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Volatile Substances Produced by Fusarium oxysporum from Coffee Rhizosphere and Other Microbes affect Meloidogyne incognita and Arthrobotrys conoides
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Society of Nematologists
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Abstract
Microorganisms produce volatile organic compounds (VOCs) which mediate interactions with other organisms and may
be the basis for the development of new methods to control plant-parasitic nematodes that damage coffee plants. In the present
work, 35 fungal isolates were isolated from coffee plant rhizosphere, Meloidogyne exigua eggs and egg masses. Most of the fungal
isolates belonged to the genus Fusarium and presented in vitro antagonism classified as mutual exclusion and parasitism against the
nematode-predator fungus Arthrobotrys conoides (isolated from coffee roots). These results and the stronger activity of VOCs against
this fungus by 12 endophytic bacteria may account for the failure of A. conoides to reduce plant-parasitic nematodes in coffee fields.
VOCs from 13 fungal isolates caused more than 40% immobility to Meloidogyne incognita second stage juveniles (J2), and those of three
isolates (two Fusarium oxysporum isolates and an F. solani isolate) also led to 88-96% J2 mortality. M. incognita J2 infectivity decreased as
a function of increased exposure time to F. oxysporum isolate 21 VOCs. Gas chromatography-mass spectrometry (GC-MS) analysis lead
to the detection of 38 VOCs produced by F. oxysporum is. 21 culture. Only five were present in amounts above 1% of the total: dioctyl
disulfide (it may also be 2-propyldecan-1-ol or 1-(2-hydroxyethoxy) tridecane); caryophyllene; 4-methyl-2,6-di-tert-butylphenol; and
acoradiene. One of them was not identified. Volatiles toxic to nematodes make a difference among interacting microorganisms in
coffee rhizosphere defining an additional attribute of a biocontrol agent against plant-parasitic nematodes.
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FREIRE, E. S. et al. Volatile Substances Produced by Fusarium oxysporum from Coffee Rhizosphere and Other Microbes affect Meloidogyne incognita and Arthrobotrys conoides. Journal of Nematology, College Park, v. 44, n. 4, p. 321-328, Dec. 2012.
