Instituto de Biodiversidad y Medioambiente (BIOMA)
Centro / Instituto de investigación de la Universidad de Navarra
Jone
Aguirreolea Morales
Investigadora hasta 2015
Publicaciones en las que colabora con Jone Aguirreolea Morales (40)
2018
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Is vegetative area, photosynthesis, or grape C uploading involved in the climate change-related grape sugar/anthocyanin decoupling in Tempranillo?
Photosynthesis Research, Vol. 138, Núm. 1, pp. 115-128
2017
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Influencia de la radiación ultravioleta B sobre la composición de la uva (cv. Tempranillo) en condiciones de sequía
Tierras: Agricultura, Núm. 257, pp. 102-104
2016
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Ultraviolet-B alleviates the uncoupling effect of elevated CO
2
and increased temperature on grape berry (Vitis vinifera cv. Tempranillo) anthocyanin and sugar accumulation
Australian Journal of Grape and Wine Research, Vol. 22, Núm. 1, pp. 87-95
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Erratum to "Ultraviolet-B alleviates the uncoupling effect of elevated CO2 and increased temperature on grape berry (Vitis vinifera cv. Tempranillo) anthocyanin and sugar accumulation" [Australian Journal of Grape and Wine Research 22, 2016, 87-95], [doi: 10.1111/ajgw.12213]
Australian Journal of Grape and Wine Research
2015
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Carbon balance, partitioning and photosynthetic acclimation in fruit-bearing grapevine (Vitis vinifera L. cv. Tempranillo) grown under simulated climate change (elevated CO2, elevated temperature and moderate drought) scenarios in temperature gradient greenhouses
Journal of Plant Physiology, Vol. 174, pp. 97-109
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Characterization of the adaptive response of grapevine (cv. Tempranillo) to UV-B radiation under water deficit conditions
Plant Science, Vol. 232, pp. 13-22
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Climate change conditions (elevated CO2 and temperature) and UV-B radiation affect grapevine (Vitis vinifera cv. Tempranillo) leaf carbon assimilation, altering fruit ripening rates
Plant Science, Vol. 236, pp. 168-176
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Efecto de la radiación UV-B sobre la variedad Tempranillo
La Semana vitivinícola, Núm. 3461, pp. 2265-2270
2014
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Growth, photosynthetic acclimation and yield quality in legumes under climate change simulations: An updated survey
Plant Science, Vol. 226, pp. 22-29
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Methodological advances: Using greenhouses to simulate climate change scenarios
Plant Science, Vol. 226, pp. 30-40
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Ultraviolet-B radiation and water deficit interact to alter flavonol and anthocyanin profiles in grapevine berries through transcriptomic regulation
Plant and Cell Physiology, Vol. 55, Núm. 11, pp. 1925-1936
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Ultraviolet-B radiation modifies the quantitative and qualitative profile of flavonoids and amino acids in grape berries
Phytochemistry, Vol. 102, pp. 106-114
2013
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Photosynthetic and molecular markers of CO2-mediated photosynthetic downregulation in nodulated alfalfa
Journal of Integrative Plant Biology, Vol. 55, Núm. 8, pp. 721-734
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Short- and long-term physiological responses of grapevine leaves to UV-B radiation
Plant Science, Vol. 213, pp. 114-122
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Thermotolerance responses in ripening berries of vitis vinifera l. cv muscat hamburg
Plant and Cell Physiology, Vol. 54, Núm. 7, pp. 1200-1216
2012
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Alfalfa forage digestibility, quality and yield under future climate change scenarios vary with Sinorhizobium meliloti strain
Journal of Plant Physiology, Vol. 169, Núm. 8, pp. 782-788
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Alfalfa yield under elevated CO 2 and temperature depends on the Sinorhizobium strain and growth season
Environmental and Experimental Botany, Vol. 77, pp. 267-273
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Climate change (elevated CO 2, elevated temperature and moderate drought) triggers the antioxidant enzymes' response of grapevine cv. Tempranillo, avoiding oxidative damage
Physiologia Plantarum, Vol. 144, Núm. 2, pp. 99-110
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Photosynthetic response of Tempranillo grapevine to climate change scenarios
Annals of Applied Biology, Vol. 161, Núm. 3, pp. 277-292
2011
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Cambio climático, fijación biológica de nitrógeno y leguminosas forrajeras
Fundamentos y aplicaciones agroambientales de las interacciones beneficiosas plantas-microorganismos (Sociedad Española de Fijación de Nitrógeno), pp. 127-140