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. 2021 Oct 28;10(11):1314. doi: 10.3390/antibiotics10111314

Table 2.

Prevalence of tetracycline and sulfonamide resistance in relation to the total number of Salmonella isolates.

Studies No. of Salmonella Isolates Tetracycline-Resistant Isolates n (%) Isolates with tet Genes n (%) Sulfonamide-Resistant Isolates n (%) Isolates with sul Genes n (%)
Aslam et al. 2012 [45] 110 54 (49.0%) 45 (40.9%) 9 (8.0%) 9 (8.0%)
Dahshan et al. 2010 [46] 44 44 (100%) 10 (22.7%) 44 (100%) 8 (18.2%)
Deng et al. 2017 [38] 152 123 (80.9%) 123 (80.9%) 98 (64.5%) 60 (39.5%)
Dessie et al. 2013 [27] 33 23 (69.7%) 8 (24.2%) 31 (93.9%) 26 (78.8%)
El-Sharkawy et al. 2017 [47] 67 61 (91.0%) 58 (86.6%) 3 (5.2%) 58 (86.6%)
Hsu et al. 2014 [48] 54 18 (33.3%) 14 (26.0%) 20 (37.0%) 16 (29.6%)
Igbinosa 2015 [44] 150 73 (48.7%) 0 99 (66.0%) *
Iwu et al. 2016 [39] 48 48 (100%) 30 (61.0%) 36 (75.0%) *
Khoshbakht et al. 2018 [49] 60 60 (100%) 6 (10.0%) * *
Kozak et al. 2009 [50] 234 * * * 210 (89.7%)
Lapierre et al. 2010 [51] 69 65 (94.2%) 49 (71.0%) 19 (27.5%) *
Lopes et al. 2015 [52] 225 122 (54.5%) 73 (32.5%) 89 (39.6%) 65 (28.9%)
Maka et al. 2015 [7] 84 * * 84 (100%) 76 (90.5%)
Marquéz et al. 2017 [53] 39 19 (47.6%) 6 (14.3%) 15 (38.1%) 4 (9.5%)
Mthembu et al. 2019 [54] 106 67 (63.0%) 25 (26.0%) 41 (38.0%) 22 (21.0%)
Sadiq et al. 2017 [40] 4 3 (75.0%) 3 (75.0%) * *
Soyer et al. 2013 [55] 336 296 (88.0%) 44 (13.1%) 282 (84.0%) 49 (14.6%)
Tajbakhsh et al. 2012 [56] 71 18 (25.0%) 34 (48.0%) 21 (30.0%) 23 (32.0%)
Thai et al. 2012 [57] 97 47 (48.5%) 40 (41.2%) 55 (56.7%) 52 (53.6%)
Vital et al. 2017 [41] 24 16 (66.7%) 21 (87.5%) * *
Vuthy et al. 2017 [58] 181 157 (86.7%) 117 (64.6%) 156 (86.2%) 78 (43.1%)
Xu et al. 2019 [10] 18 * * 13 (72.2%) 14 (77.8%)
Zhu et al. 2017 [43] 189 98 (51.9%) 84 (44.4%) 91 (48.1%) 89 (47.1%)
Zhu et al. 2019 [59] 155 143 (92.0%) 32 (20.6%) 81 (52.2%) 29 (18.7%)
Zishiri et al. 2016 [42] 146 136 (93.0%) 128 (87.7%) 123 (84.0%) 125 (85.6%)

* Antimicrobials were not tested, or genes were not searched in the study.