Mixtures between Beauveria bassiana and potassium silicate to manage thrips in tomato plants for industrial processing

Author:

Pereira Alexandre Igor A1ORCID,Silva Cide M da1ORCID,Curvêlo Carmen RS1ORCID,Pontes Nadson de C1ORCID,Pereira Jardel L1ORCID,Tavares Wagner de S2ORCID,Zanuncio José C3ORCID,Luz José Magno Q4ORCID

Affiliation:

1. Instituto Federal Goiano, Brazil

2. Asia Pacific Resources International Holdings Ltd., Indonesia

3. Universidade Federal de Viçosa, Brazil

4. Universidade Federal de Uberlândia, Brazil

Abstract

ABSTRACT Thysanoptera species can transmit virus to Solanaceae family vegetables, including tomato plants for industrial processing, causing the disease known as Tomato Spotted Wilt Virus (TSWV). Thrips resistance to insecticides indicate the urgent need of techniques adequate for Integrate Pest Management practices. The objective was to evaluate the control efficiency (CE%) against Frankliniella schultzei (Thysanoptera: Thripidae) of the fungus Beauveria bassiana (Bb), the resistance inducer potassium silicate (KSil) and the chemical insecticide profenophos + cypermethrin (PC) isolated, or in binary mixtures. The treatments were foliar spraying on tomato plants with Bb (T1), KSil (T2) and PC (T3) isolated or in mixtures of Bb+KSil (T4), PC+KSil (T5) and Bb+PC (T6). Thrips were sampled with white plastic trays at 0, 1, 7, 14 and 21 days after application (daa). The CE% of each product (isolated or in mixtures) differed at all time intervals. The Bb+KSil treatment had highest CE% from 24 hours of application, until the end of the experiment, ranging from 95% (1 daa) to 41.5% (21 daa). The CE% decreased in all treatments with a quadratic curve behavior, throughout time. PC insecticide, isolated, showed a decreased CE% through a linear regression. Grouping analyzes indicated the Bb+KSil effect was more dissimilar than the other evaluated treatments. Synergism between Bb and KSil, in mixture, indicate its potential for Integrated Pest Management programs of F. schultzei in tomato plants for industrial processing.

Publisher

FapUNIFESP (SciELO)

Subject

Horticulture,Plant Science,Soil Science

Reference26 articles.

1. Insecticide compatibility to the entomopathogenic fungi;ABIDIN AF;Beauveria bassiana and Metarhizium anisopliae. Scripta Biologica,2017

2. Diatomaceous earth increases the efficacy of Beauveria bassiana against Tribolium castaneum larvae and increases conidia attachment.;AKBAR W;Journal of Economic Entomology,2004

3. Caracterização da produção de tomate-industrial no município de Morrinhos-GO: Da utilização de defensivos à vantagem dos contratos;ASSUNÇÃO PEV;Teoria e Evidência Econômica,2013

4. Viability and pathogenicity of entomogenous fungi after prolonged storage on silica gel at -20°C;BELL JV;Canadian Journal of Microbiology,1974

5. A quick review of the production and commercialization of the main vegetables in Brazil and the world from 1970 to 2015;CAMARGO FILHO WP;Horticultura Brasileira,2017

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