Affiliation:
1. National Engineering School of Sfax: Ecole Nationale d'Ingenieurs de Sfax
2. University of Sfax Higher Institute of Biotechnology of Sfax: Universite de Sfax Institut Superieur de Biotechnologie de Sfax
3. University of Sfax Preparatory Engineering Institute of Sfax: Universite de Sfax Institut Preparatoire aux Etudes d'Engenieur de Sfax
Abstract
Abstract
Salinity is one of the major threats to potato. As the first vegetable crop, improving its production under salinity stress is with great interest. In a previous work, Bacillus mojavensis I4 (BmI4) plant growth-promoting (PGP) bacterial strain was isolated from the soil. Since BmI4 showed a growth capacity under salt conditions (10% NaCl) we decided here to evaluate its PGP capacity on potato plants (Spunta and Claustar varieties) grown in the greenhouse in the presence of 100 mM NaCl. Stem elongation and diameter, leaf number, area and organ fresh weights were monitored during 40 days of culture as well as tuber yield, caliber and composition. Our results showed that the inoculation of plantlet roots with BmI4 enhanced plant growth under salinity, particularly for Spunta variety. These beneficial effects were associated with an increase of auxin levels in plants from both varieties. The assessment of H2O2 and malondialdehyde contents revealed that BmI4 inoculation led to reduced oxidation in plants submitted to salinity, via the increase of superoxide dismutase, catalase and peroxidase activities. Moreover, the BmI4 treatment enhanced proline accumulation especially in leaves of Spunta variety. BmI4 inoculated plants from Spunta variety exhibited an early induction of tuberization associated with an increase of tuber yield and caliber under both culture conditions. These findings suggest that inoculation of potato with BmI4 can be promising strategy to improve plant culture in saline areas. Moreover, inoculation improved tuber composition.
Publisher
Research Square Platform LLC