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Tolerance to water stress in boron-deficient tea (Camellia sinensis) plants Cover

Tolerance to water stress in boron-deficient tea (Camellia sinensis) plants

Open Access
|May 2012

References

  1. Apostol, K.G., Zwiazek, J.J., 2004. Boron and water uptake in jack pine () seedlings. Environ. Exp. Bot. 51: 145-153.
  2. Baker, N.R., Bowyer, J.R., 1994. Photo-inhibition of photosynthesis. From molecular mechanisms to the field. Oxford, BIOS Scientific Publishers, UK.
  3. Bolanos, L., Lukaszewski, K., Bonilla, I., Blevins, D., 2004. Why boron? Plant Physiol. Biochem. 42: 907-912.
  4. Camacho-Cristóbal, J. J., González-Fontes, A., 2007. Boron deficiency decreases plasmalemma H-ATPase expression and nitrate uptake, and promotes ammonium assimilation into asparagines in tobacco roots. Planta 226: 443-451.
  5. Chaves, M.M., Marco, J.P., Pertera, S., 2003. Understanding plant responses to drought from genes to the whole plant. Funct. Plant Biol. 30: 239-64.
  6. Clarkson, D.T., Carvajal, M.A., Henzler, T., Waterhouse, R.N., Smyth, A.J., Cooke, D.T., Steudle, E., 2000. Root hydraulic conductance: diurnal aquaporin expression and the effects of nutrient stress. J. Exp. Bot. 51: 61-70.
  7. De, Costa, W.A.J.M., Mohotti, A.J., Wijeratne, M.A., 2007. Ecophysiology of Tea. Braz. J. Plant Physiol. 19: 299-332.
  8. Flexas, J., Barón, M., Bota, J., Ducruet, J-M., Gallé, A., Galmés, J., 2009. Photosynthesis limitations during water stress acclimation and recovery in the drought-adaptedhybrid Richter-110 (x). J. Exp. Bot. 60: 2361-2377.
  9. Ghanati, F., Morita, A., Yokota, H., 2005. Effects of aluminum on the growth of tea plant and activation of antioxidant system. Plant Soil 276: 133-141.
  10. Hajiboland, R., Amtrazad, F., 2010. Drought tolerance in Zn-deficient red cabbage (L. var.f.) plants. Hort. Sci. (Prague) 37: 88-98.
  11. Hajiboland, R., Bastani, S., Bahrami, Rad, S., 2011. Effect of light intensity on photosynthesis and antioxidant defense in boron deficient teaplants. Acta Biol. Szeged. 55: 265-272.
  12. Hajiboland, R., Farhanghi, F., 2010. Remobilization of boron, photosynthesis, phenolic metabolism and antioxidant defense capacity in boron deficient turnip (L.) plants. Soil Sci. Plant Nutr. 56: 427-437.
  13. Hajiboland, R., Farhanghi, F., 2011. Effect of low boron supply in turnip (L.) plants under drought stress. Biol. Plant. 55: 775-778.
  14. Hajiboland, R., Hasani, B.D., 2007. Involvement of antioxidant defense capacity of rice and sunflower in their response to Cu and Mn toxicity under different light intensities. J. Sci. I.R. Iran 18: 103-113.
  15. Han, S., Chen, L.S., Jiang, H.X., Smith, B.R., Yang, L.T., Xie, C.Y., 2008. Boron deficiency decreases growth and photosynthesis, and increases starch and hexoses in leaves of citrus seedlings. J. Plant Physiol. 165: 1331-1341.
  16. Hu, H., Brown, P., 1997. Absorption of boron by plant roots. Plant Soil 93:49-58.
  17. Huang, L., Wang, K., Bell, R.W., 1997. Water supply influences boron uptake by transplanted oilseed rape grown in low boron soil. In: Bell R. W., Perkasem B. (eds). Boron in soil and plants. Kluwer Academic Publishers, Dordrecht, Netherlands: 157-160.
  18. Lohse, G., 1982. Microanalytical azomethine-H method for boron determination in plant tissues. Commun. Soil Sci. Plant Anal. 13: 127-134.
  19. Marschner, H., 1995. Mineral nutrition of higher plants. 2Ed., London, Academic Press, UK.
  20. Molinari, H.B.C., Marur, C.J., Daros, E., Campos, M.K.F., Carvalho, J.F.R.P., Filh, J.C.B., Pereira, L.F.P., Vieira, L.G.E., 2007. Evaluation of the stress-inducible production of proline in transgenic sugarcane (spp.): osmotic adjustment chlorophyll fluorescence and oxidative stress. Physiol. Plant. 130: 218-229.
  21. Noppakoowong, R., 1991. Diagnosis of boron deficiency in black gram. Ph. D dissertation, Murdoch University, Australia.
  22. Pant, J., Rerkasem, B., Noppakoonwong, R., 1998. Effect of water stress on the boron response of wheat genotypes under low boron field conditions. Plant Soil 202: 193-200.
  23. Plesinčar, M., Kastori, R., Sakac, Z., Pankovic, D., Petrovic, N., 1997. Boron as limiting factor in photosynthesis and growth of sunflower plants in relation to phosphate supply. Agrichimica 41: 144-154.
  24. Reddy, A.R., Chaitanya, K.V., Vivekanandan, M., 2004. Drought-induced responses of photosynthesis and metabolism in higher plants. J. Plant Physiol. 161: 1189-1202.
  25. Seki, M., Umezawa, T., Urano, K., Shinozaki, K., 2007. Shinozaki Regulatory metabolic networks in drought stress responses. Curr. Opin. Plant Biol. 10: 296-302.
  26. Shorrocks, V.M., 1997. The occurrence and correction of boron deficiency. Plant Soil 193: 121-148.
  27. Tang, A.C., Kawamitsu, Y., Kanechi, M., Boyer, J.S., 2002. Photosynthetic oxygen evolution at low water potential in leaf discs lacking an epidermis. Ann. Bot. 89: 861-870.
  28. Upadhyaya, H., Panda, S.K., Dutta, B.K., 2008. Variation of physiological and antioxidative responses in tea cultivars subjected to elevated water stress followed by rehydration recovery. Acta Physiol. Plant. 30: 457-468.
  29. Wang, F., Zeng, B., Sun, Z.X., Zhu, C., 2009. Relationship between proline and Hg-induced oxidative stress in a tolerant rice mutant. Arch. Environ. Contam. Toxicol. 56: 723-731.
  30. Zhao, D., Oosterhuis, D.M., 2002. Cotton carbon exchange, non-structural carbohydrates, and boron distribution in tissues during development of boron deficiency. Field Crop Res. 78: 75-77.
DOI: https://doi.org/10.2478/v10245-012-0005-1 | Journal eISSN: 2083-5965 | Journal ISSN: 0867-1761
Language: English, Polish
Page range: 41 - 51
Published on: May 17, 2012
Published by: Polish Society for Horticultural Sciences (PSHS)
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year
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© 2012 Roghieh Hajiboland, Soodabe Bastani, published by Polish Society for Horticultural Sciences (PSHS)
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.