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Identification of Transcriptome SNPs for Assessing Allele-Specific Gene Expression in a Super-Hybrid Rice Xieyou9308

机译:评估超级杂交水稻谢优9308等位基因特异性基因表达的转录组SNPs的鉴定。

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摘要

Hybridization, a common process in nature, can give rise to a vast reservoir of allelic variants. Combination of these allelic variants may result in novel patterns of gene action and is thought to contribute to heterosis. In this study, we analyzed genome-wide allele-specific gene expression (ASGE) in the super-hybrid rice variety Xieyou9308 using RNA sequencing technology (RNA-Seq). We identified 9325 reliable single nucleotide polymorphisms (SNPs) distributed throughout the genome. Nearly 68% of the identified polymorphisms were CT and GA SNPs between R9308 and Xieqingzao B, suggesting the existence of DNA methylation, a heritable epigenetic mark, in the parents and their F1 hybrid. Of 2793 identified transcripts with consistent allelic biases, only 480 (17%) showed significant allelic biases during tillering and/or heading stages, implying that trans effects may mediate most transcriptional differences in hybrid offspring. Approximately 67% and 62% of the 480 transcripts showed R9308 allelic expression biases at tillering and heading stages, respectively. Transcripts with higher levels of gene expression in R9308 also exhibited R9308 allelic biases in the hybrid. In addition, 125 transcripts were identified with significant allelic expression biases at both stages, of which 74% showed R9308 allelic expression biases. R9308 alleles may tend to preserve their characteristic states of activity in the hybrid and may play important roles in hybrid vigor at both stages. The allelic expression of 355 transcripts was highly stage-specific, with divergent allelic expression patterns observed at different developmental stages. Many transcripts associated with stress resistance were differently regulated in the F1 hybrid. The results of this study may provide valuable insights into molecular mechanisms of heterosis.
机译:杂交是自然界中的一种常见过程,可产生大量的等位基因变体。这些等位基因变体的组合可能会导致基因作用的新模式,并被认为有助于杂种优势。在这项研究中,我们使用RNA测序技术(RNA-Seq)分析了超级杂交水稻品种Xieyou9308中的全基因组等位基因特异性基因表达(ASGE)。我们确定了分布在整个基因组中的9325个可靠的单核苷酸多态性(SNP)。 R9308和协庆早B之间有近68%的多态性是CT和GA SNP,这表明亲本及其F1杂种中存在可遗传的表观遗传标记DNA甲基化。在2793个经鉴定的具有一致等位基因偏倚的转录本中,只有480个(17%)在分er和/或抽穗期显示出显着的等位基因偏倚,这表明反式作用可能介导了杂交后代的大多数转录差异。 480个转录本中大约67%和62%分别在分er和抽穗期显示R9308等位基因表达偏倚。 R9308中具有较高基因表达水平的转录本在杂种中也表现出R9308等位基因偏倚。另外,在两个阶段鉴定出具有显着的等位基因表达偏差的125个转录物,其中74%显示R9308等位基因表达偏差。 R9308等位基因可能倾向于保留其在杂种中的活动状态,并且可能在两个阶段的杂种活力中发挥重要作用。 355个转录本的等位基因表达是高度特异性的,在不同的发育阶段观察到不同的等位基因表达模式。在F1杂种中,许多与抗逆性相关的转录本受到不同的调控。这项研究的结果可能为杂种优势的分子机制提供有价值的见解。

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