Document details

Influence of the preservation period in silica-gel on the predatory activity of the isolates of Duddingtonia flagrans on infective larvae of cyathostomins (Nematoda: Cyathostominae)

Author(s): Braga, Fabio Ribeiro ; Araújo, Jackson Victor ; Araujo, Juliana Milani ; Tavela, Alexandre de Oliveira ; Ferreira, Sebastião Rodrigo ; Soares, Filippe E. Freitas ; Benjamin, Laércio dos Anjos ; Frassy, Luiza Neme

Date: 2018

Origin: Oasisbr

Subject(s): Nematophagous fungi; Duddingtonia flagrans; Silica-gel; Cyathostomins


Description

The continued maintenance of nematophagous fungi predatory activity under laboratory conditions is one of the basic requirements for a successful biological control. The purpose of this study was to evaluate the influence of time on the preservation of the fungus Duddingtonia flagrans (AC001 and CG722) stored in silica-gel for 7 years and their subsequent predatory activity on cyathostomin L3 larvae in 2% water-agar medium (2% WA). Samples of the isolates AC001 and CG722, originating from vials containing grains of silica-gel sterilized and stored for 7 years, were used. After obtaining fungal conidia, the predation test was conducted over 7 days on the surface of 9.0 cm Petri dishes filled with 2% WA. In the treated groups each Petri dish contained 500 cyathostomin L3 and conidia of fungal isolates in 2% WA. In the control group (without fungi) the plates contained 500 L3 in 2% WA. The experimental results showed that isolated AC001 and CG722 were efficient in preying on cyathostomin L3 (p < 0.01) compared to control (without fungus). However, no difference was observed (p > 0.01) in the predatory activity of the fungal isolates tested. Comparing the groups, there was a significant reductions of cyathostomin L3 (p < 0.01) of 88.6% and 78.4% on average recovered from the groups treated with the isolates AC001 and CG722, respectively, after 7 days. The results of this test showed that the fungus D. flagrans (AC001 and CG722) stored in silica-gel for at least 7 years maintained its predatory activity on cyathostomin L3.

Document Type Journal article
Language English
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