Sarhad Journal of Agriculture of saltiness is reported to be more pronounced at germination, where salty conditions cause significant reductions of seed germination (Ucarli, 2020).The excessive concentrations of salts in the soil restricts water availability to seed, thereby leading to inhibited seed germination (Welbaum et al.,1990).The salinityinduced ill effects on crop establishment can be withheld if salt tolerance is achieved especially at germination stage.Under such circumstances, priming Abstract | Salt stress is more detrimental at germination, and seedling establishment stages in a plant life.Moreover, the escape of crop from salt injury at these stages is direly needed.Melatonin is known as N-acetyl-5-methoxytryptamine with chemical formula melatonin as C 13 H 16 N 2 O 2 .It is a versatile molecule with the speciality to lessen salt stress on the plant.However, mechanism of melatonin which is involved in salt stress mitigation is still under inspection of plant scientists.For the purpose, this research was carried out and the effects of melatonin priming was searched out viz., hydro-priming (HP), 500, 1000 and1500 µM on seed germination and early seedling establishment of six maize genotypes viz., MMRI-Yellow, NCEV-1530-9, YH-1898, Composite, SB-9617 and FH-949 under salinity-induced stress.Seed priming with 1000µM melatonin efficiently lowered the deleterious effects of salt stress on germination and early seedling stages in all the studied genotypes.Moreover, SB-9617 exhibited comparatively the greater salt tolerance at these stages.Finally, it was concluded that SB-9617could survive and thrive best in saline soils.Furthermore, seed priming with 1000µM of melatonin proved to be a good choice to alleviate the adversities of salts at germination and early seedling establishment stage in maize.