Pranathi K, Kalyani M B, Viraktamath B C, Balachandran S M, Hajira S K, Koteshwar Rao P, Kulakarni S R, Rekha G, Anila M, Koushik M B V N, Senguttuvel P, Hariprasad A S, Mangrautia S K, Madhav M S, Sundaram R M
ICAR-Indian Institute of Rice Research (IIRR), Hyderabad, 500030 India.
3 Biotech. 2019 Jul;9(7):278. doi: 10.1007/s13205-019-1806-5. Epub 2019 Jun 21.
Interaction between gene products encoded by the cytoplasm and nucleus form the core of wild abortive cytoplasmic male sterile (WA-CMS) system of hybrid breeding in rice. Gaining insights into such interactions can be helpful in the development of better three-line rice hybrids and also identify novel male sterility systems. In the present study, the whole transcriptome profiles of immature florets of IR58025A, a WA-CMS line and its isonuclear maintainer line, IR58025B, collected at pre-anthesis stage were compared to delineate the pathways involved in pollen abortion and male sterility. Among the 774 differentially expressed transcripts (DETs), 496 were down regulated and 278 were up regulated in IR58025A compared to IR58025B. The genes associated with oxidative stress response, defense response, etc. were significantly up-regulated, while those associated with respiration, cell wall modifications, pectinesterase activity, etc. were significantly down-regulated in the WA-CMS line. Gene ontology and pathway enrichment analyses revealed the down-regulation of both nuclear and organellar genes involved in key metabolic processes of cell respiration, photosynthesis and other energy yielding metabolites in IR58025A, relative to IR58025B, indicating a general shift toward conservation of energy and other key resources in the florets of WA-CMS line. The data derived from RNA-Seq analysis were validated through qRT-PCR analysis. Based on the results obtained, it can be hypothesized that pollen abortion principally occurs due to up-regulation of pathways leading to oxidative stress leading to energy starvation conditions in consonance with reduced expression of genes associated with the cell wall formation, respiration, and other key metabolic processes.
细胞质和细胞核编码的基因产物之间的相互作用构成了水稻杂交育种中野败型细胞质雄性不育(WA-CMS)系统的核心。深入了解这种相互作用有助于培育出更好的三系杂交水稻,也有助于识别新的雄性不育系统。在本研究中,比较了在花期前阶段收集的WA-CMS系IR58025A及其同核保持系IR58025B未成熟小花的全转录组图谱,以描绘参与花粉败育和雄性不育的途径。在774个差异表达转录本(DET)中,与IR58025B相比,IR58025A中有496个下调,278个上调。与氧化应激反应、防御反应等相关的基因在WA-CMS系中显著上调,而与呼吸作用、细胞壁修饰、果胶酯酶活性等相关的基因则显著下调。基因本体论和通路富集分析表明,相对于IR58025B,IR58025A中参与细胞呼吸、光合作用和其他能量产生代谢物关键代谢过程的核基因和细胞器基因均下调,这表明WA-CMS系小花普遍向能量和其他关键资源的保守方向转变。通过qRT-PCR分析验证了RNA-Seq分析得到的数据。根据所得结果,可以推测花粉败育主要是由于导致氧化应激的途径上调,导致能量饥饿状态,同时与细胞壁形成、呼吸作用和其他关键代谢过程相关的基因表达降低。