Department of Comparative Plant and Fungal Biology, Royal Botanic Gardens, Kew, Wakehurst Place, Ardingly, West Sussex, United Kingdom.
Department of Natural Capital and Plant Health, Royal Botanic Gardens, Kew, Wakehurst Place, Ardingly, West Sussex, United Kingdom.
Plant Biol (Stuttg). 2020 Nov;22(6):1041-1051. doi: 10.1111/plb.13156. Epub 2020 Jul 31.
Pseudophoenix ekmanii is a critically endangered palm species that can be found in the southeast of the Dominican Republic. The temperatures to which P. ekmanii seeds are exposed upon dispersal range from 32 to 23 °C (max and min) and can reach a low of approximately 20 °C in January. Our aim was to analyse the effect of suboptimal (20 °C) and optimal (30 °C) germination temperature on seed imbibition, moisture content, embryo growth and gene expression patterns in this tropical palm species. Seed imbibition was tracked using whole seeds, while moisture content was assessed for individual seed sections. Embryo and whole seed size were measured before and after full imbibition. For transcriptome sequencing, mRNA was extracted from embryo tissues only and the resulting reads were mapped against the Elaeis guineensis reference genome. Differentially expressed genes were identified after statistical analysis and subsequently probed for enrichment of Gene Ontology categories 'Biological process' and 'Cellular component'. Our results show that prolonged exposure to 20 °C slows whole seed and embryo imbibition and causes germination to be both delayed and inhibited. Embryonic transcriptome patterns associated with the negative regulation of germination by suboptimal temperature include up-regulation of ABA biosynthesis genes, ABA-responsive genes, as well as other genes previously related to physiological dormancy and inhibition of germination. Thus, our manuscript provides the first insights into the gene expression patterns involved in the response to suboptimal temperature during seed imbibition in a tropical palm species.
假槟榔是一种极危的棕榈物种,仅分布在多米尼加共和国东南部。假槟榔种子在传播过程中所经历的温度范围从 32 到 23°C(最高温和最低温),1 月时可能会短暂降至约 20°C。我们的目的是分析非最适(20°C)和最适(30°C)发芽温度对这种热带棕榈种子吸胀、含水量、胚生长和基因表达模式的影响。我们使用整颗种子追踪吸胀过程,通过对种子切片评估含水量。在完全吸胀前后测量胚和整颗种子的大小。为了进行转录组测序,我们仅从胚组织中提取 mRNA,并将得到的读数映射到油棕参考基因组上。通过统计分析鉴定差异表达基因,然后探测“生物过程”和“细胞成分”这两个“基因本体论”类别中基因的富集情况。研究结果表明,长时间暴露在 20°C 会减缓整颗种子和胚的吸胀,导致发芽时间延迟和受到抑制。与非最适温度对发芽的负调控相关的胚胎转录组模式包括 ABA 生物合成基因、ABA 响应基因以及其他先前与生理休眠和发芽抑制相关的基因上调。因此,本研究首次深入了解了在热带棕榈种子吸胀过程中对非最适温度响应的基因表达模式。