Tang Minqiang, Li Juanling, Hu Xu, Sun Lu, Helal Mmu, Chen Jianguo, Zhang Yuanyuan
Key Laboratory of Germplasm Innovation of Tropical Special Forest Trees and Ornamental Plants (Ministry of Education), College of Forestry, Hainan University, Haikou, China.
The Key Laboratory of Biology and Genetic Improvement of Oil Crops, The Ministry of Agriculture, Oil Crops Research Institute of Chinese, Academy of Agricultural Sciences, Wuhan, China.
Front Genet. 2021 Nov 11;12:756172. doi: 10.3389/fgene.2021.756172. eCollection 2021.
The marked increase in plant genomic data has provided valuable resources for investigating the dynamic evolution of duplicate genes in polyploidy. is an ideal model species for investigating polyploid genome evolution. The present study comprehensively analyzed DNA and RNA variation of two representative inbredlines, Zhongshuang11 and Zhongyou821, and we investigated gene expression levels of A and C subgenomes in multiple tissues of the two lines. The distribution of transmitted single nucleotide polymorphisms (SNPs) was significantly different in two subgenomes of . Gene expression levels were significantly negatively correlated with number of variations in replication and transcription of the corresponding genes, but were positively correlated with the ratios of transmitted SNPs from DNA to RNA. We found a higher density of SNP variation in A than that in C during DNA replication and more SNPs were transmitted to RNA during transcription, which may contribute to A expression dominance. These activities resulted in asymmetrical gene expression in polyploid The SNPs transmitted from DNA to RNA could be an important complement feature in comparative genomics, and they may play important roles in asymmetrical genome evolution in polyploidy.
植物基因组数据的显著增加为研究多倍体中重复基因的动态进化提供了宝贵资源。是研究多倍体基因组进化的理想模式物种。本研究全面分析了两个代表性自交系中双11和中油821的DNA和RNA变异,并研究了这两个自交系多个组织中A和C亚基因组的基因表达水平。在的两个亚基因组中,传递的单核苷酸多态性(SNP)分布存在显著差异。基因表达水平与相应基因复制和转录中的变异数量显著负相关,但与从DNA到RNA的传递SNP比率正相关。我们发现在DNA复制过程中,A中的SNP变异密度高于C,并且在转录过程中有更多的SNP传递到RNA,这可能导致A表达优势。这些活动导致多倍体中的基因表达不对称。从DNA传递到RNA的SNP可能是比较基因组学中的一个重要补充特征,它们可能在多倍体不对称基因组进化中发挥重要作用。