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Resumen
The Alto Valle of Río Negro and Neuquén is an intensive irrigated fruit producing area. The existence of a shallow water table modifies the water content in the soil profile. It is important to distinguish the effect and estimate the amount of water capillary rise in order to enhance the irrigation management and allow the crop to achieve its maximum yield and development in non-stress conditions. The aim of this trial was to quantify and associate water [ver mas...]
dc.contributor.authorMañueco, María Lucía
dc.contributor.authorRodriguez, Andrea Betiana
dc.contributor.authorMontenegro, Ayelen
dc.contributor.authorGaleazzi, Juan
dc.contributor.authorDel Brio, Dolores
dc.contributor.authorCuretti, Mariela
dc.contributor.authorMuñoz, Angel Rafael
dc.contributor.authorRaffo Benegas, Maria Dolores
dc.date.accessioned2025-08-14T12:08:19Z
dc.date.available2025-08-14T12:08:19Z
dc.date.issued2021-02-05
dc.identifier.isbn978-94-62613-01-0
dc.identifier.issn0567-7572 (impreso)
dc.identifier.issn2406-6168 (electrónico)
dc.identifier.otherhttps://doi.org/10.17660/ActaHortic.2021.1303.33
dc.identifier.urihttp://hdl.handle.net/20.500.12123/23429
dc.identifier.urihttps://www.actahort.org/books/1303/1303_33.htm
dc.descriptionTrabajo presentado al XIII International Pear Symposium, en Montevideo (Uruguay), diciembre de 2018
dc.description.abstractThe Alto Valle of Río Negro and Neuquén is an intensive irrigated fruit producing area. The existence of a shallow water table modifies the water content in the soil profile. It is important to distinguish the effect and estimate the amount of water capillary rise in order to enhance the irrigation management and allow the crop to achieve its maximum yield and development in non-stress conditions. The aim of this trial was to quantify and associate water content of soil profile with water status of pear trees, using different methods. In a surfaced irrigated 'Bartlett' pear orchard planted on 2003, the following variables were measured during the 2017-2018 growing season: soil water content at three depths (0.20, 0.40, 0.60 m) and water table level (WTL). Additionally, soil profile and texture class were described. Evapotranspiration (ETm) and vapor pressure deficit (VPD) were calculated with data of the automatic weather station. Stomatal conductance (Gs) was measured with a leaf porometer in three different moments of the growing season. Moisture stress index (MSI) was calculated from all Sentinel 2A images available for the season. The capillary water input into the root zone from a shallow water table is evident in the continuous records of sensors. This phenomenon keeps soil water content within the readily available water range. The Gs measures showed that the crop water status was appropriate and that values were high compared to those referred to deciduous trees. The MSI values obtained were between the limits of a well-irrigated crop. These results agree with the non-restrictive condition observed in the soil water balance.eng
dc.formatapplication/pdfes_AR
dc.language.isoenges_AR
dc.publisherInternational Society for Horticultural Science (ISHS)
dc.rightsinfo:eu-repo/semantics/restrictedAccesses_AR
dc.rights.urihttp://creativecommons.org/licenses/by-nc-sa/4.0/es_AR
dc.sourceActa Horticulturae 1303 : 227-233 (2021)es_AR
dc.subjectPyrus communises_AR
dc.subjectPearseng
dc.subjectPeraes_AR
dc.subjectArgentinaes_AR
dc.subjectVariedades
dc.subjectVarietieseng
dc.subjectConductancia Estomática
dc.subjectStomatal Conductanceeng
dc.subjectBalance Hídrico del Suelo
dc.subjectSoil Water Balanceeng
dc.subject.otherBartlett Varietyeng
dc.subject.otherVariedad Bartlettes_AR
dc.subject.otherMoisture Stress Indexeng
dc.subject.otherÍndice de Estrés Hídricoes_AR
dc.subject.otherAlto Valle, Río Negroes_AR
dc.titleQuantification of capillary water input to the root zone from shallow water table and determination of the associated 'Bartlett' pear water statuses_AR
dc.typeinfo:ar-repo/semantics/artículoes_AR
dc.typeinfo:eu-repo/semantics/articlees_AR
dc.typeinfo:eu-repo/semantics/publishedVersiones_AR
dc.rights.licenseCreative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0)es_AR
dc.description.origenEEA Alto Vallees_AR
dc.description.filFil: Mañueco, María Lucía. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Alto Valle; Argentinaes_AR
dc.description.filFil: Rodríguez, Andrea Betiana. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Alto Valle; Argentinaes_AR
dc.description.filFil: Montenegro, Ayelen. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Alto Valle; Argentinaes_AR
dc.description.filFil: Galeazzi, Juan. Universidad Nacional del Comahue. Facultad de Ciencias Agrarias; Argentinaes_AR
dc.description.filFil: Del Brío, Dolores. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Alto Valle; Argentinaes_AR
dc.description.filFil: Curetti, Mariela. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Alto Valle; Argentinaes_AR
dc.description.filFil: Muñoz, Ángel Rafael. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Alto Valle; Argentinaes_AR
dc.description.filFil: Raffo Benegas, María Dolores. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Alto Valle; Argentinaes_AR
dc.subtypecientifico


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