Milkman R
Biochem Genet. 1976 Apr;14(3-4):383-7. doi: 10.1007/BF00484776.
Two Drosophila melanogaster strains, each heterozygous for "fast" and "slow" alleles at the Adh locus, and each having balanced second chromosomes, were found to differ in the apparent thermostability of the slow allozyme. The two strains were crossed, and f, heterozygotes were separated on the basis of the origin of the slow allele. After electrophoresis, the cellulose acetate strips were treated 1 1/2 min at 35 C. The putatively more sensitive allozyme showed a strikingly greater response to heat. These findings further support the conclusion that electrophoretically cryptic allelic differences exist which are expressed in thermostability differences. Further application of this approach has revealed one similar sensitive slow allozyme and three cases of a relatively resistant fast ADH allozyme in wild-caught flies.
发现两个黑腹果蝇品系,每个品系在乙醇脱氢酶(Adh)基因座上对“快”和“慢”等位基因均为杂合,且每个品系都有平衡的第二染色体,它们在慢同工酶的表观热稳定性上存在差异。将这两个品系进行杂交,并根据慢等位基因的来源分离出F1杂合子。电泳后,将醋酸纤维素条在35℃下处理1.5分钟。推测更敏感的同工酶对热的反应明显更大。这些发现进一步支持了这样的结论,即存在电泳上隐蔽的等位基因差异,这些差异在热稳定性差异中得以体现。这种方法的进一步应用在野生捕获的果蝇中发现了一种类似的敏感慢同工酶和三例相对抗性的快ADH同工酶。