Collier G E, MacIntyre R J
Proc Natl Acad Sci U S A. 1977 Feb;74(2):684-8. doi: 10.1073/pnas.74.2.684.
Antisera were prepared against purified alpha-glycerophosphate dehydrogenase (EC 1.1.1.8) (alphaGPDH) from Drosophila melanogaster, D. virilis, and D. busckii. The immunological distances between the enzymes from the 3 species and those from 31 additional drosophilid species agree in general with the accepted phylogeny of the genus. These data permit an estimate that the subgenus Sophophora diverged 52 million years ago from the line leading to the subgenus Drosophila. The antiserum against melanogaster alphaGPDH was capable of distinguishing allelic variants of alphaGPDH. On the basis of presumed single amino acid substitutions, no drosophilid alphaGPDH tested differed from the melanogaster enzyme by more than eight or nine substitutions. The study was extended to include representatives of six other dipteran families. The immunological distances between alphaGPDH from Drosophila and alphaGPDH from these dipterans were reasonably consistent with a phylogeny of the order Diptera established by more conventional means. The unit evolutionary period of this enzyme was estimated to be 18 million years.
制备了针对黑腹果蝇、粗壮果蝇和巴氏果蝇纯化的α-甘油磷酸脱氢酶(EC 1.1.1.8)(αGPDH)的抗血清。这3个物种的酶与另外31种果蝇科物种的酶之间的免疫距离总体上与该属公认的系统发育一致。这些数据估计 Sophophora 亚属在5200万年前从通向果蝇亚属的谱系中分化出来。针对黑腹果蝇αGPDH的抗血清能够区分αGPDH的等位基因变体。基于推测的单氨基酸替换,所测试的果蝇科αGPDH与黑腹果蝇酶的差异不超过八或九个替换。该研究扩展到包括其他六个双翅目科的代表。果蝇的αGPDH与这些双翅目昆虫的αGPDH之间的免疫距离与通过更传统方法建立的双翅目系统发育合理一致。该酶的单位进化周期估计为1800万年。