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含有重复乙醇脱氢酶基因的位点在莫哈韦果蝇及相关物种中的分子遗传学特征分析。

Molecular genetic characterization of a locus that contains duplicate Adh genes in Drosophila mojavensis and related species.

作者信息

Mills L E, Batterham P, Alegre J, Starmer W T, Sullivan D T

出版信息

Genetics. 1986 Feb;112(2):295-310. doi: 10.1093/genetics/112.2.295.

Abstract

Drosophila mojavensis and other species of the mulleri subgroup contain a duplicate gene encoding the enzyme alcohol dehydrogenase (ADH). Studies on the genetic relationship of the two genes using electrophoretic variants show them to be closely linked. We have cloned a 13.5-kb fragment of D. mojavensis DNA into the lambda vector, Charon 30. This fragment contains both Adh genes separated by approximately 2 kb of DNA. The clone hybridized to a single position on chromosome 3 in D. mojavensis following in situ hybridization. It is likely that the genes are tandemly arranged in the genome. One of the two genes shows a complexity in its structure that suggests the close linkage of a pseudogene or part of a gene. The structure of the Adh locus in five species of the mulleri subgroup have been compared by constructing restriction maps of genomic DNA. Two of these species D. arizonensis and D. mojavensis express Adh-1 in the ovaries; the others do not. In comparing these species it is evident that there has been one or two insertions into the region between the Adh genes. It is possible that one of these structural changes is related to the change in Adh tissue-specific expression that has occurred during the evolution of these species.

摘要

莫哈韦果蝇及穆勒氏亚组的其他物种含有一个编码乙醇脱氢酶(ADH)的重复基因。利用电泳变体对这两个基因的遗传关系进行研究,结果表明它们紧密连锁。我们已将一段13.5kb的莫哈韦果蝇DNA片段克隆到λ载体Charon 30中。该片段包含两个Adh基因,它们被大约2kb的DNA隔开。原位杂交后,该克隆与莫哈韦果蝇的3号染色体上的一个单一位置杂交。这些基因很可能在基因组中呈串联排列。两个基因中的一个在结构上表现出复杂性,这表明存在一个假基因或部分基因的紧密连锁。通过构建基因组DNA的限制性图谱,对穆勒氏亚组的五个物种中的Adh基因座结构进行了比较。其中两个物种,即亚利桑那果蝇和莫哈韦果蝇,在卵巢中表达Adh-1;其他物种则不表达。在比较这些物种时,很明显在Adh基因之间的区域发生了一到两次插入。这些结构变化之一有可能与这些物种进化过程中发生的Adh组织特异性表达的变化有关。

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Structure and transcription of the Drosophila mulleri alcohol dehydrogenase genes.
Nucleic Acids Res. 1985 Oct 11;13(19):6899-917. doi: 10.1093/nar/13.19.6899.

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