Rootstock control of scion response to water stress in grapevine |
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Affiliation: | 2. University of Turin, Department of Agricultural, Forest and Food Sciences, (DISAFA) via Leonardo da Vinci 44, 10095, Grugliasco, Italy;3. Plant Virology Institute, National Research Council (IVV-CNR), Grugliasco unit, Via Leonardo da Vinci 44, 10095, Grugliasco, TO, Italy;1. Department of Sustainable Crop Production, Università Cattolica del Sacro Cuore, Via Emilia Parmense 84, 29122 Piacenza, Italy;2. Dipartimento di Scienze Agrarie, Alimentari e Ambientali, Università di Perugia, Borgo XX Giugno 74, 06128 Perugia, Italy;1. Universidad de Navarra, Dpto. de Biología Ambiental, Grupo de Fisiología del Estrés en Plantas, Unidad Asociada al CSIC (EEAD, Zaragoza e ICVV, Logroño), Facultad de Ciencias, Irunlarrea 1, 31008, Pamplona, Spain;2. Estación Experimental de Aula Dei (EEAD), CSIC, Dpto. Nutrición Vegetal, Apdo. 13034, 50080, Zaragoza, Spain |
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Abstract: | Rootstocks play a major role in grapevine tolerance to water stress by controlling and adjusting the water supply to shoot transpiration demand. This study aimed to characterize the influence of rootstock genotypes in the adaptive response of scions to water limiting conditions. The effect of rootstock genotype (140Ru and SO4) was observed in the different availability of water provided to the scions (Cabernet Sauvignon, Grenache, Merlot, Syrah), while scions influenced stomatal control of water transpiration. Implication on the cell-to-cell component of plant water transport in both rootstock and scion impacted on embolisms formation in roots and on hydraulics of leaves. The main conclusion of the present study was that rootstock and scion genotypes are able to confer to the plant traits of drought adaptability influencing respectively the capacity of water extraction from the soil and the sensitivity of the stomatal control. |
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Keywords: | Hydraulic conductance Mercuric chloride Stomatal conductance Transmembrane pathway Water potential |
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