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蒿属植物(菊科)中35S和5S核糖体RNA基因的连锁:被子植物的首个证据。

Linkage of 35S and 5S rRNA genes in Artemisia (family Asteraceae): first evidence from angiosperms.

作者信息

Garcia Sònia, Lim K Yoong, Chester Michael, Garnatje Teresa, Pellicer Jaume, Vallès Joan, Leitch Andrew R, Kovarík Ales

机构信息

Laboratori de Botànica, Facultat de Farmàcia, Universitat de Barcelona, Catalonia, Spain.

出版信息

Chromosoma. 2009 Feb;118(1):85-97. doi: 10.1007/s00412-008-0179-z. Epub 2008 Sep 9.

Abstract

Typically in plants, the 5S and 35S ribosomal DNA (rDNA) encoding two major ribosomal RNA species occur at separate loci. However, in some algae, bryophytes and ferns, they are at the same locus (linked arranged). Southern blot hybridisation, polymerase chain reactions (PCR), fluorescent in situ hybridisation, cloning and sequencing were used to reveal 5S and 35S rDNA genomic organisation in Artemisia. We observed thousands of rDNA units at two-three loci containing 5S rDNA in an inverted orientation within the inter-genic spacer (IGS) of 35S rDNA. The sequenced clones of 26-18S IGS from Artemisia absinthium appeared to contain a conserved 5S gene insertion proximal to the 26S gene terminus (5S rDNA-1) and a second less conserved 5S insertion (5S rDNA-2) further downstream. Whilst the 5S rDNA-1 showed all the structural features of a functional gene, the 5S-rDNA-2 had a deletion in the internal promoter and probably represents a pseudogene. The linked arrangement probably evolved before the divergence of Artemisia from the rest of Asteraceae (>10 Myrs). This arrangement may have involved retrotransposons and once formed spread via mechanisms of concerted evolution. Heterogeneity in unit structure may reflect ongoing homogenisation of variant unit types without fixation for any particular variant.

摘要

通常在植物中,编码两种主要核糖体RNA种类的5S和35S核糖体DNA(rDNA)位于不同的位点。然而,在一些藻类、苔藓植物和蕨类植物中,它们位于同一位点(连锁排列)。采用Southern杂交、聚合酶链反应(PCR)、荧光原位杂交、克隆和测序等方法揭示了蒿属植物中5S和35S rDNA的基因组组织。我们在两到三个含有5S rDNA的位点观察到数千个rDNA单元,它们在35S rDNA的基因间隔区(IGS)内呈反向排列。来自苦艾的26 - 18S IGS的测序克隆似乎在26S基因末端附近包含一个保守的5S基因插入(5S rDNA - 1)和下游更远位置的第二个保守性较低的5S插入(5S rDNA - 2)。虽然5S rDNA - 1显示出功能基因的所有结构特征,但5S - rDNA - 2在内含子启动子中有一个缺失,可能代表一个假基因。这种连锁排列可能在蒿属与菊科其他植物分化(>1000万年前)之前就已经进化形成。这种排列可能涉及反转录转座子,一旦形成便通过协同进化机制传播。单元结构的异质性可能反映了变异单元类型正在进行的同质化,而没有固定为任何特定的变异类型。

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