384
Views
31
CrossRef citations to date
0
Altmetric
Original Articles

Effect of silicon on the alleviation of boron toxicity in wheat growth, boron accumulation, photosynthesis activities, and oxidative responses

, , &
Pages 2458-2467 | Received 28 Feb 2015, Accepted 02 Nov 2016, Published online: 20 Oct 2017

References

  • Ashraf, M. 2009. Biotechnological approach of improving plant salt tolerance using antioxidants as markers. Biotechnology Advances 27:84–93.
  • Bañón, S., J. Miralles, J. Ochoa, and M. J. Sánchez-Blanco. 2012. The effect of salinity and high boron on growth, photosynthetic activity and mineral contents of two ornamental shrubs. Scientia Horticulturae 39:188–94.
  • Cakmak, I., D. Strbac, and H. Marschner. 1993. Activities of hydrogen peroxide-scavenging enzymes in germinating wheat seeds. Journal of Experimental Botany 44:127–32.
  • Chance, B., and C. Maehly. 1955. Assay of catalases and peroxidases. Methods in Enzymology 2:764–75.
  • Coskun, Y., P. Olgunsoy, N. Karatas, F. Bulut, and F. Yarar. 2014. Mannitol application alleviates boron toxicity in wheat seedlings. Communications in Soil Science and Plant Analysis 45:944–52.
  • Dhindsa, R. S., P. Plumb-Dhindsa, and T. A. Thorpe. 1981. Leaf senescence: Correlated with increased levels of membrane permeability and lipid peroxidation, and decreased levels of superoxide dismutase and catalase. Journal of Experimental Botany 32:93–01.
  • Doncheva, S. N., C. Poschenrieder, Z. I. Stoyanova, K. Georgieva, M. Velichkova, and J. Barceló. 2009. Silicon amelioration of manganese toxicity in Mn-sensitive and Mn-tolerant maize varieties. Environmental and Experimental Botany 65:189–97.
  • Efimova, G. V., and S. A. Dokynchan. 1986. Anatomo-morphological construction of epidermal tissue of rice leaves and increasing its protection function under silicon effect. Agricultural Biology 3:57–61.
  • Epstein, E. 1999. Silicon. Annual Review of Plant Physiology and Plant Molecular Biology 50:641–64.
  • Giansoldati, V., E. Tassi, E. Morelli, E. Gabellieri, F. Pedron, and M. Barbafieri. 2012. Nitrogen fertilizer improves boron phytoextraction by Brassica juncea grown in contaminated sediments and alleviates plant stress. Chemosphere 87:1119–25.
  • Gong, H., X. Zhu, K. Chen, S. Wang, and C. Zhang. 2005. Silicon alleviates oxidative damage of wheat plants in pots under drought. Plant Science 169:313–21.
  • Güneş, A., and M. Alpaslan. 2000. Boron uptake and toxicity in maize genotypes in relation to boron and phosphorus supply. Journal of Plant Nutrition 23:541–50.
  • Güneş, A., M. Alpaslan, Y. Çikili, and H. Özcan. 2000. The effect of zinc on alleviation of boron toxicity in tomato plants (Lycopersicon esculentum L.). Turkish Journal of Agriculture and Forestry 24:505–09.
  • Gunes, A., A. Inal, E. G. Bagci, S. Coban, and D. J. Pilbeam. 2007a. Silicon mediates changes to some physiological and enzymatic parameters symptomatic for oxidative stress in spinach (Spinacia oleracea L.) grown under B toxicity. Scientia Horticulturae 113:113–19.
  • Gunes, A., A. Inal, E. G. Bagci, S. Coban, and O. Sahin. 2007b. Silicon increases boron tolerance and reduces oxidative damage of wheat grown in soil with excess boron. Biologia Plantarum 51:571–74.
  • Gupta, U. C., Y. W. Jame, C. A. Campbell, A. J. Leyshon, and W. Nicholaichuk. 1985. Boron toxicity and deficiency: A review. Canadian Journal of Soil Science 65:381–09.
  • Huang, C., and R. D. Graham. 1990. Resistance of wheat genotypes to boron toxicity is expressed at the cellular level. Plant and Soil 126:295–00.
  • Hosseini, S. M., M. Maftoun, N. Karimian, A. Ronaghi, and Y. Emam. 2007. Effect of zinc × boron interaction on plant growth and tissue nutrient concentration of corn. Journal of Plant Nutrition 30:773–81.
  • Inal, A., D. J. Pilbeam, and A. Güneş. 2009. Silicon increases tolerance to boron toxicity and reduces oxidative damage in barley. Journal of Plant Nutrition 32:112–28.
  • Jefferies, S. P., M. A. Pallotta, J. G. Paull, A. Karakousis, J. M. Kretschmer, S. Manning, A. K. M. R. Islam, P. Langridge, and K. J. Chalmers. 2000. Mapping and validation of chromosome regions conferring boron toxicity tolerance in wheat (Triticum aestivum). Theoretical and Applied Genetics 101:767–77.
  • Karabal, E., M. Yücel, and H. A. Öktem. 2003. Antioxidant responses of tolerant and sensitive barley cultivars to boron toxicity. Plant Science 164:925–33.
  • Kaya, C., A. L. Tuna, M. Dikilitas, M. Ashraf, S. Koskeroglu, and M. Guneri. 2009. Supplementary phosphorus can alleviate boron toxicity in tomato. Scientia Horticulturae 121:284–88.
