Contribution of organic and inorganic solutes to osmotic adjustment of physic nut under salinity

Authors

  • Evandro Nascimento da Silva Universidade Federal do Cearé
  • Joaquim Albenisio Gomes Silveira Federal University of Ceará image/svg+xml
  • Cícera Raquel Fernandes Rodrigues Federal University of Ceará image/svg+xml
  • Cristina Silva de Lima Federal University of Ceará image/svg+xml
  • Ricardo Almeida Viégas Federal University of Campina Grande image/svg+xml

DOI:

https://doi.org/10.1590/S1678-3921.pab2009.v44.1756

Keywords:

<i>Jatropha curcas</i>, salt stress, osmotic potential, organic solutes

Abstract

The objectives of this work were to evaluate the organic and inorganic solutes accumulation and measure their contribution to the osmotic adjustment of physic nut (Jatropha curcas L.) leaves under salinity. The experiment was carried out using a completely randomized design with five treatments (0, 25, 50, 75, and 100 mmol L-1 of NaCl) and four replications. Plants were hydroponically grown under greenhouse controlled conditions of photoperiod (12 hours), temperature (average of 28ºC), relative humidity (average of 65%), and with maximum photosynthetically active radiation average of 700 µmol m-1 s-1. The leaf osmotic potential decreased progressively, changing from -0.84 to -2.05 MPa, while the relative water content increased in the 75 and 100 mmol L-1 treatments. The relative contribution of Na+ and Cl- ions were the most important quantitatively for the leaf osmotic adjustment of salt-treated plants, 52 and 20%, respectively. The relative contribution of K+ decreased significantly with added salt, changing from 17 to 5% as the NaCl level increased from 25 to 100 mmol L-1. The average contribution of sugars, amino acids, glycinebetaine, and proline was approximately 5.5, 6, 4, and 0.03%, respectively. The physic nut leaves exhibited an effective osmotic adjustment under salinity, maintaining their hydration status, mainly via Na+ and Cl- accumulation. Glycinebetaine was more important to osmotic adjustment than proline in both salt-treated and untreated plants.

Author Biographies

  • Evandro Nascimento da Silva, Universidade Federal do Cearé
    Mestre em Agronomia, Doutorando em Bioquímica vegetal
  • Joaquim Albenisio Gomes Silveira, Federal University of Ceará
    Professor associado do Departamento de Bioquímica e Biologia Molecular e Pesquisador nível 1 do CNPq (CA de Agronomia).
  • Cícera Raquel Fernandes Rodrigues, Federal University of Ceará
    Mestre em Agronomia e Doutoranda em Bioquímica vegetal
  • Cristina Silva de Lima, Federal University of Ceará
    Bacharel em Ciências Biológicas e Mestranda em Bioquímica Vegetal
  • Ricardo Almeida Viégas, Federal University of Campina Grande
    Mestres em Solos e Dr. em Bioquímica Vegetal

Published

2010-11-18

Issue

Section

PLANT PHYSIOLOGY

How to Cite

Silva, E. N. da, Silveira, J. A. G., Rodrigues, C. R. F., Lima, C. S. de, & Viégas, R. A. (2010). Contribution of organic and inorganic solutes to osmotic adjustment of physic nut under salinity. Pesquisa Agropecuaria Brasileira, 44(5), 437-445. https://doi.org/10.1590/S1678-3921.pab2009.v44.1756

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