1. Asch, F., Dingkuhn, M., Dörffling, K. and Miezan, K. 2000. Leaf K/Na Ratio Predicts Salinity Induced Yield Loss in Irrigated Rice. Euphytica, 113:109-118.
2. Asch, F., Dingkuhn, M., Wittstock, C. and Doerffling, K. 1999. Sodium and Potassium Uptake of Rice Panicles as Affected by Salinity and Season in Relation to Yield and Yield Components. Plant and Soil, 207:133-145.
3. Ashfaque, F., Khan, M. I. R. and Khan, N. A. 2014. Exogenously Applied H2o2 Promotes Proline Accumulation, Water Relations, Photosynthetic Efficiency and Growth of Wheat (Triticum Aestivum L.) under Salt Stress. Annual Research & Review in Biology, 4:105-120.
4. Ashraf, M. and Foolad, M. 2007. Roles of Glycine Betaine and Proline in Improving Plant Abiotic Stress Resistance. Environmental and Experimental Botany, 59:206-216.
5. Aziz, A., Martin‐Tanguy, J. and Larher, F. 1998. Stress‐Induced Changes in Polyamine and Tyramine Levels Can Regulate Proline Accumulation in Tomato Leaf Discs Treated with Sodium Chloride. Physiologia Plantarum, 104:195-202.
6. Bates, L., Waldren, R. and Teare, I. 1973. Rapid Determination of Free Proline for Water-Stress Studies. Plant and soil, 39:205-207.
7. Benderradji, L. et al. 2011. Sodium Transport in the Seedlings of Two Bread Wheat (Triticum Aestivum L.) Genotypes Showing Contrasting Salt Stress Tolerance. Australian Journal of Crop Science, 5:233-241.
8. Çelik, Ö. and Atak, Ç. 2012. Evaluation of Proline Accumulation and Δ1-Pyrroline-5-Carboxylate Synthetase (P5cs) Gene Expression During Salinity Stress in Two Soybean (Glycine Max L. Merr.) Varieties. Polish Journal of Environmental Studies, 21:559-564.
9. Chen, Z., Newman, I., Zhou, M., Mendham, N., Zhang, G. and Shabala, S. 2005. Screening Plants for Salt Tolerance by Measuring K+ Flux: A Case Study for Barley. Plant, Cell & Environment, 28:1230-1246.
10. De Lacerda, C. F., Cambraia, J., Oliva, M. A., Ruiz, H. A. and Prisco, J. T. n. 2003. Solute Accumulation and Distribution During Shoot and Leaf Development in Two Sorghum Genotypes under Salt Stress. Environmental and Experimental Botany, 49:107-120.
11. Delauney, A. J. and Verma, D. P. S. 1993. Proline Biosynthesis and Osmoregulation in Plants. The Plant Journal, 4:215-223.
12. Fao. 2008 Plant Nutrition Management Service.
13. Hajlaoui, H., Ayeb, N. E., Garrec, J. P. and Denden, M. 2010. Differential Effects of Salt Stress on Osmotic Adjustment and Solutes Allocation on the Basis of Root and Leaf Tissue Senescence of Two Silage Maize (Zea Mays L.) Varieties. Industrial Crops and Products, 31:122-130.
14. Hare, P. and Cress, W. 1997. Metabolic Implications of Stress-Induced Proline Accumulation in Plants. Plant Growth Regulation, 21:79-102.
15. Husain, S., Munns, R. and Condon, A. T. 2003. Effect of Sodium Exclusion Trait on Chlorophyll Retention and Growth of Durum Wheat in Saline Soil. Crop and Pasture Science, 54:589-597.
16. Kaplan, F., Kopka, J., Sung, D. Y., Zhao, W., Popp, M., Porat, R. and Guy, C. L. 2007. Transcript and Metabolite Profiling During Cold Acclimation of Arabidopsis Reveals an Intricate Relationship of Cold‐Regulated Gene Expression with Modifications in Metabolite Content. The Plant Journal, 50:967-981.
17. Kishor, K., Polavapapu, B. and Sreenivasulu, N. 2014. Is Proline Accumulation Per Se Correlated with Stress Tolerance or Is Proline Homeostasis a More Critical Issue? Plant, cell & environment, 37:300-311.
