harzianum. Applied and Environmental Microbiology 2015 81(18): 6355-6366
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Trichodiene production in a Trichoderma harzianum erg1-silenced strain provides evidence of the importance of the sterol biosynthetic pathway in inducing plant defense-related gene expression. Molecular Plant-Microbe Interactions 2015 28(11): 1181-1197
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Production of trichodiene by Trichoderma harzianum alters the perception of this biocontrol strain by plants and antagonized fungi. Environmental Microbiology 2015 17(8): 2628-2646
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The importance of chorismate mutase in the biocontrol potential of Trichoderma parareesei. Frontiers in Microbiology 2015 6: 01181
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Novel aspinolide production by Trichoderma arundinaceum with a potential role in Botrytis cinerea antagonistic activity and plant defence priming. Environmental Microbiology 2015 17(4): 1103-1118
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Overexpression of erg1 gene in Trichoderma harzianum CECT 2413: effect on the induction of tomato defence-related genes. Journal of applied microbiology 2014 117(3): 812-823
2013
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Relevance of trichothecenes in fungal physiology: Disruption of tri5 in Trichoderma arundinaceum. Fungal Genetics and Biology 2013 53: 22-33
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The contribution of Trichoderma to balancing the costs of plant growth and defense. International Microbiology 2013 16(2): 69-80
2012
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Control biológico de hongos fitopatógenos de alubia con Trichoderma. Tierras (Agricultura) 2012 195: 70-75
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Involvement of Trichoderma trichothecenes in the biocontrol activity and induction of plant defense-related genes. Applied and Environmental Microbiology 2012 78(14): 4856-4868
2011
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Overexpression of the Trichoderma brevicompactum tri5 gene: Effect on the expression of the trichodermin biosynthetic genes and on tomato seedlings. Toxins 2011 3(9): 1220-1232
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Identification of loci and functional characterization of trichothecene biosynthesis genes in filamentous fungi of the genus Trichoderma. Applied and Environmental Microbiology 2011 77(14): 4867-4877
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Functional analysis of the Trichoderma harzianum nox1 gene, encoding an NADPH oxidase, relates production of reactive oxygen species to specific biocontrol activity against Pythium ultimum. Applied and Environmental Microbiology 2011 77(9): 3009-3016
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Overexpression of the trichodiene synthase gene tri5 increases trichodermin production and antimicrobial activity in Trichoderma brevicompactum. Fungal Genetics and Biology 2011 48(3): 285-296
2010
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Biological control of phytopathogenic fungi in bean (Phaseolus vulgaris L.) with Trichoderma atroviride and Trichoderma virens. Annual Report of the Bean Improvement Cooperative 2010 53: 114-115
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Transgenic expression of the Trichoderma harzianum hsp70 gene increases Arabidopsis resistance to heat and other abiotic stresses. Journal of Plant Physiology 2010 167(8): 659-665
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TvDim1 of Trichoderma virens is involved in redox-processes and confers resistance to oxidative stresses. Current Genetics 2010 56(1): 63-73
2009
2008
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Cloning and characterization of the Thcut1 gene encoding a cutinase of Trichoderma harzianum T34. Current Genetics 2008 54(6): 301-312
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Overexpression of a Trichoderma HSP70 gene increases fungal resistance to heat and other abiotic stresses. Fungal Genetics and Biology 2008 45(11): 1506-1513
2007
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The heterologous overexpression of hsp23, a small heat-shock protein gene from Trichoderma virens, confers thermotolerance to T. harzianum. Current Genetics 2007 52(1): 45-53
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Partial silencing of a hydroxy-methylglutaryl-CoA reductase-encoding gene in Trichoderma harzianum CECT 2413 results in a lower level of resistance to lovastatin and lower antifungal activity. Fungal Genetics and Biology 2007 44(4): 269-283
2006
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A comparison of the phenotypic and genetic stability of recombinant Trichoderma spp. generated by protoplast- and Agrobacterium-mediated transformation. Journal of Microbiology 2006 44(4): 383-395
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Generation, annotation and analysis of ESTs from Trichoderma harzianum CECT 2413. BMC Genomics 2006 7: 193
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Detection of peptaibols and partial cloning of a putative peptaibol synthetase gene from T. harzianum CECT 2413. Folia Microbiologica 2006 51(2): 114-120
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ThPTR2, a di/tri-peptide transporter gene from Trichoderma harzianum. Fungal Genetics and Biology 2006 43(4): 234-246
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Cloning and characterization of the erg1 gene of Trichoderma harzianum: Effect of the erg1 silencing on ergosterol biosynthesis and resistance to terbinafine. Fungal Genetics and Biology 2006 43(3): 164-178
2005
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Screening of antimicrobial activities in Trichoderma isolates representing three Trichoderma sections. Mycological Research 2005 109(12): 1397-1406
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Detection of putative peptide synthetase genes in Trichoderma species: Application of this method to the cloning of a gene from T. harzianum CECT 2413. FEMS Microbiology Letters 2005 244(1): 139-148