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1.
C R Biol ; 338(1): 21-8, 2015 Jan.
Article in English | MEDLINE | ID: mdl-25528673

ABSTRACT

The study evaluated the comparative performance of a few microbial antagonists, organic amendments and fungicides and their integration for the management of seedling mortality (Rhizoctonia solani Kühn) and yield improvement in pea (Pisum sativum L.). Before setting the experiment in field microplots, a series of in vitro and in vivo experiments were conducted to select a virulent isolate of R. solani, an effective antagonistic isolate of Trichoderma harzianum, a fungitoxic organic amendment and an appropriate fungicide. A greenhouse pathogenicity test compared differences in seedling mortality in pea inoculated by four isolates of R. solani and identified the isolate RS10 as the most virulent one. Among the 20 isolates screened in dual culture assay on PDA, T. harzianum isolate T-3 was found to show the highest (77.22%) inhibition of the radial growth of R. solani. A complete inhibition (100.00%) of colony growth of R. solani was observed when fungicide Bavistin 50 WP and Provax-200 at the rate of 100 and 250 ppm, respectively, were used, while Provax-200 was found to be highly compatible with T. harzianum. Mustard oilcake gave maximum inhibition (60.28%) of the radial growth of R. solani at all ratios, followed by sesame oilcake and tea waste. Integration of soil treatment with T. harzianum isolate T-3 and mustard oilcake and seed treatment with Provax-200 appeared to be significantly superior in reducing seedling mortality and improving seed yield in pea in comparison to any single or dual application of them in the experimental field. The research results will help growers develop integrated disease management strategies for the control of Rhizoctonia disease in pea. The research results show the need for an integrating selective microbial antagonist, organic amendment and fungicide to achieve appropriate management of seedling mortality (R. solani) and increase of seed yield in pea.


Subject(s)
Fungicides, Industrial/pharmacology , Pisum sativum/growth & development , Rhizoctonia/drug effects , Trichoderma/physiology , Benzimidazoles/pharmacology , Carbamates/pharmacology , Mustard Plant , Pisum sativum/microbiology , Plant Diseases/microbiology , Plant Oils/pharmacology , Rhizoctonia/pathogenicity , Seedlings/microbiology , Soil Microbiology
2.
J Oleo Sci ; 62(8): 613-21, 2013.
Article in English | MEDLINE | ID: mdl-23985491

ABSTRACT

Penicillium simplicissimum GP17-2 is a plant growth-promoting fungus (PGPF) and an inducer of systemic defense responses. The mechanisms underlying the effect of GP17-2 on the reduction of cucumber leaf damage caused by the anthracnose pathogen Colletotrichum orbiculare were investigated. Cucumber leaves treated with the culture filtrate (CF) of GP17-2 exhibited a clear systemic resistance against subsequent infection with C. orbiculare. The number and size of lesions caused by the disease were reduced in CF-treated plants, in comparison with that in the control plants. The results showed that CF treatment could trigger a set of defense responses, including the production of hydrogen peroxide, formation of lignin, emission of ultra-weak photons, accumulation of salicylic acid, and increase in the transcription of the genes for the defense-related enzymes chitinase and peroxidase. Furthermore, subsequent inoculation of CF-pretreated plants with C. orbiculare resulted in higher systemic expression of the genes for chitinase, ß-1,3-glucanase, and peroxidase relative to nontreated, inoculated plants; this indicated that CF mediates a potentiation state in the plant, enabling it to mount a rapid and effective response on infection by C. orbiculare. Our results indicate that the ability of CF of GP17-2 to stimulate active oxygen species, lignification, SA accumulation, and defense gene activation and potentiation in the host is the possible mode of action of the GP17-2 elicitor and inducer of induced systemic resistance against C. orbiculare infection in cucumber plants.


Subject(s)
Cucumis sativus/genetics , Cucumis sativus/immunology , Fungal Proteins/physiology , Penicillium/physiology , Plant Diseases/genetics , Plant Diseases/immunology , Cell-Free System/physiology , Chitinases/genetics , Colletotrichum/pathogenicity , Cucumis sativus/metabolism , Culture Media/pharmacology , Hydrogen Peroxide/metabolism , Lignin/metabolism , Peroxidase/genetics , Photons , Plant Diseases/microbiology , Plant Leaves , Salicylic Acid/metabolism , Transcription, Genetic
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