Suppr超能文献

植物异源多倍体中 5S rRNA 基因的单亲沉默——以独行菜(十字花科)为例。

Uniparental silencing of 5S rRNA genes in plant allopolyploids - insights from Cardamine (Brassicaceae).

机构信息

Central European Institute of Technology (CEITEC), Masaryk University, 625 00, Brno, Czech Republic.

Department of Experimental Biology, Faculty of Science, Masaryk University, 611 37, Brno, Czech Republic.

出版信息

Plant J. 2024 Aug;119(3):1313-1326. doi: 10.1111/tpj.16850. Epub 2024 Jun 5.

Abstract

While the phenomenon of uniparental silencing of 35S rDNA in interspecific hybrids and allopolyploids is well documented, there is a notable absence of information regarding whether such silencing extends to the 5S RNA component of ribosomes. To address this gap in knowledge, we analyzed the 5S and 35S rDNA expression in Cardamine (Brassicaceae) allopolyploids, namely C. × insueta (2n = 3x = 24, genome composition RRA), C. flexuosa (2n = 4x = 32, AAHH), and C. scutata (2n = 4x = 32, PPAA) which share a common diploid ancestor (AA). We employed high-throughput sequencing of transcriptomes and genomes and phylogenetic analyses of 5S rRNA variants. The genomic organization of rDNA was further scrutinized through clustering and fluorescence in situ hybridization. In the C. × insueta allotriploid, we observed uniparental dominant expression of 5S and 35S rDNA loci. In the C. flexuosa and C. scutata allotetraploids, the expression pattern differed, with the 35S rDNA being expressed from the A subgenome, whereas the 5S rDNA was expressed from the partner subgenome. Both C. flexuosa and C. scutata but not C. × insueta showed copy and locus number changes. We conclude that in stabilized allopolyploids, transcription of ribosomal RNA components occurs from different subgenomes. This phenomenon appears to result in the formation of chimeric ribosomes comprising rRNA molecules derived from distinct parental origins. We speculate that the interplay of epigenetic silencing and rDNA rearrangements introduces an additional layer of variation in multimolecule ribosomal complexes, potentially contributing to the evolutionary success of allopolyploids.

摘要

虽然异源杂交和异源多倍体中 35S rDNA 的单亲沉默现象已得到充分证实,但关于这种沉默是否扩展到核糖体的 5S RNA 成分却鲜有报道。为了填补这一知识空白,我们分析了十字花科(Brassicaceae)异源多倍体(Cardamine)中 5S 和 35S rDNA 的表达情况,这些异源多倍体包括 C. insueta(2n = 3x = 24,基因组组成 RRA)、C. flexuosa(2n = 4x = 32,AAHH)和 C. scutata(2n = 4x = 32,PPAA),它们拥有一个共同的二倍体祖先(AA)。我们采用高通量转录组和基因组测序以及 5S rRNA 变体的系统发育分析。通过聚类和荧光原位杂交进一步研究 rDNA 的基因组组织。在 C. insueta 异源三倍体中,我们观察到 5S 和 35S rDNA 位点的单亲显性表达。在 C. flexuosa 和 C. scutata 异源四倍体中,表达模式不同,35S rDNA 来自 A 亚基因组,而 5S rDNA 则来自伙伴亚基因组。C. flexuosa 和 C. scutata 都表现出拷贝数和基因座数的变化,但 C. insueta 没有。我们的结论是,在稳定的异源多倍体中,核糖体 RNA 成分的转录来自不同的亚基因组。这种现象似乎导致了由来自不同亲本来源的 rRNA 分子组成的嵌合核糖体的形成。我们推测,表观遗传沉默和 rDNA 重排的相互作用在多分子核糖体复合物中引入了额外的变异层,这可能有助于异源多倍体的进化成功。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验