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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >THE GENETICS OF DOPA DECARBOXYLASE IN DROSOPHILA MELANOGASTER. II. ISOLATION AND CHARACTERIZATION OF DOPA-DECARBOXYLASE-DEFICIENT MUTANTS AND THEIR RELATIONSHIP TO THE α-METHYL-DOPA-HYPERSENSITIVE MUTANTS
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THE GENETICS OF DOPA DECARBOXYLASE IN DROSOPHILA MELANOGASTER. II. ISOLATION AND CHARACTERIZATION OF DOPA-DECARBOXYLASE-DEFICIENT MUTANTS AND THEIR RELATIONSHIP TO THE α-METHYL-DOPA-HYPERSENSITIVE MUTANTS

机译:果蝇果蝇中多巴脱羧酶的遗传学。二。多巴去羧化酶缺陷型突变体的分离,表征及其与α-甲基-多巴超敏感突变体的关系

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摘要

Of 84 lethals isolated over the dopa decarboxylase (DDC) deficiency Df(2L)50 , 8 have been identified as DDC-deficient alleles on the basis of their effect on DDC activity when heterozygous over the CyO balancer chromosome with activities ranging from 28% to 53% of controls. Some of the Ddc -deficient alleles exhibit intracistronic complementation. Most of the complementing pairs of alleles are much reduced in viability, e.g. 5% of expected, and express a common syndrome of mutant phenes which can reasonably be inferred to derive from inadequately sclerotinized cuticle. Individuals heterozygous for the noncomplementing allele, Ddcn7 , over the 12-band DDC deficiency, Df(2L)130 , die at the end of embryogenesis as unhatched larvae with unpigmented mouth parts. The Ddc alleles and the l(2)amd α-methyl dopa (αMD) hypersensitive alleles are both located within the 11 band region 37B10-C7. The l(2)amd locus is immediately to the right of hk (2-53.9). Ddc has been mapped within 0.004 Map Units to the right of l(2)amd with a maximum estimated recombination frequency of 0.01%. None of the Ddc/CyO strains are sensitive to the dietary administration of α-methyl dopa (αMD), and complementation occurs between the Ddc deficient alleles and the l(2)amd alleles both on the basis of viability and DDC activity. No effect on DDC by the amd alleles has been found to date. Even in the complementing heterozygote, amdH1/amdH89 , the level of activity, thermostability, and in vitro αMD inhibition of DDC remains unaffected. Although no biochemical phene has yet been established for the αMD hypersensitive amd alleles, it seems likely that the two groups of mutants are functionally related.
机译:在多巴脱羧酶缺乏症Df(2L)50中分离出的84个致死菌中,有8个被鉴定为DDC缺乏等位基因,这是由于当它们在CyO平衡染色体上杂合时其对DDC活性的影响,活性范围为28%至53%的控件。一些Ddc缺陷等位基因表现出顺反子内互补。等位基因的大多数互补对的生存能力大大降低,例如, <预期值的5%,并且表达突变现象的常见症状,可以合理地推断出它们是由硬化不足的表皮产生的。在12带DDC缺乏症Df(2L)130上,非互补等位基因Ddcn7杂合的个体在胚胎发生结束时死亡,并成为未孵化的幼虫和未着色的嘴部。 Ddc等位基因和l(2)amdα-甲基多巴(αMD)超敏等位基因均位于11个带区37B10-C7中。 l(2)amd位置紧邻hk(2-53.9)的右侧。 Ddc已映射到l(2)amd右侧的0.004个映射单位内,最大估计重组频率为0.01%。 Ddc / CyO菌株均不对饮食中的α-甲基多巴(αMD)敏感,并且基于生存力和DDC活性,Ddc缺陷等位基因与l(2)amd等位基因之间会发生互补。迄今为止,尚未发现amd等位基因对DDC的影响。即使在互补的杂合子amdH1 / amdH89中,DDC的活性,热稳定性和体外αMD抑制水平也不会受到影响。尽管尚未为αMD超敏amd等位基因建立任何生化表象,但似乎两组突变体在功能上相关。

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