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Photochemistry and gas exchange in cold conditions in Zn-deficient red cabbage (Brassica oleracea L. var. capitata f. rubra) plants Cover

Photochemistry and gas exchange in cold conditions in Zn-deficient red cabbage (Brassica oleracea L. var. capitata f. rubra) plants

Open Access
|Apr 2012

References

  1. Alberdi, M., Corcuera, L.J., 1991. Cold acclimation in plants. Phytochem. 30: 3177-3184.
  2. Anderson, O.M., Jordheim, M., 2006. The Anthocyanins. In: Flavonoids: chemistry, biochemistry and applications. O.M. Anderson and K.R. Markham (eds), CRC Press, Boca Raton: 471-553.
  3. Antikainen, M., Pihakaski, S., 1994. Early developments in RNA, protein, and sugar levels during cold stress in winter rye () leaves. Ann. Bot. 74: 335-341.
  4. Apel, K., Hirt, H., 2004. Reactive oxygen species: metabolism, oxidative stress, and signal transduction. Ann. Rev. Plant Biol. 55: 373-399.
  5. Chen, W., Yang, X., He, Z., Feng, Y., Hu, F., 2007. Differential changes in photosynthetic capacity, 77K chlorophyll fluorescence and chloroplast ultrastructure between Zn-efficienct and Zn-inefficient rice genotypes (L.) under low Zn stress. Physiol. Plant. 132: 89-101.
  6. Elstner, E.F., Oswald, W., 1994. Mechanisms of oxygen activation during plant stress. Proc. Royal. Soc. Edinburgh, 102B: 131-154.
  7. Ensmlnger, I., Busch, F., Huner, N.P.A., 2006. Photostasis and cold acclimation: sensing low temperature through photosynthesis. Physiol. Plant. 126: 28-44.
  8. Gray, G.R., Hope, B.J., Qin, X., Taylor, B.G., Whitehead, C.L., 2003. The characterization of photoinhibition and recovery during cold acclimation in Arabidopsis thaliana using chlorophyll fluorescence imaging. Physiol. Plant. 119: 365-375.
  9. Guy, C.L., Huber, J.L.A., Huber, S.C., 1992. Sucrose phosphate synthase and sucrose accumulation at low temperature. Plant Physiol. 100: 502-508.
  10. Hajiboland, R., Amirazad, F., 2010. Growth, photosynthesis and antioxidant defence system in Zn-deficient red cabbage plants. Plant Soil Environ. 56: 209-217.
  11. Hajiboland, R., Beiramzadeh, N., 2008. Growth, gas exchange and function of antioxidant defense system in two contrasting rice genotypes under Zn and Fe deficiency and hypoxia. Acta Biol. Szeged. 52: 283-294.
  12. Johnson, C.M., Stout, P.R., Broyer, T.C., Carlton, A.B., 1957. Comparative chloride requirements of different plant species. Plant Soil 8: 337-353.
  13. Kaur, C., Kapoor, H.C., 2001. Antioxidants in fruits and vegetables-the millenium's health. Int. J. Food Sci. Tech. 36: 703-725.
  14. Lin, K.H., Hwang, W.C., Lo, H.F., 2007. Chilling stress and chilling tolerance of sweet potato as sensed by chlorophyll fluorescence. Photosynthetica 45: 628-632.
  15. Marschner, H., 1995. Mineral Nutrition of Higher Plants. Academic Press Inc., London, United Kingdom.
  16. Maxwell, K., Johnson, G.N., 2000. Chlorophyll fluorescence: a practical guide. J. Exp. Bot. 51: 659-668.
  17. Müller, P., Li, X-P., Niyogi, K.K., 2001. Non-photochemicalquenching. A response to excess light energy. Plant Physiol. 125: 1558-1566.
  18. Ouzounidou, G., Ilias, I., Kabataidid, M., Chatzimichail, A., 2003. Comparative study of nutrient deficiencies on growth and photochemistry of tobacco. J. Plant Nutr. 26: 1605-1616.
  19. Pätskkä, E., Kairavuo, M., Šeršen, F., Aro, E-M., Tyystjärvi, E., 2002. Excess copper predisposes photosystem II to photoinhibition in vivo by outcompeting iron and causing decrease in leaf Chlorophyll. Plant Physiol. 129: 1359-1367.
  20. Sasaki, H., Ichimura, K., Oda, M., 1996. Changes in sugar content during cold acclimation and deacclimation of cabbage seedlings. Ann. Bot. 78: 365-369.
  21. Sharma, P.N., Tripathi, A., Bisht, S.S., 1995. Zinc requirement for stomatal opening in cauliflower. Plant Physiol. 107: 751-756.
  22. Somersalo, S., Kruse, G.H., 1989. Photoinhibition at chilling temperature. Fluorescence characteristics of unhardened and cold acclimated spinach leaves. Planta 177: 409-416.
  23. Steponkus, P.L., 1984. Role of the plasma membrane in freezing injury and cold acclimation. Ann. Rev. Plant Physiol. 35: 543-584.
  24. Wang, H., Jin, J.Y., 2005. Photosynthetic rate, chlorophyll fluorescence parameters, and lipid peroxidation of maize leaves as affected by zinc deficiency. Photosynthetica 43: 591-596.
  25. Weiser, R.L., Wallner, S.J., Waddell, J.W., 1990. Cell wall and extension mRNA changes during cold acclimation of pea seedlings. Plant Physiol. 93: 1021-1026.
DOI: https://doi.org/10.2478/v10245-012-0001-5 | Journal eISSN: 2083-5965 | Journal ISSN: 0867-1761
Language: English, Polish
Page range: 3 - 11
Published on: Apr 3, 2012
Published by: Polish Society for Horticultural Sciences (PSHS)
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year
Related subjects:

© 2012 Roghieh Hajiboland, Fahimeh Amirazad, published by Polish Society for Horticultural Sciences (PSHS)
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.