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Significant improvement of IPM strategies against the sugarcane stem borer, Chilo Sacchariphagus, through long-term succesful storage of Trichogramma chilonis (Hymenoptera:Tric) : S1012TU07 Integrated Pest Management

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Academic year: 2021

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Keywords:Chilo sacchariphagus, Trichogramma chilonis, inundative release,cold storage, diapause, quiescence, mass production S1012TU07

Integrated Pest Management

S1012

Significant improvement of IPM strategies against the sugarcane stem borer, Chilo

sacchariphagus, through long-term succesful storage of Trichogramma chilonis

(Hymenoptera:Tric)

Hong Do Thi Khanh1, Adrien Bonnet2, Johanna Bodendorfer3, Etty Colombel4, Francois-Regis Goebel5, Marlene Marquier6, Clarisse Clain7, Estelle Roux8, Elisabeth Tabone9

1INRA, Plant Protection Center, France, 2INRA, France, 3INRA, France, 4INRA, France, 5CIRAD, France, 6FDGDON-Reunion, France, 7FDGDON-Reunion, France, 8FDGDON-Reunion, France, 9INRA, France

The stem borer Chilo sacchariphagus is a key pest of sugarcane in Reunion Island and South-East Asia. Since 2002, an IPM strategy associating inundative release of an egg parasitoid, Trichogramma chilonis, and conservation of a predatory ant has been proposed. This reduced up to 50% of damage in field experiments in Reunion Island (financial gains from $800 to $1800/ha). To develop IPM strategies on a large scale, reducing the global costs is necessary. In this context, cold storage is a key step to the development of the sugarcane borer biocontrol, by improving production and release management. Thanks to a French funding (CASDAR), laboratory tests on cold storage of T. chilonis were first conducted, followed by field experiments on the performance of stored parasitoids. Quality control after storage was performed several times (after mass production, before and after transport, after field release) in laboratory at 25 ± 1°C, RH 75 ± 5 % and 16L: 8hD to evaluate emergence rate of stored insects, fecundity during 7 days and survival at 7th day of T. chilonis females. For the first time, a long-term cold storage of T. chilonis was obtained without loss of physiological performance (good emergence, fecundity, survival during 7 days). Results suggested a quiescence state because no loss was observed due to storage interruption. Moreover, the same field efficacy of cold stored Trichogramma compared to non-stored individuals was obtained in Reunion Island. These important results make possible a large-scale application of IPM strategies in sugarcane production.

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