Spatio - temporal risk assessment models for Lobesia botrana in uncolonized winegrowing areas

The objective of this work was to generate a series of equations to describe the voltinism of Lobesia botrana in the quarantine area of the main winemaking area of Argentina, Mendoza. To do this we considered an average climate scenario and extrapolated these equations to other winegrowing areas at...

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Autor principal: Heit, Guillermo Eugenio
Otros Autores: Sione, Walter, Aceñolaza, Pablo Gilberto
Formato: Artículo
Lenguaje:Inglés
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Acceso en línea:http://ri.agro.uba.ar/files/download/articulo/2019heit.pdf
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Aporte de:Registro referencial: Solicitar el recurso aquí
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100 1 |9 12533  |a Heit, Guillermo Eugenio  |u Universidad de Buenos Aires. Facultad de Agronomía. Departamento de Producción Vegetal. Buenos Aires, Argentina.  |u Argentina. Ministerio de Agricultura, Ganadería y Pesca. Servicio Nacional de Sanidad y Calidad Agroalimentaria (SENASA). Buenos Aires, Argentina. 
245 0 0 |a Spatio - temporal risk assessment models for Lobesia botrana in uncolonized winegrowing areas 
520 |a The objective of this work was to generate a series of equations to describe the voltinism of Lobesia botrana in the quarantine area of the main winemaking area of Argentina, Mendoza. To do this we considered an average climate scenario and extrapolated these equations to other winegrowing areas at risk of being invaded. A grid of 4 km2 was used to generate statistics on L. botrana captures and the mean temperature accumulation for the pixel. Four sets of logistic regression were constructed using the percentage of accumulated trap catches/grid/week and the degree-day accumulation above 7°C, from 1st July. By means of a habitat model, an extrapolation of the phenological model generated to other Argentine winemaking areas was evaluated. According to our results, it can be expected that 50% of male adult emergence for the first flight occurs at 248.79 ± 4 degree-days (DD), in the second flight at 860.18 ± 4.1 DD, while in the third and the fourth flights, 1671.34 ± 5.8 DD and 2335.64 ± 4.3 DD, respectively. Subsequent climatic comparison determined that climatic conditions of uncolonized areas of Cuyo Region have a similar suitability index to the quarantine area used to adjust the phenological model. The upper valley of Río Negro and Neuquén are environmentally similar. Valleys of the northwestern region of Argentina showed lower average suitability index and greater variability among SI estimated by the algorithm considered. The combination of two models for the estimation of adult emergence time and potential distribution, can provide greater certainties in decision-making and risk assessment of invasive species. 
650 |2 Agrovoc  |9 26 
653 |a DISTRIBUTION 
653 |a INVASION RISK 
653 |a LOBESIA 
653 |a MODELING 
653 |a VITICULTURE 
700 1 |a Sione, Walter  |u Universidad Autónoma de Entre Ríos. Centro Regional de Geomática (CEREGEO). Oro Verde, Entre Ríos, Argentina.  |9 72713 
700 1 |a Aceñolaza, Pablo Gilberto  |u CONICET. Centro de Investigación Científica y de Transferencia Tecnológica a la Producción (CICyTTP). Diamante, Entre Ríos, Argentina.  |u Universidad Nacional de Entre Ríos. Facultad de Agronomía. Oro Verde, Entre Ríos, Argentina.  |9 72885 
773 |t Journal of plant protection research  |g Vol.59, no.2 (2019), p.265-274, tbls., grafs., mapas 
856 |f 2019heit  |i En Internet  |q application/pdf  |u http://ri.agro.uba.ar/files/download/articulo/2019heit.pdf  |x ARTI202103 
856 |u http://www.plantprotection.pl/  |z LINK AL EDITOR 
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976 |a AAG