1Department of Agriculture and Life Sciences, Cankiri Karatekin University, Cankiri-18100, Turkey
Department of Park and Garden Plants, Cankiri Karatekin University, Cankiri-18100, Turkey
*Corresponding Author: Alpaslan Kusvuran, Department of Park and Garden Plants, Cankiri Karatekin University, Cankiri-18100, Turkey. Email: akusvuran@gmail.com
Online published on 29 February, 2020.
Microalgae, such as Chlorella vulgaris, are beneficial microscopic organisms that may result in a plant having improved nutrient uptake, growth and abiotic stress tolerance. In this study, the application of microalga significantly increased the shoot length and fresh and dry weights; leaf number and area and photosynthetic pigments of guar plants when compared to those under salt stress alone. In addition, following the above-mentioned procedures, there were significant increases in the total phenolic (60.70%), flavonoid (174.80%), K+ (30.6%) and Ca2+ (36.10%) ion contents and ascorbate peroxidase (55.98%), catalase (256.45%), glutathione reductase (63.57%) and superoxide dismutase (113.58%) enzyme activities. However, the malondialdehyde (49.63%), Na+ (41.09%) and Cl-(37.10%) ion contents were significantly decreased. Hence, the results supported the administration of a foliar application of microalga in order to increase the guar plant's defense system, enabling it to tolerate the negative effects resulting from salinity.
Antioxidative enzyme activity, Green algae, Ion regulation, Oxidative stress, Superoxide dismutase
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