TY - JOUR
T1 - The nature of bacterial revertants produced by the decay of incorporated tritium compounds in Escherichia coli
AU - Bockrath, R. C.
AU - Person, Stanley
N1 - Funding Information:
This research was supported by grant NSG-324 from tile National Aeronautics and Space Agency. R.('.B., .Jr. is a National Defence Education Act Pre-doctorat Fellow.
PY - 1964/12/15
Y1 - 1964/12/15
N2 - The existence of two subclasses of revertants has been demonstrated among the revertant populations produced by [3H]thymidine, [3H]uracil, and [3H]histidine decays in Escherichia coli. The majority of the total revertant population is composed of dependent revertants which give rise to revertant colonies in the presence of nutrient fortification. In addition, there are some independent revertants that form colonies in the absence of nutrient fortification. The relative mutagenic efficiencies for production of independent revertants are in the order: [3H]thymidine, [3H]uracil, and [3H]histidine (in relative magnitudes 3.0, 1.4, 1.0, respectively). The disproportionately low yield of revertants in the independent subclass produced by one of the 3H compounds ([3H]uracil) infers that there are at least two molecular alterations that can mediate the reversion of a bacterial mutant by 3H decay, and thet the specificity of the 3H compounds used is sufficient to effect differentially the propertions of these two alterations.
AB - The existence of two subclasses of revertants has been demonstrated among the revertant populations produced by [3H]thymidine, [3H]uracil, and [3H]histidine decays in Escherichia coli. The majority of the total revertant population is composed of dependent revertants which give rise to revertant colonies in the presence of nutrient fortification. In addition, there are some independent revertants that form colonies in the absence of nutrient fortification. The relative mutagenic efficiencies for production of independent revertants are in the order: [3H]thymidine, [3H]uracil, and [3H]histidine (in relative magnitudes 3.0, 1.4, 1.0, respectively). The disproportionately low yield of revertants in the independent subclass produced by one of the 3H compounds ([3H]uracil) infers that there are at least two molecular alterations that can mediate the reversion of a bacterial mutant by 3H decay, and thet the specificity of the 3H compounds used is sufficient to effect differentially the propertions of these two alterations.
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U2 - 10.1016/0027-5107(64)90030-2
DO - 10.1016/0027-5107(64)90030-2
M3 - Article
AN - SCOPUS:50549218377
SN - 0027-5107
VL - 1
SP - 373
EP - 380
JO - Mutation Research
JF - Mutation Research
IS - 4
ER -