Master'sOpen Access

Investigation of positive effects of boron in different wheat genotypes under salt stress

2018
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Advisor: Dr. Öğr. Üyesi Ali Doğru

Abstract (EN)

In this study, the physiological and biochemical changes of salt (NaCl, 150 mM), boron (H3BO3; 30 µM) and salt+boron (NaCl, 150 mM+ H3BO3; 30 µM) applications were comparatively investigated in two different wheat (Triticum aestivum L.) genotypes (Momtchil and Pamukova-97). Chlorophyll a fluorescence measurements showed that salt+boron application decreased photosynthetic activity in Pamukova-97 while salt+boron application induced it. Changes in some chlorophyll a fluorescence parameters, such as V/to (accumulation rate of closed reaction centres), 0/(1-0) (performance indicator of the dark reactions), RC/ABS (the amount of active reaction centres per antenna chlorophylls in PSII), ABS/RC (average anttenna size of PSII per reaction centres), TRo/RC (the maximum amount of trapped energy per reaction centres which reduces QA), DIo/RC (the amount of dissipation energy in PSII per reaction centres), indicated that salt+boron application ameliorated photosynthetic activity in Momtchil which was reduced by salinity to some extent. It has been determined that all applications led to the lower ascorbate-glutathione cycle activity, as evaluated with the lower ascorbate peroxidase and glutathione reductase activities. However, salt+boron application caused to higher level of membrane peroxidation, reduced total carotenoid content and degredation in photosynthetic pigments in Pamukova-97. As a result, it could be said that salt+boron application inhibited the ascorbate-glutathione cycle and affected antioxidant system negatively in the leaves of both genotypes. However, we may conclude that salt+boron application ameliorate the negative metabolic effects of salinity because of the lower MDA accumulation and higher photosynthetic activity and photosynthetic pigment content in the levaes of Momtchil.

Author

Dr. Şansel Bildiren

How to Cite

Şansel Bildiren (Master Thesis). Investigation of positive effects of boron in different wheat genotypes under salt stress, 2018, Sakarya University.

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