18. Lehmann, S., Funck, D., Szabados, L. and Rentsch, D. 2010. Proline Metabolism and Transport in Plant Development. Amino Acids, 39:949-962.
19. Livak, K. J. and Schmittgen, T. D. 2001. Analysis of Relative Gene Expression Data Using Real-Time Quantitative PCR and the 2− Δδct Method. methods, 25: 402-408.
20. Maggio, A. et al. 2002. Does Proline Accumulation Play an Active Role in Stress‐Induced Growth Reduction? The plant journal, 31:699-712.
21. Mani, S., Van De Cotte, B., Van Montagu, M. and Verbruggen, N. 2002. Altered Levels of Proline Dehydrogenase Cause Hypersensitivity to Proline and Its Analogs in Arabidopsis. Plant Physiology, 128:73-83.
22. Mattioli, R., Falasca, G., Sabatini, S., Altamura, M. M., Costantino, P. and Trovato, M. 2009. The Proline Biosynthetic Genes P5cs1 and P5cs2 Play Overlapping Roles in Arabidopsis Flower Transition but Not in Embryo Development. Physiologia Plantarum, 137:72-85.
23. Munns, R. and Tester, M. 2008. Mechanisms of Salinity Tolerance. Annu. Rev. Plant Biol., 59:651-681.
24. Najafi, F., Khavari-Nejad, R., Rastgar-Jazii, F. and Sticklen, M. 2007. Growth and Some Physiological Attributes of Pea (Pisum Sativum L.) as Affected by Salinity. Pakistan journal of biological sciences: PJBS, 10:2752-2755.
25. Nanjo, T., Fujita, M., Seki, M., Kato, T., Tabata, S. and Shinozaki, K. 2003. Toxicity of Free Proline Revealed in an Arabidopsis T-DNA-Tagged Mutant Deficient in Proline Dehydrogenase. Plant and Cell Physiology, 44:541-548.
26. Poustini, K. and Siosemardeh, A. 2004. Ion Distribution in Wheat Cultivars in Response to Salinity Stress. Field Crops Research, 85:125-133.
27. Poustini, K., Siosemardeh, A. and Ranjbar, M. 2007. Proline Accumulation as a Response to Salt Stress in 30 Wheat (Triticum Aestivum L.) Cultivars Differing in Salt Tolerance. Genetic Resources and Crop Evolution, 54:925-934.
28. Rais, L., Masood, A., Inam, A. and Khan, N. 2013. Sulfur and Nitrogen Co-Ordinately Improve Photosynthetic Efficiency, Growth and Proline Accumulation in Two Cultivars of Mustard under Salt Stress. J Plant Biochem Physiol, 1:101-101.
29. Rout, N. and Shaw, B. 1998. Salinity Tolerance in Aquatic Macrophytes: Probable Role of Proline, the Enzymes Involved in Its Synthesis and C 4 Type of Metabolism. Plant Science, 136:121-130.
30. Stines, A. P., Naylor, D. J., Høj, P. B. and Van Heeswijck, R. 1999. Proline Accumulation in Developing Grapevine Fruit Occurs Independently of Changes in the Levels of Δ1-Pyrroline-5-Carboxylate Synthetase Mrna or Protein. Plant Physiology, 120:923-923.
31. Tavakoli, M. 2011. Some Physiological Traits Associated with Salinity Stress and Related Genes Expression Pattern in Bread Wheat (Triticum Aestivum L.). University of Tehran, Master thesis,
32. Tester, M. and Davenport, R. 2003. Na+ Tolerance and Na+ Transport in Higher Plants. Annals of Botany, 91:503-527.
33. Verslues, P. E. and Sharma, S. 2010. Proline Metabolism and Its Implications for Plant-Environment Interaction. The Arabidopsis Book/American Society of Plant Biologists, 8: 344-342.
34. Wu, G., Zhou, Z., Chen, P., Tang, X., Shao, H. and Wang, H. 2014. Comparative Ecophysiological Study of Salt Stress for Wild and Cultivated Soybean Species from the Yellow River Delta, China. The Scientific World Journal, 45:321-340.
35. Xue, X., Liu, A. and Hua, X. 2009. Proline Accumulation and Transcriptional Regulation of Proline Biothesynthesis and Degradation in Brassica Napus. BMB reports, 42:28-34.