  • Kaya, C., A. L. Tuna, M. Guneri, and M. Ashraf. 2011. Mitigation effects of silicon on tomato plants bearing fruit grown at high boron levels. Journal of Plant Nutrition 34:1985–94.
  • Koohkan, H., and M. Maftoun. 2015. Effect of nitrogen on the alleviation of boron toxicity in rice (Oryza sativa L.). Journal of Plant Nutrition 38:1323–1335.
  • Leaungthitikanchana, S., T. Fujibe, M. Tanaka, S. Wang, N. Sotta, J. Takano, and T. Fujiwara. 2013. Differential expression of three BOR1 genes corresponding to different genomes in response to boron conditions in hexaploid wheat (Triticum aestivum L.). Plant and Cell Physiology 54:1056–63.
  • Liang, Y., Q. Chen, Q. Liu, W. Zhang, and R. Ding. 2003. Exogenous silicon (Si) increases antioxidant enzyme activity and reduces lipid peroxidation in roots of salt-stressed barley (Hordeum vulgare L.). Journal of Plant Physiology 160:1157–64.
  • Mittler, R. 2002. Oxidative stress, antioxidants and stress tolerance. Trends in Plant Science 7:405–10.
  • Nable, R. O., G. S. Banuelos, and J. G. Paull. 1997. Boron toxicity. Plant and Soil 193:181–98.
  • Parks, J. L., and M. Edwards. 2005. Boron in the environment. Critical Reviews in Environmental Science and Technology 35:81–14.
  • Rani, C., P. K. Sharma, B. Kumar, R. Angrish, and K. S. Datta. 2008. Alleviation of boron-salt toxicity by calcium in wheat through associated changes in anti-oxidant defense system. Indian Journal of Plant Physiology 13:21–8.
  • Reid, R. J., J. E. Hayes, A. Post, J. C. R. Stagoulis, and R. D. Graham. 2004. A critical analysis of the causes of boron toxicity in plants. Plant Cell and Environment 25:1405–14.
  • Rerkasem, B., and S. Jamjod. 1997. Genotypic variation in plant response to low boron and implications for plant breeding. Plant and Soil 193:169–80.
  • Romero-Aranda, M. R., O. Jurado, and J. Cuartero. 2006. Silicon alleviates the deleterious salt effect on tomato plant growth by improving plant water status. Journal of Plant Physiology 163:847–55.
  • Shen, X., Y. Zhou, L. Duan, Z. Li, A. E. Eneji, and J. Li. 2010. Silicon effects on photosynthesis and antioxidant parameters of soybean seedlings under drought and ultraviolet-B radiation. Journal of Plant Physiology 167:1248–52.
  • Shi, G., Q. Cai, C. Liu, and L. Wu. 2010. Silicon alleviates cadmium toxicity in peanut plants in relation to cadmium distribution and stimulation of antioxidative enzymes. Plant Growth Regulation 61:45–52.
  • Singh, J. P., D. J. Dahiya, and R. P. Narwal. 1990. Boron uptake and toxicity in wheat in relation to zinc supply. Fertilizer Research 24:105–10.
  • Smith, T. E., S. R. Grattan, C. M. Grieve, J. A. Poss, A. E. Läuchli, and D. L. Suarez. 2013. pH dependent salinity-boron interactions impact yield, biomass, evapotranspiration and boron uptake in broccoli (Brassica oleracea L.). Plant and Soil 370:541–54.
  • Soylemezoglu, G., K. Demir, A. Inal, and A. Gunes. 2009. Effect of silicon on antioxidant and stomatal response of two grapevine (Vitis vinifera L.) rootstocks grown in boron toxic, saline and boron toxic-saline soil. Scientia Horticulturae 123:240–46.
  • Stangoulis, J. C. R., and R. J. Reid. 2002. Boron toxicity in plants and animals. In Boron in plant and animal nutrition, eds. H. Goldbach, B. Rerkasem, M. A. Wimmer, P. H. Brown, M. Thellier, and R. W. Bell, 227–40. New York: Kluwer Academic/Plenum Publishers.
  • Stiles, A. R., D. Bautista, E. Atalay, M. Babaoğlu, and N. Terry. 2010. Mechanisms of boron tolerance and accumulation in plants: A physiological comparison of the extremely boron-tolerant plant species, Puccinellia distans, with the moderately boron-tolerant Gypsophila arrostil. Environmental Science and Technology 44:7089–95.
  • Torun, A., I. Gültekin, M. Kalayci, A. Yilmaz, S. Eker, and I. Cakmak. 2001. Effects of zinc fertilization on grain yield and shoot concentrations of zinc, boron, and phosphorus of 25 wheat cultivars grown on a zinc-deficient and boron-toxic soil. Journal of Plant Nutrition 24:1817–29.
  • Turan, M. A., N. Taban, and S. Taban. 2009. Effect of calcium on the alleviation of boron toxicity and localization of boron and calcium in cell wall of wheat. Notulae Botanicae Horti Agrobotanici Cluj-Napoca 37:99–103.
  • Wang, Y., A. Stass, and W. J. Horst. 2004. Apoplastic binding of aluminum is involved in silicon-induced amelioration of aluminum toxicity in maize. Plant Physiology 136:3762–70.
  • Yau, S. K., and J. Ryan. 2008. B toxicity tolerance in crops: A viable alternative to soil amelioration. Crop Science 48:854–65.

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.