Department of Civil and Architecture and Engineering, Chuzhou University, Anhui, 239000, China.
College of Horticulture and Landscape Architecture, Yangzhou University, Yangzhou, 225009, China.
BMC Plant Biol. 2023 Apr 10;23(1):192. doi: 10.1186/s12870-023-04209-8.
As an important plant source of food and edible oils, pecans are rich in metabolites. Few studies have focused on metabolites involved in pecan seed germination at different temperatures.
In our study, we germinated pecan seeds at different temperatures and found that, the germination rate and water content were highest at 30°C. It was found that the radicle of pecan seeds could sense seed coat cracking by observing the microstructure and cell ultra-structure of the seeds at the early stage of germination. We compared the metabolomes of seeds at different temperatures with different germination processes. A total of 349 metabolites were identified, including 138 primary metabolites and 211 secondary metabolites. KEGG enrichment analysis indicated that the differential metabolites were mainly enriched in the metabolic pathways, amino acid synthesis pathways and ABC transporters. Using weighted gene co-expression network analysis (WGCNA), three modules of closely related metabolites were identified. In the brown module, most of hub metabolites were amino substances, whereas in the blue module, many hub metabolites were sugars.
Amino acids and carbohydrates play an important role in pecan seed germination. Differential metaboliteanalysis showed that 30°C was the temperature at which metabolites differed most significantly. This study provides useful information for further research on the seedling establishment of pecan seeds.
山核桃作为一种重要的植物性食物和食用油来源,其富含代谢产物。然而,目前针对不同温度下山核桃种子萌发过程中涉及的代谢物的研究较少。
本研究在不同温度下对山核桃种子进行萌发,发现 30°C 时萌发率和含水量最高。通过观察种子萌发早期的微观结构和细胞超微结构,发现山核桃种子的胚根可以感知种皮开裂。我们比较了不同温度下具有不同萌发进程的种子的代谢组。共鉴定出 349 种代谢物,包括 138 种初级代谢物和 211 种次级代谢物。KEGG 富集分析表明,差异代谢物主要富集在代谢途径、氨基酸合成途径和 ABC 转运体中。利用加权基因共表达网络分析(WGCNA),鉴定出三个密切相关的代谢物模块。在棕色模块中,大多数枢纽代谢物为氨基酸物质,而在蓝色模块中,许多枢纽代谢物为糖类。
氨基酸和碳水化合物在山核桃种子萌发过程中起着重要作用。差异代谢物分析表明,30°C 是代谢物差异最显著的温度。本研究为进一步研究山核桃种子的幼苗建立提供了有用信息。