Antimicrobial resistance (AMR) emerged as a major challenge to public health and significantly impacting the global economy. Infections due to multi-drug resistant (MDR) bacteria are difficult to treat and cause financial burden on patients. Environment may serve as a genetic pool of several drug resistant genes and help bacteria to emerge as notorious superbugs. This study aims to characterize MDR bacterial isolates from environmental samples and comparative analysis of MDR and multi-drug sensitive (MDS) strains for the expression of virulence factors. Twenty six (n = 26) different environmental samples (water, soil, air and surface) were collected for the purpose. Thirty (n = 30) bacterial isolates belong to 13 different genera (Staphylococcus spp., Enterococcus spp., Escherichia spp., Bacillus spp., Acinetobacter spp., Klebsiella spp., Pseudomonas spp., Shigella spp., Enterobacter spp., Citrobacter spp., Streptococcus spp., Streptobacillus spp. and Proteus spp.) were identified. All recovered isolates were susceptible to aminoglycosides class of antibiotics tested. The most frequently isolated bacterium was Staphylococcus aureus (23.33%) and recovered from all environmental sources except water. Overall 63.33% (19/30) bacterial isolates were MDR, of which, 73.68% (14/19) were extensively drug resistant (XDR). Incidence of MDR and XDR phenotype was higher among isolates recovered from water samples and least among surface samples. Biofilm production was observed in all the isolates as weak (53.34%) and moderate (46.66%). MDR plus XDR phenotype was observed among 42.85% (6/14) of the moderate biofilm producers. Statistically, no significant difference was observed between MDR and MDS isolates for the expression of virulence traits (p > 0.05 for calculated χ2 of 8.496).