- Ahmadi, M., Rezaei, N., & Karami, A. (2019). Effect of salinity on growth and performance of rangeland species in arid regions. Iranian Journal of Rangeland and Desert Research, *27*(3), 45–60.
- Anjum, N. A., Ahmad, I., Mohmood, I., Pacheco, M., Duarte, A. C., Pereira, E., & Prasad, M. N. V. (2017). Modulation of glutathione and its related enzymes in plants’ responses to toxic metals and metalloids—A review. Environmental and Experimental Botany, *75*, 307–324.
- Ashraf, M., & Harris, P. J. C. (2005). Abiotic stresses: Plant resistance through breeding and molecular approaches. Haworth Press.
- Atta, M. I., Bakhsh, A., Arshad, M., & Ullah, S. (2023). Soil salinity: A global threat to sustainable agriculture. In Climate change impacts on agriculture (pp. 301–320). Springer.
- Chen, M., Yang, Z., Liu, J., Zhu, T., Wei, X., Fan, H., & Wang, B. (2018). Adaptation mechanism of salt excluders under saline conditions and its applications. International Journal of Molecular Sciences, *19*(11), 1–13.
- Etesami, H., & Beattie, G. A. (2010). Mining halophytes for plant growth-promoting halotolerant bacteria to enhance the salinity tolerance of non-halophytic crops. Frontiers in Microbiology, *9*, 148.
- Evans, M. L., Hikawa, H., & Estelle, M. A. (1994). Responses of Arabidopsis roots to auxin studied with high temporal resolution: Comparison of wild type and auxin-response mutants. Planta, *194*, 215–222.
- Gothwal, R. K., Nigam, V. K., Mohan, M. K., Sasmal, D., & Ghosh, P. (2007). Screening of nitrogen fixers from rhizospheric bacterial isolates associated with important desert plants. Applied Ecology and Environmental Research, *6*, 101–109.
- Habib, S. H., Kausar, H., & Saud, H. M. (2016). Plant growth-promoting rhizobacteria enhance salinity stress tolerance in okra through ROS-scavenging enzymes. BioMed Research International, *2016*, Article 6284547.
- Hadi, M. R., & Karimi, N. (2012). The role of calcium in plant’s salt tolerance. Journal of Plant Nutrition, *35*(13), 2037–2054.
- Haji Abadi, A., Mosleh Arani, A., Ghasemi, S., Hadi Rad, M., Shahbazi, Sh., & Etesami, H. (2021). [Study on the effect of growth promoting potential of rhizobacteria isolated from some halophyte rangeland species on vegetative growth and ion content of wheat]. Journal of New Findings in Biological Sciences, *8*(2), 104–117. [In Persian]
- Hanaa, H., & Safaa, A. (2005). Foliar application of IAA at different growth stages and their influenced on growth and productivity of bread wheat (Triticum aestivum l.). Journal of Physics: Conference Series, *1294*(9), 092019.
- Hasanuzzaman, M., Bhuyan, M., Zulfiqar, F, Raza, A., Mohsin, S. M., Mahmud, J. A., Fujita, M, & Fotopoulos, V. (2020). Reactive oxygen species and antioxidant defense in plants under abiotic stress: Revisiting the crucial role of a universal defense regulator. Antioxidants, *9*(8), 681.
- Idris, E. E., Iglesias, D. J., Talon, M., & Borriss, R. (2007). Tryptophan-dependent production of indole-3-acetic acid (IAA) affects level of plant growth promotion by Bacillus amyloliquefaciens FZB42. Molecular Plant-Microbe Interactions, *20*(6), 619–626.
- Jha, C. K., & Saraf, M. (2015). Plant growth promoting rhizobacteria (PGPR): A review. Journal of Agricultural Research and Development, *5*(2), 108–119.
- Khalid, W., Arshad, M. S., Ranjha, M. M. A. N., Różańska, M. B., Irfan, S., Shafique, B., & Kędzierska-Matysek, M. (2022). Chia seeds (Salvia hispanica): A therapeutic weapon in metabolic disorders. Food Science & Nutrition, *11*(1), 3–16.
- Kumar, J., Singh, S., Singh, M., Srivastava, P. K., Mishra, R. K., & Singh, V. P. (2017). Transcriptional regulation of salinity stress in plants: A short review. Plant Gene, *11*, 160–169.
- Maksimovic, I., & Ilin, Ž. (2012). Effects of salinity on vegetable growth and nutrients uptake. In T. S. Lee (Ed.), Irrigation systems and practices in challenging environments (pp. 169–190). IntechOpen.
- Munns, R., & Tester, M. (2008). Mechanisms of salinity tolerance. Annual Review of Plant Biology, *59*, 651–681.
