Antagonismo entre Magnaporthe oryzae e o fungo micorrízico Rhizoctonia sp.

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2013-03-25

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Universidade Federal de Goiás

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Rice blast caused by the fungus Magnaporthe oryzae B. Couch [anamorfo - Pyricularia oryzae Cav.] occurs in all rice growing regions of the world. The sustainable agriculture requires the introduction of biological control as one of the components in the integrated disease management. The microorganisms associated to plants are capable of producing secondary metabolites such as alkaloids which may have a role in biological control. The objective of the present study consists, isolation and identification of secondary metabolites of the micorrhizal fungus Rhizoctonia sp. obtained from Epidendrum nocturnum and evaluate in vitro and in vivo antagonism to M. oryzae. Ten fungal isolates were used to test the antibiosis against M. oryzae. The isolate En07 of Rhizoctonia sp. exhibited a greater halo of inhibition and consequently was considered the best in vitro antagonist to M. oryzae. Crude, mycelial and lyophilized extracts of micorrhizal isolate were obtained. The analysis by CCD of these three extracts showed positive results in relation to Dragendorff, indicating the presence of phenolics. The analysis of RMN 1H and masses showed the presence of aromatic hydrogens and phenolics. Five concentrations of each extract were prepared and utilized in the studies on in vitro mycelial inhibition of M. oryzae and observed 77.86% of pathogen reduction by crude extract (700 μg/mL). Two crude extract treatments (520 μg/ml and 120 μg/ml) significantly reduced the radial growth of the pathogen compared to control. The crude extract showed best results for mycelia inhibition of the pathogen, followed by lyophilized and mycelial extracts. In two trials, the crude extract at 0.52 μg.μL-1 also reduced the formation of appressoria of M. oryzae by 100%. Two greenhouse experiments were conducted on leaf blast suppression with the cultivar Primavera, using completely randomized design with three replications. In both these trials, the mycelial extract (1860 μg/ml and M.o 3x105) showed marked reduction of leaf blast severity in relation to control by 59.27% and 77.58% respectively. In the second trial, the second treatment (1040 μg/mL and M.o3x105) of crude extract reduced AUDPC by 64.63% compared to control. The results showed that the metabolites of Rhizoctonia sp. posses great potential for biological control of rice blast.

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CARVALHO, J. C. B. Antagonismo entre Magnaporthe oryzae e o fungo micorrízico Rhizoctonia sp. 2013. 77 f. Dissertação (Mestrado em Genetica e Melhoramento de Plantas) - Universidade Federal de Goiás, Goiânia, 2013.