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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >TRANSCRIPTIONAL ANALYSIS OF NUCLEOLAR DOMINANCE IN POLYPLOID PLANTS - BIASED EXPRESSION/SILENCING OF PROGENITOR RRNA GENES IS DEVELOPMENTALLY REGULATED IN BRASSICA
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TRANSCRIPTIONAL ANALYSIS OF NUCLEOLAR DOMINANCE IN POLYPLOID PLANTS - BIASED EXPRESSION/SILENCING OF PROGENITOR RRNA GENES IS DEVELOPMENTALLY REGULATED IN BRASSICA

机译:转录分析的多态性植物中的核-祖胚RRNA基因的偏置表达/沉默在芸苔属中发育。

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Nucleolar dominance is an epigenetic phenomenon that describes the formation of nucleoli around rRNA genes inherited fl om only one parent in the progeny of an interspecific hybrid, Despite numerous cytogenetic studies, little is known about nucleolar dominance at the level of rRNA gene expression in plant, We used S1 nuclease protection and primer extension assays to define nucleolar dominance at a molecular level in the plant genus Brassica. rRNA transcription start sites were mapped in three diploids and in three allotetraploids (amphidiploids) and one allohexaploid species derived from these diploid progenitors, rRNA transcripts of only one progenitor were detected in vegetative tissues of each polyploid. Dominance was independent of maternal effect, ploidy, or rRNA gene dosage, Natural and newly synthesized amphidiploids yielded the same results, arguing against substantial evolutionary effects, The hypothesis that nucleolar dominance in plants is correlated with physical characteristics of rRNA gene intergenic spacers Is not supported in Brassica., Furthermore, in Brassica napus, rRNA genes silenced in vegetative tissues were found to be expressed in all floral organs, including sepals and petals, arguing against the hypothesis that passage through meiosis Is needed to reactivate suppressed genes, Instead? the transition of inflorescence to floral meristem appears to be a developmental stage when silenced genes can he derepressed. [References: 64]
机译:核仁优势是一种表观遗传现象,它描述了种间杂种后代中仅从一个亲本继承的rRNA基因周围核仁的形成。尽管进行了许多细胞遗传学研究,但对于植物中rRNA基因表达水平的核仁优势知之甚少,我们使用S1核酸酶保护和引物延伸分析来确定芸苔属植物中分子水平上的核仁优势。将rRNA转录起始位点定位在三个二倍体和三个异源四倍体(两倍体)和一个源自这些二倍体祖细胞的同种六倍体物种中,在每个多倍体的营养组织中仅检测到一个祖细胞的rRNA转录本。优势与母体效应,倍性或rRNA基因剂量无关,天然和新合成的二倍体也产生了相同的结果,反对实质性的进化效应。不支持植物核仁优势与rRNA基因基因间隔区的物理特征相关的假设此外,在甘蓝型油菜中,发现在营养组织中沉默的rRNA基因在包括花萼和花瓣在内的所有花卉器官中都有表达,这是反对通过减数分裂来重新激活抑制基因的假设的说法。当沉默的基因可以被抑制时,花序到花分生组织的过渡似乎是一个发育阶段。 [参考:64]

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