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黄鲈(Perca flavescens)核糖体DNA基因间隔区的广泛长度变异。

Extensive length variation in the ribosomal DNA intergenic spacer of yellow perch (Perca flavescens).

作者信息

Kakou Bidénam, Angers Bernard, Glémet Hélène

机构信息

a Département des sciences de l'environnement, Université du Québec à Trois-Rivières, Trois-Rivières, QC G9A 5H7, Canada.

b Department of Biological Sciences, Université de Montréal, Montréal, QC H3C 3J7, Canada.

出版信息

Genome. 2016 Mar;59(3):149-58. doi: 10.1139/gen-2015-0114. Epub 2015 Dec 18.

Abstract

The intergenic spacer (IGS) is located between ribosomal RNA (rRNA) gene copies. Within the IGS, regulatory elements for rRNA gene transcription are found, as well as a varying number of other repetitive elements that are at the root of IGS length heterogeneity. This heterogeneity has been shown to have a functional significance through its effect on growth rate. Here, we present the structural organization of yellow perch (Perca flavescens) IGS based on its entire sequence, as well as the IGS length variation within a natural population. Yellow perch IGS structure has four discrete regions containing tandem repeat elements. For three of these regions, no specific length class was detected as allele size was seemingly normally distributed. However, for one repeat region, PCR amplification uncovered the presence of two distinctive IGS variants representing a length difference of 1116 bp. This repeat region was also devoid of any CpG sites despite a high GC content. Balanced selection may be holding the alleles in the population and would account for the high diversity of length variants observed for adjacent regions. Our study is an important precursor for further work aiming to assess the role of IGS length variation in influencing growth rate in fish.

摘要

基因间隔区(IGS)位于核糖体RNA(rRNA)基因拷贝之间。在IGS内,可发现rRNA基因转录的调控元件,以及数量不等的其他重复元件,这些元件是IGS长度异质性的根源。这种异质性已通过其对生长速率的影响显示出功能意义。在此,我们基于黄鲈(Perca flavescens)IGS的完整序列展示其结构组织,以及自然种群内IGS的长度变异。黄鲈IGS结构有四个包含串联重复元件的离散区域。对于其中三个区域,未检测到特定的长度类别,因为等位基因大小似乎呈正态分布。然而,对于一个重复区域,PCR扩增发现存在两个独特的IGS变体,其长度差异为1116 bp。尽管GC含量高,但该重复区域也没有任何CpG位点。平衡选择可能使种群中的等位基因得以维持,并可解释在相邻区域观察到的长度变体的高度多样性。我们的研究是进一步评估IGS长度变异对鱼类生长速率影响的重要前奏。

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