Nitrogen Uptake and Free Amino-acid Accumulation in Roots of Lotus corniculatus Cultivars under Al-stress
Open Access
|Apr 2013
References
- Abreu C.H., Muraoka T., Lavorante A.F. (2003): Exchangeable aluminum evaluation in acid soils. Scientia Agricola 60: 543-548.
- Alaiz M., Navarro J.L., Girón J., Vioque E. (1992): Amino acid analysis by high-performance liquid chromatography after derivatization with diethyl ethoxymethylenemalonate. Journal of Chromatography 591: 181-186.
- Baligar V.C., Grunes D.L., Belesky D.P., Clark, R.B. (2001): Mineral composition of forage legumes as influected by aluminium. Journal of Plant Nutrition 24: 215-227.
- Diaz P., Borsani O., Monza J. (2005): Lotus-related species and their agronomic importance. In: Márquez A.J. (ed):handbook. Springer Verlag, Berlin, Heidelberg, pp. 25-39.
- Gaufichon L., Reisdorf-Cren M., Rothstein S.J., Chardon F., Suzuki A. (2010): Biological functions of asparagine synthetase in plants. Plant Science 179: 141-153.
- Handberg K., Stougaard J. (1992):diploid legume species for classical and molecular genetics. Plant Journal 2: 487-496.
- Kimraide T.B. (1991): Identity of the rhizotoxic aluminium species. Plant Soil 134: 167-78.
- Logue D., von Wirén N. (2004): Regulatory levels for the transport of ammonium in plant roots. Journal of Experimental Botany 55: 1293-1305.
- Mattioli R., Merchese D., D’Angeli S., Altamura M.M., Costantino P., Trovato M. (2008): Modulation of intracellular proline levels affects flowering time and inflorescence architecture in Arabidopsis. Plant Moecular Biology 66: 277-288.
- Paľove-Balang P., Mistrík I. (2002): Control of nitrate uptake by phloem-translocated gluatmine inseedlings. Plant Biology 4: 440-445.
- Paľove-Balang P., Mistrík I. (2007): Impact of low pH and aluminium on nitrogen uptake and metabolism in roots of Lotus japonicus. Biologia 62: 715-719.
- Paľove-Balang P., Mistrík I. (2011): Effect of aluminium on nitrogen assimilation in roots of. Plant Biosystems 145: 527-531.
- Pavlovkin J., Paľove-Balang P., Kolarovič L., Zelinová V. (2009): Response of Latin-American cultivars ofto Al and low pH stresses. Journal of Plant Physiology 166: 1479-1487.
- Rao I., Zeigler R.S., Vera R., Sarkarung S. (1993): Selection for acid-soil tolerance in crops. Bioscience 43: 454-465.
- Samac D.A., Tesfaye M. (2003): Plant improvement for tolerance to aluminum in acid soils - a review. Plant Cell Tissue and Organ Culture 75: 189-207.
- Sharma S.S., Dietz K.J. (2006): The significance of amino acids and amino acid-derived molecules in plant responses and adaptation to heavy metal stress. Journal of Experimental Botany 57: 711-726.
- Szabados L., Savouré A. (2010): Proline: a multifunctional amino acid. Trends in Plant Science 15: 89-97.
- Yokoyama S., Hiramatsu JI. (2003): A modified ninhydrin reagent using ascorbic acid instead of potassium cyanide. Journal of Bioscience and Bioengineering 95: 204-205.
Language: English
Page range: 5 - 9
Published on: Apr 13, 2013
Published by: Mendel University in Brno
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year
Keywords:
Related subjects:
© 2013 Peter Palove-Balang, Anna Murinova, Veronika Zelinova, published by Mendel University in Brno
This work is licensed under the Creative Commons License.