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Agronomy & Crop Ecology

Water submersion of seeds from three bean cultivars

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Pages 51-60 | Received 15 Dec 2014, Accepted 15 Jun 2015, Published online: 27 Feb 2016

References

  • Bailey-Serres, J., & Voesenek, L. A. C. J. (2008). Flooding stress: acclimations and genetic diversity. Annual Review of Plant Biology, 59, 313–339.10.1146/annurev.arplant.59.032607.092752
  • Bailey-Serres, J., & Voesenek, L. A. C. J. (2010). Life in the balance: a signaling network controlling survival of flooding. Current Opinion in Plant Biology, 13, 489–494.10.1016/j.pbi.2010.08.002
  • Bailey-Serres, J. Lee, S.C. and Brinton, E. (2012). Waterproofing crops: Effective flooding survival strategies. Plant Physiology, 160, 1698–1709.10.1104/pp.112.208173
  • Banach, K., Banach, A. M., Lamers, L. P. M., Kroon, H., Bennicelli, R. P., Smits, A. J. M., & Visser, E. J. W. (2009). Differences in flooding tolerance between species from two wetland habitats with contrasting hydrology: Implications for vegetation development in future floodwater retention areas. Annals of Botany, 103, 341–351.
  • Bewley, J. D., Bradford, K. J., Hilhorst, H. W. M., & Nonogaki, H. (2013). Seeds: Physiology of development, germination and dormancy. New York, NY: Springer.10.1007/978-1-4614-4693-4
  • Bradford, M. M. (1976). A rapid and sensitive method for the quantitation of microgram quantities of protein utilising the principle of protein-dye binding. Anaytical Biochemistry, 72, 248–254.
  • Brasil. (2009). Rules for Seed Analysis. Brasília: Ministério da Agricultura.
  • Choudhary, A. K., Sultana, R., Pratap, A., Nadarajan, N., & Jha, U. C. (2011). Breeding for abiotic stresses in pigeonpea. Journal of Food Legumes, 24, 165–174.
  • Custódio, C. C., et al. (2002). Effects in the germination and vigour of water submersion of bean seeds. Revista Brasileira de Sementes, 24, 49–54.10.1590/S0101-31222002000100009
  • Custódio, C. C., Machado-Neto, N. B., Ito, H. M., & Vivan, M. R. (2009). Water submersion of bean seeds in the vigour evaluation. Revista Brasileirade Ciencias Agrarias, 4, 261–266.
  • Ferreira, D. F. (2011). SISVAR: A computer statistical analysis system. Ciência e Agrotecnologia, 35, 1039–1042.
  • Fukao, T., & Bailey-Serres, J. (2004). Plant responses to hypoxia – is survival a balancing act? Trends in Plant Science, 9, 449–456.10.1016/j.tplants.2004.07.005
  • Hashiguchi, A., Sakata, K., & Komatsu, S. (2009). Proteome analysis of early-stage soybean seedlings under flooding stress. Journal of Proteome Research, 8, 2058–2069.10.1021/pr801051m
  • He, Y., Zhang, J., Ma, H., Tu, Y., Chen, J., Chen, F., & Xue, X. (2012). Aerenchyma formation and increased accumulation of free proline in roots of xerophytic Aloe vera L. cultured in nutrient solutions. Journal of Medicinal Plants Research, 6, 243–252.
  • Jackson, M. B., Ishizawa, K., & Ito, O. (2009). Evolution and mechanisms of plant tolerance to flooding stress. Annals of Botany, 103, 137–142.
  • Kato-Noguchi, H. (2001). Anoxia tolerance and alcohol dehydrogenase activity in lettuce seedlings. Plant Growth Regulation, 33, 199–203.10.1023/A:1017558523090
  • Kishor, P. K., Sangam, S., Amrutha, R. N., Laxmi, P. S., Naidu, K. R., Rao, K. R. S. S., & Sreenivasulu, N. (2005). Regulation of proline biosynthesis, degradation, uptake and transport in higher plants: Its implications in plant growth and abiotic stress tolerance. Current Science, 88, 424–438.
