2,018
Views
30
CrossRef citations to date
0
Altmetric
Plant nutrition

How does grafting affect the ionome of cherry tomato plants under water stress?

, , , &
Pages 145-155 | Received 18 Jun 2013, Accepted 27 Nov 2013, Published online: 21 May 2014

REFERENCES

  • Abdelmageed AHA, Gruda N 2009: Influence of grafting on growth, development and some physiological parameters of tomatoes under controlled heat stress conditions. Eur. J. Hortic. Sci., 74, 16–20.
  • Ahn SJ, Im YJ, Chung GC, Cho BH, Suh SR 1999: Physiological responses of grafted-cucumber leaves and rootstock roots as affected by low root temperature. Sci. Hortic., 81, 397–408.
  • Bellaloui N, Brown PH 1998: Cultivar differences in boron uptake and distribution in celery (Apium graveolens), tomato (Lycopersicon esculetum) and wheat (Triticum aestivum). Plant Soil, 198, 153–158.
  • Bletsos F, Thanassoulopoulos C, Roupakias D 2003: Effect of grafting on growth, yield and Verticillium wilt of eggplant. HortScience, 38, 183–186.
  • Cataldo DA, Haroon M, Schrader LE, Young VL 1975: Rapid colorimetric determination of nitrate in plant tissue by nitration of salicylic acid. Comm. Soil Sci. Plant Anal., 6, 71–80.
  • Colla G, Rouphael Y, Cardarelli M, Massa D, Salerno A, Rea E 2006: Yield, fruit quality and mineral composition of grafted melon plants grown under saline conditions. J. Hortic. Sci. Biotechnol., 81, 146–152.
  • Colla G, Suãrez CMC, Carderelli M, Rouphael Y 2010: Improving nitrogen use efficiency in melon by grafting. HortScience, 45, 559–565.
  • Davis AR, Perkins-Veazie P, Sakata Y et al. 2008: Cucurbit grafting. Crit. Rev. Plant Sci., 27, 50–74.
  • Diatloff E, Rengel Z 2001: Compilation of simple spectrophotometric techniques for the determination of elements in nutrient solutions. J. Plant Nutr., 24, 75–86.
  • Edelstein M, Ben-Hur M, Cohen R, Burger Y, Ravina I 2005: Boron and salinity effects on grafted and non-grafted melon plants. Plant Soil, 269, 273–284.
  • Estañ MT, Martinez-Rodriguez MM, Pérez-Alfocea F, Flowers TJ, Bolarin MC 2005: Grafting raises the salt tolerance of tomato through limiting the transport of sodium and chloride to the shoot. J. Exp. Bot., 56, 703–712.
  • Fernández-García N, Carvajal M, Olmos E 2004a: Graft union formation in tomato plants. Peroxidase and catalase involvement. Ann. Bot., 93, 53–60.
  • Fernández-García N, Martínez V, Carvajal M 2004c: Effect of salinity on growth, mineral composition, and water relations of grafted tomato plants. J. Plant Nutr. Soil Sci., 167, 616–622.
  • Fernández-García N, Martínez V, Cerdá A, Carvajal M 2004b: Fruit quality of grafted tomato plants grown under saline conditions. J. Hortic. Sci. Biotechnol., 79, 995–1001.
  • Guo WZ, Liu SF, Li DR, Zhao SS 2004: Mechanisms of soil salinization in protected cultivation. Soils, 36, 25–29.
  • Hansch R, Mendel RR 2009: Physiological functions of mineral micronutrients (Cu, Zn, Mn, Fe, Ni Mo, B, Cl. Curr. Opin. Plant Biol, 12, 259–266.
  • Heo YC 1991: Effects of rootstocks on exudation and mineral elements contents in different parts of Oriental melon and cucumber. MS thesis, Kyung Hee University, Seoul, South Korea, p. 53.
  • Hocking PJ, Pate JS 1977: Mobilization of minerals to developing seeds of legumes. Ann. Bot., 41, 1259–1278.
  • Hogue E, Wilcow GE, Cantliffe DJ 1970: Effect of soil P on phosphate fraction in tomato leaves. JASHS, 95, 174–176.
