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稻属中α5和β5珠蛋白基因的假基因化进化途径。

Evolutionary pathway of pseudogenization of globin genes, α5 and β5, in genus Oryzias.

作者信息

Maruyama Kouichi, Wang Bing, Ishikawa Yuji, Yasumasu Shigeki, Iuchi Ichiro

机构信息

Fukushima Project Headquarters, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba, 263-8555, Japan.

Research Center for Radiation Protection, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba, 263-8555, Japan.

出版信息

Dev Genes Evol. 2015 Sep;225(5):305-11. doi: 10.1007/s00427-015-0509-0. Epub 2015 Jul 22.

Abstract

Hemoglobin transports oxygen in many organisms and consists of α- and β-globin chains. Previously, using molecular phylogenetic analysis, we proposed that both α- and β-globins of teleost could be classified into four groups. We also showed that the Hd-rR strain of medaka (Oryzias latipes) inhabiting southern Japan had all four groups of globin genes but that the α- and β-globin genes of group III were pseudogenized (α5(ψα), β5(ψβ)). Based on the small degree of nucleotide variations, the pseudogenization of β5 was assumed to have occurred at a relatively late stage of evolution. Here, we compared the α5(ψα)-β5(ψβ) of two other strains of O. latipes and found that both α5(ψα) and β5(ψβ) of the northern Japanese and Korean strains were pseudogenized similar to those of Hd-rR. In a Philippine population (Oryzias luzonensis), α5(ψα) was also pseudogenized, but the structure was different from that of O. latipes, and β5(ψβ) was almost deleted. Interestingly, an Indonesian population (Oryzias celebensis) had α5 and β5 genes that were deduced to be functional. Indeed, they were expressed from the young to adult development stages, and this expression pattern was consistent with the expression of α2 and ad.α1 in Hd-rR. Because α2 and ad.α1 in Hd-rR were assigned to groups I and II, respectively, we speculate that their expression patterns might be altered by pseudogenization of group III genes. These results provide a basis for further investigations of recruiting and changing expression patterns of one globin gene after pseudogenization of other globin genes during evolution.

摘要

血红蛋白在许多生物体内运输氧气,由α-和β-珠蛋白链组成。此前,我们通过分子系统发育分析提出,硬骨鱼的α-和β-珠蛋白均可分为四类。我们还发现,栖息在日本南部的青鳉(Oryzias latipes)Hd-rR品系拥有所有四类珠蛋白基因,但第三类的α-和β-珠蛋白基因已被假基因化(α5(ψα),β5(ψβ))。基于核苷酸变异程度较小,推测β5的假基因化发生在进化的相对晚期。在此,我们比较了另外两个青鳉品系的α5(ψα)-β5(ψβ),发现日本北部和韩国品系的α5(ψα)和β5(ψβ)均已假基因化,与Hd-rR品系相似。在菲律宾种群(Oryzias luzonensis)中,α5(ψα)也已假基因化,但其结构与青鳉不同,且β5(ψβ)几乎缺失。有趣的是,印度尼西亚种群(Oryzias celebensis)拥有推测为功能性的α5和β5基因。事实上,它们在幼体到成体发育阶段均有表达,且这种表达模式与Hd-rR品系中α2和ad.α1的表达一致。由于Hd-rR品系中的α2和ad.α1分别属于第一类和第二类,我们推测它们的表达模式可能因第三类基因的假基因化而改变。这些结果为进一步研究进化过程中一个珠蛋白基因假基因化后另一个珠蛋白基因的招募和表达模式变化提供了基础。

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