State Key Laboratory of Hybrid Rice, Department of Genetics, College of Life Sciences, Wuhan University, Wuhan, 430072, China.
WuhanWuda Tianyuau Bio-Tech Co., LTD, Wuhan, China.
BMC Plant Biol. 2019 Aug 5;19(1):340. doi: 10.1186/s12870-019-1944-2.
Circular RNAs (circRNAs) are known to play an important role in the regulation of gene expression in eukaryotes. Photo-thermosensitive genic male sterile (PTGMS) is a very important germplasm resource in two-line hybrid rice breeding. Although many circRNAs have been identified in rice (Oryza sativa L.), little is known about the biological roles of circRNAs in the fertility transition of the PTGMS rice line.
In the present study, RNA-sequencing libraries were constructed from the young panicles of the Wuxiang S sterile line rice (WXS (S)) and its fertile line rice (WXS (F)) at three development stages with three biological replicates. A total of 9994 circRNAs were obtained in WXS rice based on high-throughput strand-specific RNA sequencing and bioinformatic approaches, of which 5305 were known circRNAs and 4689 were novel in rice. And 14 of 16 randomly selected circRNAs were experimentally validated with divergent primers. Our results showed that 186 circRNAs were significantly differentially expressed in WXS (F) compared with WXS (S), of which 97, 87 and 60 circRNAs were differentially expressed at the pollen mother cell (PMC) formation stage (P2), the meiosis stage (P3) and the microspore formation stage (P4), respectively. Fertility specific expression patterns of eight circRNAs were analysis by qRT-PCR. Gene ontology (GO) and KEGG pathway analysis of the parental genes of differentially expressed circRNAs (DECs) revealed that they mainly participated in various biological processes such as development, response to stimulation, hormonal regulation, and reproduction. Furthermore, 15 DECs were found to act as putative miRNA sponges to involved in fertility transition in PTGMS rice line.
In the present study, the abundance and characteristics of circRNAs were investigated in the PTGMS rice line using bioinformatic approaches. Moreover, the expression patterns of circRNAs were different between WXS (F) and WXS (S). Our findings primarily revealed that circRNAs might be endogenous noncoding regulators of flower and pollen development, and were involved in the fertility transition in the PTGMS rice line, and guide the production and application of two-line hybrid rice.
环状 RNA(circRNAs)在真核生物基因表达调控中起着重要作用。光温敏雄性不育(PTGMS)是两系杂交稻育种中非常重要的种质资源。尽管在水稻(Oryza sativa L.)中已经鉴定出许多 circRNAs,但对于 PTGMS 水稻系育性转换中 circRNAs 的生物学功能知之甚少。
本研究以三个发育阶段的三个生物学重复构建了武香 S 不育系(WXS(S))及其可育系(WXS(F))的幼穗 RNA-seq 文库。基于高通量链特异性 RNA 测序和生物信息学方法,在 WXS 水稻中获得了 9994 个 circRNAs,其中 5305 个是已知的 circRNAs,4689 个是水稻中的新 circRNAs。用差异引物对随机选择的 16 个 circRNAs 中的 14 个进行了实验验证。结果表明,WXS(F)与 WXS(S)相比,有 186 个 circRNAs 差异表达,其中 97、87 和 60 个 circRNAs 在花粉母细胞(PMC)形成阶段(P2)、减数分裂阶段(P3)和小孢子形成阶段(P4)差异表达。通过 qRT-PCR 分析了 8 个 circRNAs 的育性特异表达模式。差异表达 circRNAs(DECs)亲本基因的基因本体(GO)和 KEGG 通路分析表明,它们主要参与发育、刺激反应、激素调节和生殖等多种生物学过程。此外,发现 15 个 DECs 可作为潜在的 miRNA 海绵,参与 PTGMS 水稻系的育性转换。
本研究采用生物信息学方法研究了 PTGMS 水稻系中 circRNAs 的丰度和特征。此外,WXS(F)和 WXS(S)之间的 circRNAs 表达模式不同。我们的研究结果初步表明,circRNAs 可能是花和花粉发育的内源性非编码调节剂,并参与了 PTGMS 水稻系的育性转换,指导了两系杂交稻的生产和应用。