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果蝇中杀菌肽多基因家族的分子进化:功能基因与假基因

Molecular evolution of the Cecropin multigene family in Drosophila. functional genes vs. pseudogenes.

作者信息

Ramos-Onsins S, Aguadé M

机构信息

Departament de Genètica, Facultat de Biologia, Universitat de Barcelona, 08071 Barcelona, Spain.

出版信息

Genetics. 1998 Sep;150(1):157-71. doi: 10.1093/genetics/150.1.157.

Abstract

Approximately 4 kb of the Cecropin cluster region have been sequenced in nine lines of Drosophila melanogaster and one line of the sibling species D. simulans, D. mauritiana, and D. sechellia. This region includes three functional genes (CecA1, CecA2, and CecB), which are involved in the insect immune response, and two pseudogenes (CecPsi1 and CecPsi2). The level of silent polymorphism in the three Cec genes is rather high (0.028), and there is no excess of nonsynonymous polymorphism. There is no evidence of gene conversion in the history of these genes. The interspecific comparison has revealed that in the three species of the simulans cluster the CecA2 gene is partially deleted and has therefore lost its function and become a pseudogene; in each of the species, subsequent deletions have accumulated. Divergence estimates indicate that the CecPsi1 and CecPsi2 pseudogenes are highly diverged, both between themselves and relative to the other three Cec genes. However, both CecPsi1 and CecPsi2 have conserved transcriptional signals and splice sites, and they present an open reading frame; also, correctly spliced transcripts have been detected for both CecPsi1 and CecPsi2. The data support that these genes are either active genes with some null alleles or young pseudogenes.

摘要

在9个黑腹果蝇品系以及1个其近缘种拟果蝇、毛里求斯果蝇和塞舌尔果蝇品系中,对约4 kb的杀菌肽基因簇区域进行了测序。该区域包括3个参与昆虫免疫反应的功能基因(CecA1、CecA2和CecB)以及2个假基因(CecPsi1和CecPsi2)。3个杀菌肽基因中的沉默多态性水平相当高(0.028),并且不存在过多的非同义多态性。在这些基因的历史中没有基因转换的证据。种间比较显示,在拟果蝇基因簇的3个物种中,CecA2基因部分缺失,因此失去了功能并变成了假基因;在每个物种中,随后的缺失不断积累。分歧估计表明,CecPsi1和CecPsi2假基因彼此之间以及相对于其他3个杀菌肽基因都高度分化。然而,CecPsi1和CecPsi2都具有保守转录信号和剪接位点,并且它们呈现出一个开放阅读框;此外,还检测到了CecPsi1和CecPsi2的正确剪接转录本。这些数据支持这些基因要么是带有一些无效等位基因的活性基因,要么是年轻的假基因。

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