  • Hu Y, Burucs Z, Schmidhalter U 2006: Short-term effect of drought and salinity on growth and mineral elements in wheat seedlings. J. Plant Nutr., 29, 2227–2243.
  • Huang Y, Bie Z, He S, Hua B, Zhen A, Liu Z 2010: Improving cucumber tolerance to major nutrients induced salinity by grafting onto Cucurbita ficifolia. Environ. Exp. Bot., 69, 32–38.
  • Johkan M, Mitukuri K, Yamasaki S, Mori G, Oda M 2009: Causes of defolation and low survival rate of grafted sweet pepper plants. Sci. Hortic., 119, 103–107.
  • Kafkafi U, Xu GH 1999: Potassium nutrition for high crop yields. In Frontiers in Potassium Nutrition, Eds. Oosterhuis DM and Berkowitz GA, pp. 133–141. Potash and Phosphate Institute, Norcross, GA.
  • Kawaguchi M, Taji A, Backhouse D, Oda M 2008: Anatomy and physiology of graft incompatibity in solanaceous plants. J. Hortic. Sci. Biotechnol., 83, 581–588.
  • Kaya C, Kirnak H, Higgs D 2001: An experiment to investigate the ameliorative effects of foliar potassium phosphate sprays on salt-stressed strawberry plants. Aust. J. Agric. Res., 52, 995–1000.
  • Khalifa A, Barthakur NN, Donnelly DJ 2000: Phosphorous reduces salinity stress in micropropagated potato. Am. J. Potato Res., 77, 179–182.
  • Kramer PJ, Boyer JS 1995: Water relations of plants and soils, pp. 495–524. Academic Press, San Diego.
  • Krom MD 1980: Spectrophotometric determination of ammonia: study of a modified berthelot reaction using salicylate and dichloroisocyanurate. Analyst, 105, 305–316.
  • Kruse J, Kopriva S, Hänsch R, Krauss GJ, Mendel RR, Rennenberg H 2007: Interaction of sulfur and nitrogen nutrition in tobacco (Nicotiana tabacum) plants; significance of nitrogen source and root nitrate reductase. Plant Biol., 9, 638–646.
  • Lachica M, Aguilar A, Iañez J 1973: Análisis foliar. Métodos utilizados en la estación experimental del Zaidin. Anales de Edafología y Agrobiología, 32, 1033–1047.
  • Leonardi C, Giuffrida F 2006: Variation of plant growth and macronutrient uptake in grafted tomatoes and eggplants on three different rootstocks. Eur. J. Hortic. Sci., 71, 97–101.
  • Maathuis FJM 2009: Physiological functions of mineral macronutrients. Curr. Opin. Plant Biol., 12, 250–258.
  • Novozamsky I, Vaneck R 1977: Total sulfur determination in plant material. Fresenius' Zeitschrift für Analytische Chemie, 286, 367–368.
  • Oda M, Maruyama M, Mori G 2005: Water transfer at graft union of tomato plants grafted onto Solanum rootstocks. J. Jpn. Soc. Hortic. Sci., 74, 458–463.
  • Qi HY, Liu YF, Li D, Li TL 2006: Effects of grafting on nutrient absorption, hormone content in xylem exudation and yield of melon (Cucumis melo L.). Plant Physiol. Commun., 42, 199–202.
  • Rivero RM, Ruiz JM, Romero L 2003a: Can grafting in tomato plants strengthen resistance to thermal stress? J. Sci. Food Agric., 83, 1315–1319.
  • Rivero RM, Ruiz JM, Romero L 2004: Iron metabolism in tomato and watermelon plants: influence of grafting. J. Plant Nutr., 27, 2221–2234.
  • Rivero RM, Ruiz JM, Sánchez E, Romero L 2003b: Does grafting provide tomato plants an advantage against H2O2 production under conditions of thermal shock? Physiol. Plant., 117, 44–50.
  • Rouphael Y, Cardarelli M, Colla G, Rea E 2008: Yield, mineral composition, water relations, and water use efficiency of grafted mini-watermelon plants under deficit irrigation. HortScience., 43, 730–736.
  • Ruiz JM, Belakbir A, López-Cantarero I, Romero L 1997: Leaf-macronutrient content and yield in grafted melon plants: a model to evaluate the influence of rootstock genotype. Sci. Hortic., 71, 227–234.
