Browse AMR Genes
Explore antimicrobial resistance genes from the literature
Explore antimicrobial resistance genes from the literature
Kasugamycin 2′-N-acetyltransferase
Overview
| Allele | Database | Papers | Drug Classes | Organisms | Countries | Years | Sequence Accession | Protein Accession |
|---|---|---|---|---|---|---|---|---|
| AAC(2')-IIa | Card DatabaseReference Gene CatalogResFinder DatabaseReslit | 7 | kasugamycin, KASUGAMYCIN +1 | Burkholderia glumae +3 | Mexico|Japan|China|Israel|New Zealand|United States, USA|China|Japan|Spain|United Kingdom|Germany|France|South Korea|Netherlands|Viet Nam|Laos|Canada|Czech Republic|Argentina|Brazil|Belgium|Denmark|Iran|Australia|Croatia|Ghana|Mexico|Missing | 2012, 2023, 2024 | AB669090 | BAM16262.1 |
| aac(2')-IIa | ResFinder Database | 1 | KASUGAMYCIN | Burkholderia glumae | - | 2012 | AB669090 | - |
The novel kasugamycin 2′-N-acetyltransferase gene aac(2′)-IIa, carried by the IncP island, confers kasugamycin resistance to rice-pathogenic bacteria.
The aac(2′)-IIa gene, carried by the IncP island, confers specific resistance to kasugamycin in rice-pathogenic bacteria by inactivating the antibiotic through acetylation.
The novel kasugamycin 2'-N-acetyltransferase gene aac(2')-IIa, carried by the IncP island, confers kasugamycin resistance to rice-pathogenic bacteria.
The novel kasugamycin 2'-N-acetyltransferase gene aac(2')-IIa, carried by the IncP island, confers kasugamycin resistance to rice-pathogenic bacteria.
The novel kasugamycin 2'-N-acetyltransferase gene aac(2')-IIa, carried by the IncP island, confers kasugamycin resistance to rice-pathogenic bacteria.
The novel kasugamycin 2'-N-acetyltransferase gene aac(2')-IIa, carried by the IncP island, confers kasugamycin resistance to rice-pathogenic bacteria.
On the use of antibiotics to control plant pathogenic bacteria: a genetic and genomic perspective.
The study identifies several AMR genes and mutations associated with streptomycin, kasugamycin, gentamicin, and oxytetracycline resistance in plant pathogenic bacteria, highlighting the role of Tn 5393 and other mobile genetic elements in the dissemination of these resistance traits.
On the use of antibiotics to control plant pathogenic bacteria: a genetic and genomic perspective.
The study identifies several AMR genes and mutations associated with streptomycin, kasugamycin, gentamicin, and oxytetracycline resistance in plant pathogenic bacteria, highlighting the role of Tn 5393 and other mobile genetic elements in the dissemination of these resistance traits.
The association between the genetic structures of commonly incompatible plasmids in Gram-negative bacteria, their distribution and the resistance genes.
The study characterizes various resistance genes carried by incompatible plasmids in Gram-negative bacteria, highlighting their role in the spread of antibiotic resistance. Key genes include beta-lactamases like bla VIM-1, bla SHV-12, bla TEM-1B, and bla CTX-M-15, as well as sulfonamide resistance genes sul1 and sul2, tetracycline resistance gene tetA, and polymyxin resistance gene mcr-1.
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