Results 151 to 160 of about 5,918 (182)
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Protoplasma, 2007
Organelles are known to respond to challenges caused by many stress factors. The morphology of the microtubular cytoskeleton and mitochondria during mutual interaction in coculture of Laccaria laccata with Trichoderma harzianum and T. virens were examined. Hyphae from the interaction region were sampled between 4 and 12 days of growth.
M, Zadworny +3 more
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Organelles are known to respond to challenges caused by many stress factors. The morphology of the microtubular cytoskeleton and mitochondria during mutual interaction in coculture of Laccaria laccata with Trichoderma harzianum and T. virens were examined. Hyphae from the interaction region were sampled between 4 and 12 days of growth.
M, Zadworny +3 more
openaire +2 more sources
Journal of Environmental Science and Health, Part B: Pesticides, Food Contaminants, and Agricultural Wastes, 2006
Iprodione (3-(3,5-dichlorophenyl)-N-isopropyl-2,4-dioxoimidazolidine-1-carboxamide) bio-assayed against fungi Alternaria brassicicola and Sclerotinia sclerotiorum was found to be highly effective for inhibiting these desapers. Inhibition of A. brassicicola was 100% up to the dose of 75 ppm and for S.
Sumitra, Arora, Madhuban, Gopal
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Iprodione (3-(3,5-dichlorophenyl)-N-isopropyl-2,4-dioxoimidazolidine-1-carboxamide) bio-assayed against fungi Alternaria brassicicola and Sclerotinia sclerotiorum was found to be highly effective for inhibiting these desapers. Inhibition of A. brassicicola was 100% up to the dose of 75 ppm and for S.
Sumitra, Arora, Madhuban, Gopal
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Indian Phytopathology, 2020
The root knot nematode, Meloidogyne incognita, is a sedentary endoparasitic plant pathogen with broad host range. It infects variety of crops and causes drastic annual crop yield losses worldwide. Its management is a major concern for sustainable crop production. In the present study, bio-formulations viz.., Purpureocillium lilacinum WP (1 × 108 CFU/g),
Navjot Bawa +2 more
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The root knot nematode, Meloidogyne incognita, is a sedentary endoparasitic plant pathogen with broad host range. It infects variety of crops and causes drastic annual crop yield losses worldwide. Its management is a major concern for sustainable crop production. In the present study, bio-formulations viz.., Purpureocillium lilacinum WP (1 × 108 CFU/g),
Navjot Bawa +2 more
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Bioresource Technology, 2020
Solid-state fermentation using rice husk as substrate with either Beauveria bassiana or Trichoderma harzianum was conducted on batch reactors at laboratory scale to establish optimal conditions for spore production. Time course tests were performed to determine maximum spore production time, which was 7.7 days for Beauveria bassiana and 5.7 days for ...
Arnau Sala +3 more
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Solid-state fermentation using rice husk as substrate with either Beauveria bassiana or Trichoderma harzianum was conducted on batch reactors at laboratory scale to establish optimal conditions for spore production. Time course tests were performed to determine maximum spore production time, which was 7.7 days for Beauveria bassiana and 5.7 days for ...
Arnau Sala +3 more
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Phytoparasitica, 2004
This work was undertaken to determine the effects ofTrichoderma spp. combined with label and sublabel rates of metam sodium on survival ofRhizoctonia solani in soil. Soils were infested with wheat bran preparations ofTrichoderma hamatum Tri-4,T. harzianum Th-58,T. virens Gl-3, andT. viride Ts-1-R3.
D. R. Fravel, J. A. Lewis
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This work was undertaken to determine the effects ofTrichoderma spp. combined with label and sublabel rates of metam sodium on survival ofRhizoctonia solani in soil. Soils were infested with wheat bran preparations ofTrichoderma hamatum Tri-4,T. harzianum Th-58,T. virens Gl-3, andT. viride Ts-1-R3.
D. R. Fravel, J. A. Lewis
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Plant and Soil, 1990
Two biological control agents, Pythium nunn and Trichoderma harzianum isolate T-95, were combined to reduce Pythium damping-off of cucumber in greenhouse experiments lasting 3–4 weeks. T. harzianum T-95, a rhizosphere competent mutant, was applied to seeds and P.
T. C. Paulitz, J. S. Ahmad, R. Baker
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Two biological control agents, Pythium nunn and Trichoderma harzianum isolate T-95, were combined to reduce Pythium damping-off of cucumber in greenhouse experiments lasting 3–4 weeks. T. harzianum T-95, a rhizosphere competent mutant, was applied to seeds and P.
T. C. Paulitz, J. S. Ahmad, R. Baker
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Gene, 2001
A gene (gluc78) encoding an antifungal glucan 1,3-beta-glucosidase was cloned from strain P1 of the biocontrol fungus Trichoderma atroviride (formerly T. harzianum). A putative regulatory sequence upstream from the coding region was cloned using single-strand extension from a primer in the known portion of the gene, circularized with T4 ligase, and ...
BGG Donzelli +3 more
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A gene (gluc78) encoding an antifungal glucan 1,3-beta-glucosidase was cloned from strain P1 of the biocontrol fungus Trichoderma atroviride (formerly T. harzianum). A putative regulatory sequence upstream from the coding region was cloned using single-strand extension from a primer in the known portion of the gene, circularized with T4 ligase, and ...
BGG Donzelli +3 more
openaire +5 more sources
Applied Soil Ecology, 2013
a b s t r a c t The Fusarium wilt in cucumbers, caused by the pathogenic fungus Fusarium oxysporum f. sp. cucumerinum, is a serious and destructive disease worldwide. An effort was made to explore the role of Trichoderma harzianum T-E5 in reducing the incidence of Fusarium wilt.
Fengge Zhang +4 more
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a b s t r a c t The Fusarium wilt in cucumbers, caused by the pathogenic fungus Fusarium oxysporum f. sp. cucumerinum, is a serious and destructive disease worldwide. An effort was made to explore the role of Trichoderma harzianum T-E5 in reducing the incidence of Fusarium wilt.
Fengge Zhang +4 more
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Sporulation and production of secondary metabolites in T. harzianum
Fungi of genus Trichoderma are widely used in agriculture as a biocontrol agent; however, the medicinal use of this microorganism was not explored until recent years [1]. It is accepted that the success of Trichoderma in the field of agriculture is due to its ability to produce a vast variety of secondary metabolites [2].Juselytė, Monika, Tiso, Nicola
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