- Najafi Zilaei, M., Mosleh Arani, A., Etesami, H., Dinarvand, M. (2022). [Investigation of the effect of plant growth-promoting bacteria on morphological and physiological characteristics of three halophyte species (Nitraria schoberi, Haloxylon aphyllum, and Seidlitzia rosmarinus) under salinity and dust stresses] [Doctoral dissertation, Yazd University]. [In Persian]
- Nawaz, A., Shahbaz, M., Asadullah, Imran, A., Marghoob, M. U., Imtiaz, M., & Mubeen, F. (2020). Potential of salt tolerant PGPR in growth and yield augmentation of Wheat (Triticum aestivum L.) under saline conditions. Frontiers in Microbiology, *11*, 201.
- Oraei, M., Tabatabaei, S. J., Fallahi, E., & Imani, A. (2009). The effects of salinity stress and rootstock on the growth, photosynthetic rate, nutrient and sodium concentrations of almond. Journal of Horticulture Science and Biotechnology, *23*(2), 121–140. [Note: Journal title may need verification for standard English title]
- Pereira, L. B., Andrade, G. S., Meneghin, S. P., Vicentini, R., & Ottoboni, L. M. M. (2019). Prospecting plant growth-promoting bacteria isolated from the rhizosphere of sugarcane under drought stress. Current Microbiology, *76*, 1345–1354.
- Saddiq, M. S., Afzal, I., Basra, S. M. A., Iqbal, S., & Ashraf, M. (2020). Sodium exclusion affects seed yield and physiological traits of wheat genotypes grown under salt stress. Journal of Soil Science and Plant Nutrition, *20*(3), 1442–1456.
- Sadeghian, M., Askari, H., Soltani Najaf Abadi, M., & Nematzadeh, G. (2018). [The effect of salinity-resistant plant growth-promoting bacteria on growth and resistance of wheat under salinity stress conditions]. Iranian Journal of Field Crop Science, *49*(1), 45–56. [In Persian]
- Sashidhar, B., & Podile, A. R. (2010). Mineral phosphate solubilization by rhizosphere bacteria and scope for manipulation of the direct oxidation pathway involving glucose dehydrogenase. Journal of Applied Microbiology, *109*(1), 1–12.
- Singh, R., & Jha, P. (2017). The PGPR Stenotrophomonas maltophilia SBP-9 augments resistance against biotic and abiotic stress in wheat plants. Frontiers in Microbiology, *8*, 1945.
- Soni, S. K., Singh, R., Singh, M., Awasthi, A., Wasnik, K., Kalra, A., & Gupta, V. K. (2021). Salt-tolerant and plant growth-promoting Bacillus isolated from saline soil enhance plant growth of Triticum aestivum (L.). 3 Biotech, *11*(1), 18.
- Tannour, S., Author, B., & Colleague, C. (2024). Title of the study on B. halotolerans. Journal Name, Volume(Issue),. *1/*(1), 11.
- Wang, R., Wang, C., Feng, Q., Liou, R. M., & Lin, Y. F. (2021). Biological inoculant of salt-tolerant bacteria for plant growth stimulation under different saline soil conditions. Journal of Microbiology and Biotechnology, *31*(3), 398–407.
- Waling, I., Vark, W. V., Houba, V. J. G., & Van der Lee, J. J. (1989). Soil and plant analysis, Part 7: Plant analysis procedures. Wageningen Agriculture University.
- Zafar-ul-Hye, M., Bhutta, T. S., Shaaban, M., Hussain, S., Qayyum, M. F., Aslam, U., & Zahir, Z. A. (2019). Influence of plant growth promoting rhizobacterial inoculation on wheat productivity under soil salinity stress. Phyton, *88*(2), 119–129.
- Zhang, H., Xie, X., Kim, M. S., Kornyeyev, D. A., Holaday, S., & Paré, P. W. (2008). Soil bacteria augment Arabidopsis photosynthesis by decreasing glucose sensing and abscisic acid levels in planta. The Plant Journal, *56*(2), 264–273.
- Zhang, X., Fan, X., Li, C., & Nan, Z. (2010). Effects of cadmium stress on seed germination, seedling growth and antioxidative enzymes in Achnatherum inebrians plants infected with a Neotyphodium endophyte. Plant Growth Regulation, *60*, 91–97.
- Zhao, Y., Lu, Z., & He, L. (2014). Effects of saline-alkaline stress on seed germination and seedling growth of Sorghum bicolor (L.) Moench. Applied Biochemistry and Biotechnology, *173*, 1680–1691.
- Alikhani, H. A., Etesami, H., & Mohammadi, L. (2018). [Evaluation of the effect of rhizospheric and non-rhizospheric phosphate solubilizing bacteria on improving growth indices of wheat under salinity and drought stress]. Soil Biology Journal, *6*(1), 1–15. [In Persian]
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