Exogenous ascorbic acid mitigates accumulation of abscisic acid, proline and polyamine under osmotic stress in maize leaves

Author(s): Terzi R, Kalaycıoglu E, Demiralay M, Saglam A, Kadioglu A

Abstract

The effects of osmotic stress (polyethylene glycol, PEG 6000) and exogenous ascorbic acid (ASC) on abscisic acid (ABA), some osmolytes (proline and polyamine), and gene expression of polyamine metabolic enzymes arginine decarboxylase (ADC), S-adenosylmethionine decarboxylase (SAMDC) and polyamine oxidase (PAO1) were assessed in the leaves of Zea mays L. seedlings. ASC (0.1 mM) was hydroponically applied to detached maize seedlings. ASC application scavenged endogenous hydrogen peroxide level and ameliorated leaf water status and stomatal conductance under osmotic stress. Lipid peroxidation, ABA and osmolyte accumulation were mitigated by ASC treatment. For osmolytes, the alleviation of polyamine accumulation was more obvious than that of the proline. Therefore, gene expressions of polyamine metabolic enzymes were investigated. Compared to control seedlings, down-regulation of SAMDC and ADC gene expressions were determined in ASC + PEG-applied seedlings while PAO1 gene expression increased. These results indicated that exogenous ASC influenced polyamine metabolism. ASC application under the osmotic stress ameliorated osmotic solute levels and ABA concentration in maize.

Similar Articles

  Cowpea: Alternative field crops manual

Author(s): Davis DW, Oelke EA, Oplinger ES, Doll JD, Hanson CV, et al.

Cowpea (Vigna unguiculata L

Author(s): Ehlers JD, Hall AE

Cowpea: An overview on its nutritional facts and health benefits

Author(s): Jayathilake C, Visvanathan R, Deen A, Bangamuwage R, Jayawardana BC, et al.

Foliar application of glycinebetaine–A novel product from sugar beet–As an approach to increase tomato yield

Author(s): Makela MP, Jokinen K, Kontturi M, Peltonen-Sainio M, Pehu E, et al.

Nutrient uptake changes in ascorbate free radical-stimulated roots

Author(s): Gonzalez-Reyes JA, Hidalgo A, Caler JA, Palos R, Navas P

Selenium in higher plants: Understanding mechanisms for biofortification and phytoremediaton

Author(s): Zhu YG, Pilon-Smits EAH, Zhao FJ, Williams PN, Meharg AA

Free radical scavenging efficiency of Nano-Se in vitro

Author(s): Huang B, Zhang J, Hou J, Chen C

Accumulation of red elemental selenium nanoparticles and their biological effects in Nicotinia tabacum

Author(s): Domokos-Szabolcsy E, Marton L, Sztrik A, Babka B, Prokisch J, et al.

on antioxidant enzymes activities, lipid peroxidation and proline accumulation of Canola

Author(s): Dolatabadian A, Sanavy SAMM, Chashmi NA (2008)

Self fruit extract and vitamin-C improves tomato seed germination

Author(s): Barh D, Srivastava HC, Mazumdar BC

 Methods of enzymatic analysis

Author(s): Bergmeyer HU

Protein measurement with the Folin phenol reagent

Author(s): Lowry OH, Rosebrough NJ, Farr AL, Randell RJ

Selenium as an anti-oxidant and pro-oxidant in ryegrass

Author(s): Hartikainen H, Xue T, Piironen V

The importance of selenium biofortification in food crop

Author(s): Garcia-Bañuelos LM, Hermosillo-Cerec MA, Sanchez E

Promotion of growth in mungbean (Phaseolus aureus Roxb

Author(s): Malik JA, Kumar S, Thakur P, Sharma S, Kaur R, et al.

Rice seed invigoration: a review

Author(s): Farooq M, Basra SMA, Wahid A, Khaliq A, Kobayashi N

Seed priming with selenium: Consequences for emergence, seedling growth, and biochemical attributes of rice

Author(s): Abdul Khaliq, Aslam F, Matloob A, Hussain S, Geng M, et al.

Toward a molecular understanding of plant hormone actions

Author(s): Li C, Li J, Chong K, Harter K, Lee Y, et al.

Ameliorative effect of selenium on tomato plants grown under salinity stress

Author(s): Mozafariyan M, Kamelmanesh MM, Hawrylak-Nowak B

Selenium–an antioxidative protectant in soybean during senescence

Author(s): Djanaguiraman M, Devi DD, Shanker AK, Sheeba A, Bangarusamy U

Selenium in medicine and treatment

Author(s): Frączek A, Pasterniak K

Respiratory potential and Se compounds in pea (Pisum sativum L

Author(s): Smrkolj P, Germ M, Kreft I, Stibilj V

Antioxidant systems in sunflower (Helianthus annuus L

Author(s): Bailly C, Benamar A, Corbineau F, Come D

Metabolic importance of selenium for plants

Author(s): Germ M, Stibilj V, Kreft I

The Effects of Ascorbic Acid on Breaking the seed dormancy of Malussieversii

Author(s): Niu J,  Zhao L, Fan Y, Shi S, He L, et al.