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Research Note

Sodium and Chloride Distribution in Grapevines as a Function of Rootstock and Irrigation Water Salinity

Arnon Dag, Alon Ben-Gal, Sivan Goldberger, Uri Yermiyahu, Isaac Zipori, Etti Or, Isaac David, Yishai Netzer, Zohar Kerem
Am J Enol Vitic. February 2015 66: 80-84; published ahead of print October 30, 2014 ; DOI: 10.5344/ajev.2014.14019
Arnon Dag
1Plant Sciences, Agricultural Research Organization, Gilat Research Center, M.P. Negev, 85280, Israel
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  • For correspondence: arnondag@agri.gov.il
Alon Ben-Gal
2Soil, Water, and Environmental Sciences, Agricultural Research Organization, Gilat Research Center, M.P. Negev, 85280, Israel
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Sivan Goldberger
1Plant Sciences, Agricultural Research Organization, Gilat Research Center, M.P. Negev, 85280, Israel
3Institute of Biochemistry, Food Science and Nutrition, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, P.O. Box 12, Rehovot, 76100, Israel
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Uri Yermiyahu
2Soil, Water, and Environmental Sciences, Agricultural Research Organization, Gilat Research Center, M.P. Negev, 85280, Israel
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Isaac Zipori
1Plant Sciences, Agricultural Research Organization, Gilat Research Center, M.P. Negev, 85280, Israel
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Etti Or
4Plant Sciences, Agricultural Research Organization, Bet Dagan, 50250, Israel
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Isaac David
5Ramat Negev Desert Agro-Research, M.P. Halutza, 85515, Israel
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Yishai Netzer
6Research and Development Center, Samaria and Jordan Rift, Israel.
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Zohar Kerem
3Institute of Biochemistry, Food Science and Nutrition, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, P.O. Box 12, Rehovot, 76100, Israel
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Abstract

The salt tolerance of rootstocks is often assessed based on their ability to limit uptake of sodium (Na) and chloride (Cl) ions. Here, we evaluated the effects of three irrigation salinity levels (electrical conductivity of 1.2, 2.7, and 4.2 dS/m) on Cabernet Sauvignon grapes grafted on Ruggeri, Paulsen, 216/3, and 101/14 rootstocks. Growth parameters were affected by salinity level but not by rootstock, and yield was not affected by either variable. Ruggeri and 216/3 were most effective at limiting uptake and accumulation of Na and Cl in scion petioles, wood, and must. The rootstocks differentially excluded Na and Cl from vines; 216/3 and Ruggeri showed the best performance for Na and Cl, respectively. More Na than Cl accumulated in woody tissue. Mortality rates as high as 17.5% were found for poor salt-excluding rootstocks irrigated with the highest salinity water. The apparent breakdown of tolerance mechanisms, leading to salt damage and vine mortality, might be due to Na reaching critical levels in woody tissues. The ability to exclude Na and Cl from shoots and fruit was found to (a) increase wine quality by reducing concentrations of salt ions in must and wine, and (b) reduce mortality rates that result from long-term exposure to salt.

  • brackish water
  • ions
  • irrigation
  • mortality
  • tolerance mechanisms
  • ©2015 by the American Society for Enology and Viticulture
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Sodium and Chloride Distribution in Grapevines as a Function of Rootstock and Irrigation Water Salinity
Arnon Dag, Alon Ben-Gal, Sivan Goldberger, Uri Yermiyahu, Isaac Zipori, Etti Or, Isaac David, Yishai Netzer, Zohar Kerem
Am J Enol Vitic.  February 2015  66: 80-84;  published ahead of print October 30, 2014 ; DOI: 10.5344/ajev.2014.14019

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Sodium and Chloride Distribution in Grapevines as a Function of Rootstock and Irrigation Water Salinity
Arnon Dag, Alon Ben-Gal, Sivan Goldberger, Uri Yermiyahu, Isaac Zipori, Etti Or, Isaac David, Yishai Netzer, Zohar Kerem
Am J Enol Vitic.  February 2015  66: 80-84;  published ahead of print October 30, 2014 ; DOI: 10.5344/ajev.2014.14019
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