Zhang Tong, Gao Changbin, Yue Yao, Liu Zhiquan, Ma Chaozhi, Zhou Guilong, Yang Yong, Duan Zhiqiang, Li Bing, Wen Jing, Yi Bin, Shen Jinxiong, Tu Jinxing, Fu Tingdong
National Key Laboratory of Crop Genetic Improvement, National Center of Rapeseed Improvement in Wuhan, Huazhong Agricultural UniversityWuhan, China.
Department of Leafy Vegetable, Wuan Institute of Vegetable ScienceWuhan, China.
Front Plant Sci. 2017 May 3;8:682. doi: 10.3389/fpls.2017.00682. eCollection 2017.
species exhibit both compatible and incompatible pollen-stigma interactions, however, the underlying molecular mechanisms remain largely unknown. Here, RNA-seq technology was applied in a comprehensive time-course experiment (2, 5, 10, 20, and 30 min) to explore gene expression during compatible/incompatible pollen-stigma interactions in stigma. Moderate changes of gene expression were observed both in compatible pollination (PC) and incompatible pollination (PI) within 10 min, whereas drastic changes showed up by 30 min, especially in PI. Stage specific DEGs [Differentially Expressed Gene(s)] were identified, and signaling pathways such as stress response, defense response, cell wall modification and others were found to be over-represented. In addition, enriched genes in all samples were analyzed as well, 293 most highly expressed genes were identified and annotated. Gene Ontology and metabolic pathway analysis revealed 10 most highly expressed genes and 37 activated metabolic pathways. According to the data, downstream components were activated in signaling pathways of both compatible and incompatible responses, and incompatible response had more complicated signal transduction networks. This study provides more detailed molecular information at different time points after compatible and incompatible pollination, deepening our knowledge about pollen-stigma interactions.
不同物种表现出亲和与不亲和的花粉-柱头相互作用,然而,其潜在的分子机制仍 largely 未知。在此,RNA 测序技术应用于一项全面的时间进程实验(2、5、10、20 和 30 分钟),以探究柱头在亲和/不亲和花粉-柱头相互作用过程中的基因表达。在 10 分钟内,亲和授粉(PC)和不亲和授粉(PI)中均观察到基因表达的适度变化,而到 30 分钟时出现剧烈变化,尤其是在 PI 中。鉴定出阶段特异性差异表达基因(DEG),并发现应激反应、防御反应、细胞壁修饰等信号通路过度富集。此外,还对所有样本中的富集基因进行了分析,鉴定并注释了 293 个表达最高的基因。基因本体论和代谢途径分析揭示了 10 个表达最高的基因和 37 条激活的代谢途径。根据数据,下游成分在亲和与不亲和反应的信号通路中均被激活,且不亲和反应具有更复杂的信号转导网络。本研究在亲和与不亲和授粉后的不同时间点提供了更详细的分子信息,加深了我们对花粉-柱头相互作用的了解。