Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074, China.
Key Laboratory of Molecular Biophysics of the Ministry of Education, Wuhan 430074, China.
Int J Mol Sci. 2023 Nov 12;24(22):16238. doi: 10.3390/ijms242216238.
Interspecific crosses that fuse the genomes of two different species may result in overall gene expression changes in the hybrid progeny, called 'transcriptome shock'. To better understand the expression pattern after genome merging during the early stages of allopolyploid formation, we performed RNA sequencing analysis on developing embryos of , , and their synthesized allotriploid hybrids. Here, we show that the transcriptome shock occurs in the developing seeds of the hybrids. Of the homoeologous gene pairs, 17.1% exhibit expression bias, with an overall expression bias toward . The expression level dominance also biases toward , mainly induced by the expression change in homoeologous genes from . Functional enrichment analysis revealed significant differences in differentially expressed genes (DEGs) related to photosynthesis, hormone synthesis, and other pathways. Further study showed that significant changes in the expression levels of the key transcription factors (TFs) could regulate the overall interaction network in the developing embryo, which might be an essential cause of phenotype change. In conclusion, the present results have revealed the global changes in gene expression patterns in developing seeds of the hybrid between and , and provided novel insights into the occurrence of transcriptome shock for harnessing heterosis.
种间杂交将两个不同物种的基因组融合在一起,可能导致杂种后代的整体基因表达发生变化,这种现象被称为“转录组冲击”。为了更好地了解异源多倍体形成早期基因组融合过程中的表达模式,我们对 、 和它们合成的异源三倍体杂种的发育胚胎进行了 RNA 测序分析。在这里,我们表明转录组冲击发生在杂种发育的种子中。在同源基因对中,有 17.1%表现出表达偏向性,整体偏向于 。表达水平的优势也偏向于 ,主要是由来自 的同源基因的表达变化引起的。功能富集分析显示,与光合作用、激素合成和其他途径相关的差异表达基因(DEGs)存在显著差异。进一步的研究表明,关键转录因子(TFs)的表达水平的显著变化可以调节发育胚胎中的整体互作网络,这可能是表型变化的一个重要原因。总之,本研究揭示了 与 杂交发育种子中基因表达模式的全局变化,并为利用杂种优势时转录组冲击的发生提供了新的见解。