  • Salehi R, Kashi A, Lee JM, Babalar M, Delshad M, Lee SG, Huh YC 2010: Leaf gas exchanges and mineral ion composition in xylem sap of Iranian melon affected by rootstocks and training methods. HortScience, 45, 766–770.
  • Salt DE, Baxter I, Lahner B 2008: Ionomics and the study of the plant ionome. Annu. Rev. Plant Biol., 59, 709–733.
  • Sánchez-Rodríguez E, Rubio-Wilhelmi MM, Blasco B, Leyva R, Romero L, Ruiz JM 2011b: Antioxidant response resides in the shoot in reciprocal grafts of drought-tolerant and drought-sensitive cultivars in tomato under water stress. Plant Sci., 188, 89–96.
  • Sánchez-Rodríguez E, Rubio-Wilhelmi MM, Cervilla LM, Blasco B, Rios JJ, Leyva R, Romero L, Ruiz JM 2010b: Study of the ionome and uptake fluxes in cherry tomato plants under moderate water stress conditions. Plant Soil, 335, 339–347.
  • Sánchez-Rodríguez E, Rubio-Wilhelmi MM, Cervilla LM, Blasco B, Rios JJ, Rosales MA, Romero L, Ruiz JM 2010a: Genotypic differences in some physiological parameters symptomatic for oxidative stress under moderate drought in tomato plants. Plant Sci., 178, 30–40.
  • Sánchez-Rodríguez E, Ruiz JM, Ferreres F, Moreno DA 2011a: Phenolic metabolism in grafted versus nongrafted cherry tomatoes under the influence of water stress. J. Agric. Food Chem., 59, 8839–8846.
  • Savvas D, Colla G, Rouphael Y, Schwarz D 2010: Amelioration of heavy metal and nutrient stress in fruit vegetables by grafting. Sci. Hortic., 127, 156–161.
  • Savvas D, Papastavrou D, Ntatsi G, Ropokis A, Olympios C, Hartmann H, Schwarz D 2009: Interactive effects of grafting and Mn-supply level on growth, yield and nutrient uptake by tomato. HortScience, 44, 1978–1982.
  • Seki T, Kawashima K, Shibata K, Inoue H, Umemiya Y 2008: Translocation of nutrients in Japanese pear 'Kosui' grafted by the 'Tree Joint' method. Acta Hortic., 800, 273–279.
  • Simonne E, Hutchinson C, DeValerio J et al. 2010: Current knowledge, gaps, and future needs for keeping water and nutrients in the root zone of vegetables grown in Florida. HortTechnology, 20, 143–152.
  • Sinha SK 1978: Influence of potassium on tolerance to stress. In Potassium in Soils and Crops, Ed. Sekhon GS, p. 223. Potash Res. Institute, New Delhi.
  • Steponkus PL 1971: Effect of frezzing on dehydrogenase activity and reduction of triphenyltetrazolium chloride. Cryobiology, 8, 570–573.
  • Tagliavani M, Bassi D, Marangoni B 1993: Growth and mineral nutrition of pear rootstocks in lime soils. Sci. Hortic., 54, 13–22.
  • Tanguilig VC, Yambao EB, Toole JCO, DeDatta SK 1987: Water stress effects on leaf elongation, leaf water potential, transpiration, and nutrient uptake of rice, maize and soybean. Plant Soil, 103, 155–159.
  • Venema JH, Dijk BE, Bax JM, van Haselt PR, Elzenga JTM 2008: Grafting tomato (Solanum lycopersicum) onto the rootstock of a high-altitude accession of Solamun habrochaites improves suboptimal-temperature tolerance. Environ. Exp. Bot., 63, 359–367.
  • Viets Jr FG 1972: Water deficits and nutrient availability. In Water Deficits and Plant Growth. Vol. III: Plant Responses and Control of Water balance, Ed. Kozlowski TT, pp. 217–240. Academic Press, New York.
  • Wolf B 1974: Improvement in the Azometine-H method for determination of boron, Comm. Soil Sci. Plant Analysis, 5, 39–44.
  • Wolf B 1982: A comprehensive system of leaf analysis and its use for diagnosing crop nutrients status. Comm. Soil Sci. Plant Analysis, 13, 1035–1059.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.