Qu Chunpu, Zhao Hancheng, Chen Jinyuan, Zuo Zhuang, Sun Xue, Huang Jiahuan, Yang Chengjun, Zhang Xiuli, Zhang Peng, Quan Xiankui, Xu Zhiru, Liu Guanjun
State Key Laboratory of Tree Genetics and Breeding (Northeast Forestry University), School of Forestry, Northeast Forestry University, Harbin, 150040, People's Republic of China.
School of Forestry, Northeast Forestry University, Harbin, 150040, People's Republic of China.
BMC Genomics. 2019 Nov 4;20(1):801. doi: 10.1186/s12864-019-6180-5.
Seed germination, the foundation of plant propagation, involves a series of changes at the molecular level. Poplar is a model woody plant, but the molecular events occurring during seed germination in this species are unclear.
In this study, we investigated changes in gene transcriptional levels during different germination periods in poplar by high-throughput sequencing technology. Analysis of genes expressed at specific germination stages indicated that these genes are distributed in many metabolic pathways. Enrichment analysis of significantly differentially expressed genes based on hypergeometric testing revealed that multiple pathways, such as pathways related to glycolysis, lipid, amino acid, protein and ATP synthesis metabolism, changed significantly at the transcriptional level during seed germination. A comparison of ΣZ values uncovered a series of transcriptional changes in biological processes related to primary metabolism during poplar seed germination. Among these changes, genes related to CHO metabolism were the first to be activated, with subsequent expression of genes involved in lipid metabolism and then those associated with protein metabolism. The pattern of metabolomic and physiological index changes further verified the sequence of some biological events.
Our study revealed molecular events occurring at the transcriptional level during seed germination and determined their order. These events were further verified by patterns of changes of metabolites and physiological indexes. Our findings lay a foundation for the elucidation of the molecular mechanisms responsible for poplar seed germination.
种子萌发是植物繁殖的基础,涉及分子水平上的一系列变化。杨树是一种模式木本植物,但该物种种子萌发过程中发生的分子事件尚不清楚。
在本研究中,我们通过高通量测序技术研究了杨树在不同萌发时期基因转录水平的变化。对特定萌发阶段表达的基因分析表明,这些基因分布在许多代谢途径中。基于超几何检验对显著差异表达基因的富集分析显示,多个途径,如与糖酵解、脂质、氨基酸、蛋白质和ATP合成代谢相关的途径,在种子萌发期间转录水平发生了显著变化。对ΣZ值的比较揭示了杨树种子萌发过程中与初级代谢相关的生物过程中的一系列转录变化。在这些变化中,与碳水化合物代谢相关的基因首先被激活,随后是参与脂质代谢的基因表达,然后是与蛋白质代谢相关的基因表达。代谢组学和生理指标变化模式进一步验证了一些生物事件的顺序。
我们的研究揭示了种子萌发过程中在转录水平上发生的分子事件,并确定了它们的顺序。这些事件通过代谢物和生理指标的变化模式得到进一步验证。我们的研究结果为阐明杨树种子萌发的分子机制奠定了基础。