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Ovule Gene Expression Analysis in Sexual and Aposporous Apomictic Hypericum perforatum L. (Hypericaceae) Accessions

机译:有性和无性无孔贯叶贯叶金丝桃(Hypericaceae)种质胚珠基因表达分析

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摘要

Hypericum perforatum L. (2n = 4x = 32) is an attractive model system for the study of aposporous apomixis. The earliest phenotypic features of aposporous apomixis in this species are the mitotic formation of unreduced embryo sacs from a somatic cell of the ovule nucellus and the avoidance of meiosis. In this research we addressed gene expression variation in sexual and apomictic plants, by focusing on the ovule nucellus, which is the cellular domain primarily involved into the differentiation of meiocyte precursors and aposporous embryo sacs, at a pre-meiotic developmental stage. Gene expression analyses performed by RNAseq identified 396 differentially expressed genes and 1834 transcripts displaying phenotype-specific expression. Furthermore, the sequencing and assembly of the genome from a diploid sexual accession allowed the annotation of a 50 kb sequence portion located upstream the HAPPY locus and to address the extent to which single transcripts were assembled in multiple variants and their co-expression levels. About one third of identified DEGs and phenotype-specific transcripts were associated to transcript variants with alternative expression patterns. Additionally, considering DEGs and phenotype-specific transcript, the co-expression level was estimated in about two transcripts per locus. Our gene expression study shows massive differences in the expression of several genes encoding for transposable elements. Transcriptional differences in the ovule nucellus and pistil terminal developmental stages were also found for subset of genes encoding for potentially interacting proteins involved in pre-mRNA splicing. Furthermore, the sexual and aposporous ovule transcriptomes were characterized by differential expression in genes operating in RNA silencing, RNA-mediated DNA methylation (RdDM) and histone and chromatin modifications. These findings are consistent with a role of these processes in regulating cell fate determination in the ovule, as indicated by forward genetic studies in sexual model species. The association between aposporous apomixis, pre-mRNA splicing and DNA methylation mediated by sRNAs, which is supported by expression data and by the enrichment in GO terms related to these processes, is consistent with the massive differential expression of multiple transposon-related sequences observed in ovules collected from both sexual and aposporous apomictic accessions. Overall, our data suggest that phenotypic expression of aposporous apomixis is concomitant with the modulation of key genes involved in the two interconnected processes: RNA splicing and RNA-directed DNA methylation.
机译:贯叶连翘(2n = 4x = 32)是用于研究无孔无融合生殖的有吸引力的模型系统。在该物种中,无孔无融合生殖的最早的表型特征是来自胚珠体细胞的未还原胚囊的有丝分裂形成和避免减数分裂。在这项研究中,我们着眼于减数分裂前发育阶段的胚珠,胚珠是胚珠的胚珠,胚珠是主要参与减数分裂的前体细胞和无孔胚囊分化的细胞结构域,从而解决了性和无融合生殖植物中的基因表达变异。 RNAseq进行的基因表达分析确定了396个差异表达的基因和1834个显示表型特异性表达的转录本。此外,从二倍体有性登录的基因组的测序和组装允许注释位于HAPPY基因座上游的50 kb序列部分,并解决单个转录本在多种变体中的组装程度及其共表达水平。已鉴定的DEG和表型特异性转录物约有三分之一与具有其他表达方式的转录物变体相关。另外,考虑到DEG和表型特异性转录本,估计每个位点约两个转录本的共表达水平。我们的基因表达研究表明,编码转座因子的几种基因的表达存在巨大差异。还发现在胚珠核和雌蕊末端发育阶段的转录差异是编码参与mRNA前剪接的潜在相互作用蛋白的基因子集。此外,通过在沉默,RNA介导的DNA甲基化(RdDM)以及组蛋白和染色质修饰中起作用的基因中差异表达来表征有性和无孔胚珠转录组。这些发现与这些过程在调节胚珠中细胞命运确定中的作用是一致的,如性模型物种的正向遗传研究所表明的。表达数据和与这些过程相关的GO术语的富集支持了无孔性无融合生殖,前mRNA剪接和sRNAs介导的DNA甲基化之间的联系,这与观察到的多个转座子相关序列的大量差异表达相一致。从无性和无孔无性种质收集的胚珠。总体而言,我们的数据表明,无孔无融合生殖的表型表达与涉及两个相互联系的过程的关键基因的调节同时发生:RNA剪接和RNA指导的DNA甲基化。

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