Zhang Xiangbo, Qi Yongwen
Guangdong Sugarcane Genetic Improvement Engineering Center, Institute of Bioengineering, Guangdong Academy of Sciences, Guangzhou, China.
Front Plant Sci. 2020 Dec 3;11:577274. doi: 10.3389/fpls.2020.577274. eCollection 2020.
Anti-sense transcription is increasingly being recognized as an important regulator of gene expression. But the transcriptome complementation of anti-sense RNA in hybrid relative to their inbred parents was largely unknown. In this study, we profiled strand-specific RNA sequencing (RNA-seq) in a maize hybrid and its inbred parents (B73 and Mo17) in two tissues. More anti-sense transcripts were present in the hybrid compared with the parental lines. We detected 293 and 242 single-parent expression of anti-sense (SPEA) transcripts in maize immature ear and leaf tissues, respectively. There was little overlap of the SPEA transcripts between the two maize tissues. These results suggested that SPEA is a general mechanism that drives extensive complementation in maize hybrids. More importantly, extremely high-level expression of anti-sense transcripts was associated with low-level expression of the cognate sense transcript by reducing the level of histone H3 lysine 36 methylation (H3K36me3). In summary, these SPEA transcripts increased our knowledge about the transcriptomic complementation in hybrid.
反义转录越来越被认为是基因表达的重要调节因子。但相对于其自交亲本,杂种中反义RNA的转录组互补情况在很大程度上尚不清楚。在本研究中,我们对玉米杂种及其自交亲本(B73和Mo17)在两个组织中的链特异性RNA测序(RNA-seq)进行了分析。与亲本系相比,杂种中存在更多的反义转录本。我们分别在玉米未成熟穗和叶片组织中检测到293个和242个反义单亲表达(SPEA)转录本。这两个玉米组织中的SPEA转录本几乎没有重叠。这些结果表明,SPEA是驱动玉米杂种广泛互补的一种普遍机制。更重要的是,反义转录本的极高水平表达通过降低组蛋白H3赖氨酸36甲基化(H3K36me3)水平与同源正义转录本的低水平表达相关。总之,这些SPEA转录本增加了我们对杂种转录组互补的认识。