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Evolutionary Dynamics and Preferential Expression of Homeologous 18S-5.8S-26S Nuclear Ribosomal Genes in Natural and Artificial Glycine Allopolyploids

机译:同源18S-5.8S-26S核核糖体基因在天然和人工同种异体多倍体中的进化动力学和优先表达

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摘要

Polyploidy is an important evolutionary process in plants, but much remains to be learned about the evolution of gene expression in polyploids. Evolution and expression of the 18S-5.8S-26S ribosomal gene family was investigated at homeologous loci in the Glycine subgenus Glycine perennial soybean polyploid complex, which consists of several diploid genomes that have formed allopolyploids in various combinations, often recurrently. A semiquantitative PCR method targeting the internal transcribed spacer (ITS) of the 18S-5.8S-26S nuclear ribosomal DNA (nrDNA) was used to survey the ratio between homeologous repeats in polyploid genomes and to test for preferential expression of homeologous nrDNA loci. Most natural polyploids possess one predominant nrDNA homeolog in their genome. Analysis of F_2 segregation in an artificial cross suggested that in some plants, most or all repeats at one homeologous locus have been lost, whereas in other plants two loci remain, but both have been homogenized by concerted evolution. In most natural allopolyploids harboring a relatively balanced ratio of homeologs, one homeolog was expressed preferentially, but in the majority of plants, low levels of transcription could be detected from the other homeolog. Individuals within some tetraploid taxa varied as to which homeolog was expressed preferentially. In some plants, the degree of preferential expression also varied among tissues. Preferential expression was absent in synthetic polyploids and in some artificial diploid hybrids, suggesting that nucleolar dominance is not necessarily a direct result of hybridization or polyploidization. The establishment of preferential expression in Glycine allopolyploids appears to be either stochastic within lineages or genotype specific.
机译:多倍体是植物中一个重要的进化过程,但关于多倍体中基因表达的进化还有待了解。研究了甘氨酸亚属甘氨酸多年生大豆多倍体复合体中18S-5.8S-26S核糖体基因家族的进化和表达,甘氨酸亚属甘氨酸多年生大豆多倍体复合体由多个二倍体基因组组成,这些二倍体基因组以各种组合形成同种异体多倍体,通常反复出现。采用靶向18S-5.8S-26S核糖体DNA(nrDNA)内部转录间隔区(ITS)的半定量PCR方法,研究多倍体基因组中同源重复序列之间的比例,并检测同源nrDNA位点的优先表达。大多数天然多倍体在其基因组中具有一个主要的 nrDNA 同源物。对人工杂交中F_2分离的分析表明,在某些植物中,一个同源位点的大部分或全部重复已经丢失,而在其他植物中,两个位点仍然存在,但两者都已通过协同进化同质化。在大多数具有相对平衡的同源物比例的天然同种多倍体中,一种同源物优先表达,但在大多数植物中,可以从另一个同源物中检测到低水平的转录。一些四倍体分类群中的个体在优先表达同源物方面各不相同。在一些植物中,优先表达的程度也因组织而异。在合成多倍体和一些人工二倍体杂交种中不存在优先表达,这表明核仁优势不一定是杂交或多倍体化的直接结果。甘氨酸同种异体多倍体中优先表达的建立似乎是谱系内的随机表达或基因型特异性的。

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