Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8353248 | Plant Physiology and Biochemistry | 2018 | 32 Pages |
Abstract
Salinity is one of major abiotic stresses affecting Brassica crop production. Here we present investigations into the physiological, biochemical, and hormonal components of the short-term salinity stress response in Chinese cabbage seedlings, with particular emphasis on the biosynthesis and metabolism of auxin indole-3-acetic acid (IAA). Upon salinity treatments (50-200â¯mM NaCl) IAA level was elevated in a dose dependent manner reaching 1.6-fold increase at the most severe salt treatment in comparison to the control. IAA precursor profiling suggested that salinity activated the indole-3-acetamide and indole-3-acetaldoxime biosynthetic pathways while suppressing the indole-3-pyruvic acid pathway. Levels of the IAA catabolites 2-oxoindole-3-acetic acid and indole-3-acetic acid-aspartate increased 1.7- and 2.0-fold, respectively, under the most severe treatment, in parallel with those of IAA. Conversely, levels of the ester conjugate indole-3-acetyl-1-O-Ã-d-glucose and its catabolite 2-oxoindole-3-acetyl-1-O-Ã-d-glucose decreased 2.5- and 7.0-fold, respectively. The concentrations of stress hormones including jasmonic acid and jasmonoyl-isoleucine (JA and JA-Ile), salicylic acid (SA) and abscisic acid (ABA) confirmed the stress induced by salt treatment: levels of JA and JA-Ile increased strongly under the mildest treatment, ABA only increased under the most severe treatment, and SA levels decreased dose-dependently. These hormonal changes were related to the observed changes in biochemical stress markers upon salt treatments: reductions in seedling fresh weight and root growth, decreased photosynthesis rate, increased levels of reactive oxygen species, and elevated proline content and the Na+/K+ ratio. Correlations among auxin profile and biochemical stress markers were discussed based on Pearson's coefficients and principal component analysis (PCA).
Keywords
APXIPyAIAA-AspGPOXIndole-3-acetaldoximeMDAJA-IleIndole-3-acetamideBrassica rapa ssp. pekinensisAnthranilatePS IIHR-ICP-MSindole-3-pyruvic acidIndole-3-acetonitrileANTGSHTrpABAIAACATPCAROSUHPLC-MS/MSAscorbic acidindole-3-acetic acidabscisic acidjasmonic acidSalicylic acidIANPrincipal component analysistryptamineTryptophanJasmonoyl-isoleucineSODSuperoxideSuperoxide dismutaseHigh resolution inductively coupled plasma mass spectrometryPhotosystem IImalondialdehydeIAMgrowth inhibitiontraStress hormonesascorbate peroxidaseCatalaseGlutathioneReactive oxygen species
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Authors
Iva PavloviÄ, AleÅ¡ PÄnÄÃk, OndÅej Novák, Valerija VujÄiÄ, Sandra RadiÄ Brkanac, Hrvoje LepeduÅ¡, Miroslav Strnad, Branka Salopek-Sondi,