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Resumen
Critical nitrogen (N) dilution curves describe the critical N concentration in plant tissues during crop growth and they are used to estimate the N nutriton status of whole plants in potato. Little is known, however, about the critical N dilution curves in specific plant parts such as shoots and tubers. Our objectives were (i) to determine critical shoot and tuber N dilution curves; (ii) to compare these curves with critical N dilution curves determined [ver mas...]
dc.contributor.authorGiletto, Claudia
dc.contributor.authorReussi Calvo, Nahuel Ignacio
dc.contributor.authorSandaña, Patricio
dc.contributor.authorEcheverria, Hernan Eduardo
dc.contributor.authorBélanger, Gilles
dc.date.accessioned2021-04-15T13:15:33Z
dc.date.available2021-04-15T13:15:33Z
dc.date.issued2020-09
dc.identifier.issn1161-0301
dc.identifier.otherhttps://doi.org/10.1016/j.eja.2020.126114
dc.identifier.urihttp://hdl.handle.net/20.500.12123/9096
dc.identifier.urihttps://www.sciencedirect.com/science/article/abs/pii/S1161030120301210
dc.description.abstractCritical nitrogen (N) dilution curves describe the critical N concentration in plant tissues during crop growth and they are used to estimate the N nutriton status of whole plants in potato. Little is known, however, about the critical N dilution curves in specific plant parts such as shoots and tubers. Our objectives were (i) to determine critical shoot and tuber N dilution curves; (ii) to compare these curves with critical N dilution curves determined on whole plants (shoot + tubers); and (iii) to assess the possibility of using the critical shoot and tuber N dilution curves to estimate the N nutrition status of potato and tuber quality. Seven potato cultivars were assessed under different N supplies and environmental conditions in Canada and Argentina. Shoot biomass (leaves + stems) and tuber biomass along with their N concentrations were measured at regular intervals during the growing season. Tuber yield, dry matter concentration, and nitrate (N-NO3−) concentration were measured at harvest. We determined the coefficients of the critical N dilution curves expressed as N = a × W-b with N as the N concentration in shoot or tuber biomass, and W their respective biomass. Among cultivars, coefficients a and b for shoot biomass ranged from 5.08 to 5.68 and from 0.18 to 0.28, respectively, while coefficients a and b for tubers ranged from 1.54 to 1.87 and from 0.17 to 0.21, respectively. The shoot (NNIsh) and tuber (NNIt) N nutrition indices were both highly related to the N nutrition index in whole plants (R2 = 0.88; R2 = 0.98; P <  0.05; respectively) and to relative tuber yields (R2 = 0.61; R2 = 0.53; P <  0.05; respectively). For a NNIsh or NNIt ≥ 1.00, the relative yield was near 95 %, while it decreased with decreasing NNIsh or NNIt below 1.00. The tuber N nutrition index at harvest was related to tuber dry matter concentration and tuber N-NO3- concentration (R2 = 0.30; R2 = 0.53; P <  0.05; respectively). Our results demonstrate that shoot and tuber N nutrition indices identified adequately the N status in potato cultivars and tuber quality and, therefore, they have potential as plant diagnostic tools to estimate the N status of potato crops across different cultivars and environmental conditions.eng
dc.formatapplication/pdfes_AR
dc.language.isoenges_AR
dc.publisherElsevieres_AR
dc.rightsinfo:eu-repo/semantics/restrictedAccesses_AR
dc.sourceEuropean Journal of Agronomy 119 : 126114 (20220)es_AR
dc.subjectPapaes_AR
dc.subjectPotatoeseng
dc.subjectDiagnósticoes_AR
dc.subjectDiagnosiseng
dc.subjectAnálisis de Tejidoses_AR
dc.subjectTissue Analysiseng
dc.subjectBroteses_AR
dc.subjectShootseng
dc.subjectTubérculoes_AR
dc.subjectTuberseng
dc.subjectNitrógenoes_AR
dc.subjectNitrogeneng
dc.titleShoot- and tuber-based critical nitrogen dilution curves for the prediction of the N status in potatoes_AR
dc.typeinfo:ar-repo/semantics/artículoes_AR
dc.typeinfo:eu-repo/semantics/articlees_AR
dc.typeinfo:eu-repo/semantics/publishedVersiones_AR
dc.description.origenEEA Balcarcees_AR
dc.description.filFil: Giletto, Claudia. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Balcarce; Argentina.es_AR
dc.description.filFil: Giletto, Claudia. Universidad Nacional de Mar del Plata. Facultad de Ciencias Agrarias; Argentina.es_AR
dc.description.filFil: Reussi Calvo, Nahuel. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Balcarce; Argentina.es_AR
dc.description.filFil: Reussi Calvo, Nahuel. Universidad Nacional de Mar del Plata. Facultad de Ciencias Agrarias; Argentina.es_AR
dc.description.filFil: Reussi Calvo, Nahuel. Laboratorio de Suelos FERTILAB; Argentina,es_AR
dc.description.filFil: Sandaña, Patricio. Universidad Austral de Chile. Institute of Plant Production and Protection; Chile.es_AR
dc.description.filFil: Echeverría, Hernán Enrique. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Balcarce; Argentina.es_AR
dc.description.filFil: Echeverría, Hernán Enrique. Universidad Nacional de Mar del Plata. Facultad de Ciencias Agrarias; Argentina.es_AR
dc.description.filFil: Bélanger, Gilles. Quebec Research and Development Centre; Canada.es_AR
dc.subtypecientifico


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