College of Life Science, Shenyang Normal University, Shenyang, 110034, China.
Experimental Teaching Center, Shenyang Normal University, Shenyang, 110034, China.
Sci Rep. 2021 Feb 11;11(1):3660. doi: 10.1038/s41598-021-83162-8.
Two subspecies of rice, Oryza sativa ssp. indica and O. sativa ssp. japonica, with reproductive isolation and differences in morphology and phenotypic differences, were established during the process of rice domestication. To understand how domestication has changed the transcriptomes of the two rice subspecies and given rise to the phenotypic differences, we obtained approximately 700 Gb RNA-Seq data from 26 indica and 25 japonica accessions, and identified 97,005 transcribed fragments and 4579 novel transcriptionally active regions. The two rice subspecies had significantly different gene expression profiles, we identified 1,357 (3.3% in all genes) differentially expressed genes (DEGs) between indica and japonica rice. Combining existing gene function studies, it is found that some of these differential genes are related to the differentiation of the two subspecies, such as grain shape and cold tolerance, etc. Functional annotation of these DEGs indicates that they are involved in cell wall biosynthesis and reproductive processes. Furthermore, compared with the non-DEGs, the DEGs from both subspecies had more 5'flanking regions with low polymorphism to divergence ratios, indicating a stronger positive selection pressure on the regulation of the DEGs. This study improves our understanding of the rice genome by comparatively analyzing the transcriptomes of indica and japonica rice and identifies DEGs those may be responsible for the reproductive isolation and phenotypic differences between the two rice subspecies.
两个水稻亚种,即籼稻(Oryza sativa ssp. indica)和粳稻(O. sativa ssp. japonica),在水稻驯化过程中形成了生殖隔离和形态及表型差异。为了了解驯化过程如何改变这两个水稻亚种的转录组并产生表型差异,我们从 26 份籼稻和 25 份粳稻中获得了约 700 Gb 的 RNA-Seq 数据,并鉴定了 97005 个转录片段和 4579 个新的转录活性区域。两个水稻亚种的基因表达谱存在显著差异,我们在籼稻和粳稻之间鉴定了 1357 个(所有基因的 3.3%)差异表达基因(DEGs)。结合现有基因功能研究,发现其中一些差异基因与两个亚种的分化有关,如粒形和耐寒性等。对这些 DEGs 的功能注释表明,它们参与了细胞壁生物合成和生殖过程。此外,与非 DEGs 相比,两个亚种的 DEGs 具有更多的 5'侧翼区域具有低多态性到分化比,表明对 DEGs 调控的正选择压力更强。本研究通过比较分析籼稻和粳稻的转录组,提高了我们对水稻基因组的理解,并鉴定了可能导致两个水稻亚种生殖隔离和表型差异的 DEGs。