  • Kranner, I., Minibayeva, F. V., Beckett, R. P., & Seal, C. E. (2010). What is stress? Concepts, definitions and applications in seed science. New Phytologist, 188, 655–673.10.1111/j.1469-8137.2010.03461.x.
  • Lenssen, J. P. M., Menting, F. B. J., van der Putten, H. W., & Blom, C. W. P. M. (1999). Control of plant species richness and zonation of functional groups along a freshwater flooding gradient. Oikos, 86, 523–534.10.2307/3546656
  • Machado-Neto, N. B., Custodio, C. C., Gatti, A. B., Priolli, M. R., & Cardoso, V. J. M. (2004). Proline: Use as an indicator of temperature stress in bean seeds. Cropp Breeding and Applied Biotechnology, 4, 330–337.10.12702/1984-7033
  • Marcos Filho, J. (2005). Seed physiology of cultivated plants. Fealq: Piracicaba.
  • Moriya, L. M., et al. (2015). Seed vigour better to be assessed by physiological markers rather than expression of antioxidant enzymes in the common bean (Phaseolus vulgaris L.). Australian Journal of Crop Science, 9, 30–40.
  • Nakagawa, J. (1999). Vigour tests based in seedling development. In F. C. Krzyzanowski, et al. (Eds.), Vigor de sementes: Conceitos e testes Abrates: Londrina pp. 2.1–2.24.
  • Parent, C., Capelli, N., Beger, A., Crevecoeur, M., & Dat, J. (2008). An overview of plant responses to soil waterlogging. Plant Stress, 2, 20–27.
  • Sadiq, I., Fanucchi, F., Paparelli, E., Alpi, E., Bachi, A., Alpi, A., & Perata, P. (2011). Proteomic identification of differentially expressed proteins in the anoxic rice coleoptile. Journal of Plant Physiology, 168, 2234–2243.10.1016/j.jplph.2011.07.009
  • Sairam, R. K., Dharmar, K., Lekshmy, S., & Chinnusamy, V. (2011). Expression of antioxidant defense genes in mung bean (Vigna radiata L.) roots under water-logging is associated with hypoxia tolerance. Acta Physiologiae Plantarum, 33, 735–744.10.1007/s11738-010-0598-3
  • Saka, N., & Izawa, T. (1999). Varietal differences in the survival rate of sprouting rice seed (Oryza sativa L.) under highly reduced soil conditions. Plant Production Science, 2, 136–137.10.1626/pps.2.136
  • Santosa, I. E., Ram, P. C., Boamfa, E. I., & Laarhoven, L. J. J. (2007). Patterns of peroxidative ethane emission from submerged rice seedlings indicate that damage from reactive oxygen species takes place during submergence and is not necessarily a post-anoxic phenomenon. Planta, 226, 193–202.10.1007/s00425-006-0457-z
  • Shi, F., Yamamoto, R., Shimamura, S., Hiraga, S., Nakayama, N., Nakamura, T., & Komatsu, S. (2008). Cytosolic ascorbate peroxidase 2 (cAPX 2) is involved in the soybean response to flooding. Phytochemistry, 69, 1295–1303.10.1016/j.phytochem.2008.01.007
  • Singh, D. P., & Singh, B. B. (2011). Breeding for tolerance to abiotic stresses in mungbean. Journal of Food Legumes, 24, 83–90.
  • Szabados, L., & Savouré, A. (2010). Proline: A multifunctional amino acid. Trends in Plant Science, 15, 89–97.10.1016/j.tplants.2009.11.009
  • van Dongen, J. T., Frohlich, A., Ramirez-Aguilar, S. J., Schauer, N., Fernie, A. R., Erban, A., … Geigenberger, P. (2009). Transcript and metabolite profiling of the adaptive response to mild decreases in oxygen concentration in the roots of Arabidopsis plants. Annals of Botany, 103, 269–280.
  • Verbruggen, N., & Hermans, C. (2008). Proline accumulation in plants: A review. Amino Acids, 35, 753–759.10.1007/s00726-008-0061-6
  • Vieira, R. D., & Krzyzanowski, F. C. (1999). Electrical conductivity test. In F. C. Krzyzanowski, et al. (Eds.), Vigor de sementes: Conceitos e testes (pp. 1–26). Londrina: Abrates.