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Silicon-mediated enhancement of physiological and biochemical characteristics of Zinnia elegans ‘Dreamland Yellow’ grown under salinity stress

Authors :
Chung Ho Ko
Prabhakaran Soundararajan
Sowbiya Muneer
Byoung Ryong Jeong
Abinaya Manivannan
Laras Sekar Arum
Source :
Horticulture, Environment, and Biotechnology. 56:721-731
Publication Year :
2015
Publisher :
Springer Science and Business Media LLC, 2015.

Abstract

This study investigated the effects of silicon (Si) nutrition on hydroponically grown Zinnia elegans under salinity stress. In this study, six treatments, the control (basal nutrients without NaCl or Si), Si 50 (1.8 mM), Si 100 (3.6 mM), NaCl 50 (50 mM), Si 50 + NaCl 50 (1.8 mM Si; 50 mM NaCl), and Si 100 + NaCl 50 (Si-3.6 mM + NaCl-50 mM), were employed. After 15 days of treatment, growth parameters, biochemical measurements, and antioxidant enzyme activities were examined. Salinity stress significantly reduced plant growth, biomass, photosynthetic parameters, and pigments, and increased the electrolyte leakage potential (ELP), lipid peroxidation, and hydrogen peroxide level. Interestingly, with Si supplementation, Z. elegans recovered from salinity stress. Si enhanced growth and photosynthesis, and prevented the decomposition of photosynthetic pigments. Moreover, the addition of Si increased membrane integrity, thereby reducing the ELP and lipid peroxidation levels under salinity stress. Furthermore, Si modulated the activity of the antioxidant enzymes superoxide dismutase (SOD), catalase (CAT), ascorbate peroxidase (APX), and guaiacol peroxidase (GPX) in scavenging excess reactive oxygen species (ROS). Additionally, Si increased the macronutrient and micronutrient contents. Therefore, augmentation with Si provided salinity resistance and enhanced the growth of Z. elegans.

Details

ISSN :
22113460 and 22113452
Volume :
56
Database :
OpenAIRE
Journal :
Horticulture, Environment, and Biotechnology
Accession number :
edsair.doi...........b1a1dc5501564825258bdcbcf4b099bb
Full Text :
https://doi.org/10.1007/s13580-015-1081-2