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This Concept Map, created with IHMC CmapTools, has information related to: blanks_Antibiotic_Resistance, Gene products enable the bacterium to become resistant to an antibiotic or chemical agent. mechanism, not producing an antisense RNA that is complementary to a mRNA leads to mRNA continues to be translated into enzyme, producing beta-lactamases action, beta-lactam antibiotics no longer bind to transpeptidase examples of beta- lactam antibiotics, altering the membranes and transport systems to prevent the entry of the antibiotic into the bacterium and/or ausing an efflux pump to transport the antibiotic out of the bacterium examples altering porins in the outer membrane of gram-negative cell walls, mutation alters genes Gene products enable the bacterium to become resistant to an antibiotic or chemical agent., result insufficient antibiotic to tie up all the enzyme, when drug is gone, result insufficient antibiotic within the bacterium, Gene products enable the bacterium to become resistant to an antibiotic or chemical agent. mechanism altering the membranes and transport systems to prevent the entry of the antibiotic into the bacterium and/or ausing an efflux pump to transport the antibiotic out of the bacterium, action blocks active transport, enhancing the function of RNA polymerase leads to, enzymatically adding new chemical groups to aminoglycosides action, mRNA continues to be translated into enzyme leads to increased synthesis of the limited enzyme, Gene products enable the bacterium to become resistant to an antibiotic or chemical agent. mechanism induces antibiotic tolerance, examples of macrolides, Gene products enable the bacterium to become resistant to an antibiotic or chemical agent. mechanism, examples not producing an antisense RNA that is complementary to a mRNA, altering porins in the outer membrane of gram-negative cell walls result, producing an altered 30S or 50S ribosomal subunit to which antibiotic no longer binds example