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通过检查侧翼区域来确定哺乳动物α-珠蛋白基因之间的直系同源关系,结果显示其进化速度很快。

Assignment of orthologous relationships among mammalian alpha-globin genes by examining flanking regions reveals a rapid rate of evolution.

作者信息

Hardison R C, Gelinas R E

机构信息

Department of Molecular and Cell Biology, Pennsylvania State University, University Park 16802.

出版信息

Mol Biol Evol. 1986 May;3(3):243-61. doi: 10.1093/oxfordjournals.molbev.a040392.

Abstract

In order to study the relationships among mammalian alpha-globin genes, we have determined the sequence of the 3' flanking region of the human alpha 1 globin gene and have made pairwise comparisons between sequenced alpha-globin genes. The flanking regions were examined in detail because sequence matches in these regions could be interpreted with the least complication from the gene duplications and conversions that have occurred frequently in mammalian alpha-like globin gene clusters. We found good matches between the flanking regions of human alpha 1 and rabbit alpha 1, human psi alpha 1 and goat I alpha, human alpha 2 and goat II alpha, and horse alpha 1 and goat II alpha. These matches were used to align the alpha-globin genes in gene clusters from different mammals. This alignment shows that genes at equivalent positions in the gene clusters of different mammals can be functional or nonfunctional, depending on whether they corrected against a functional alpha-globin gene in recent evolutionary history. The number of alpha-globin genes (including pseudogenes) appears to differ among species, although highly divergent pseudogenes may not have been detected in all species examined. Although matching sequences could be found in interspecies comparisons of the flanking regions of alpha-globin genes, these matches are not as extensive as those found in the flanking regions of mammalian beta-like globin genes. This observation suggests that the noncoding sequences in the mammalian alpha-globin gene clusters are evolving at a faster rate than those in the beta-like globin gene clusters. The proposed faster rate of evolution fits with the poor conservation of the genetic linkage map around alpha-globin gene clusters when compared to that of the beta-like globin gene clusters. Analysis of the 3' flanking regions of alpha-globin genes has revealed a conserved sequence approximately 100-150 bp 3' to the polyadenylation site; this sequence may be involved in the expression or regulation of alpha-globin genes.

摘要

为了研究哺乳动物α-珠蛋白基因之间的关系,我们测定了人α1珠蛋白基因3'侧翼区的序列,并对已测序的α-珠蛋白基因进行了两两比较。对侧翼区进行了详细研究,因为这些区域的序列匹配在解释时受哺乳动物α-样珠蛋白基因簇中频繁发生的基因重复和转换的影响最小。我们发现人α1和兔α1、人ψα1和山羊Iα、人α2和山羊IIα以及马α1和山羊IIα的侧翼区之间有良好的匹配。这些匹配用于比对不同哺乳动物基因簇中的α-珠蛋白基因。这种比对表明,不同哺乳动物基因簇中相同位置的基因可能是有功能的,也可能是无功能的,这取决于它们在最近的进化历史中是否与一个有功能的α-珠蛋白基因校正过。α-珠蛋白基因(包括假基因)的数量在不同物种间似乎有所不同,尽管在所有检测的物种中可能并未检测到高度分化的假基因。虽然在α-珠蛋白基因侧翼区的种间比较中能找到匹配序列,但这些匹配不如在哺乳动物β-样珠蛋白基因侧翼区中发现的那么广泛。这一观察结果表明,哺乳动物α-珠蛋白基因簇中的非编码序列比β-样珠蛋白基因簇中的进化速度更快。与β-样珠蛋白基因簇相比,α-珠蛋白基因簇周围遗传连锁图谱的保守性较差,这与所提出的更快进化速度相符。对α-珠蛋白基因3'侧翼区的分析揭示了一个位于多聚腺苷酸化位点下游约100 - 150 bp处的保守序列;该序列可能参与α-珠蛋白基因的表达或调控。

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