College of Agronomy and Biotechnology, Yunnan Agricultural University, Kunming 650201, China.
Biomolecules. 2022 Jul 12;12(7):977. doi: 10.3390/biom12070977.
Quinoa, a cool-weather high-altitude crop, is susceptible to low-temperature stress throughout its reproductive phase. Herein, we performed broadly targeted metabolic profiling of quinoa seedlings to explore the metabolites' dynamics in response to low-temperature stress and transcriptome analysis to determine the underlying genetic mechanisms. Two variants, namely, Dian Quinoa 2324 and Dian Quinoa 281, were exposed to temperatures of -2, 5, and 22 °C. A total of 794 metabolites were detected; 52,845 genes, including 6628 novel genes, were annotated using UPLC-MS/MS analysis and the Illumina HiSeq system. Combined with morphological indicators to resolve the mechanism underlying quinoa seedling response to low-temperature stress, the molecular mechanisms of quinoa changed considerably based on temperature exposure. Soluble sugars heavily accumulated in plants with cold damage and changes in regulatory networks under freeze damage, such as the upregulation of α-linolenic acid metabolism and a reduction in energy substrates, may explain the spatial patterns of biosynthesis and accumulation of these metabolites. Genes that are actively expressed during cold responses, as revealed by co-expression analyses, may be involved in the regulation thereof. These results provide insights into the metabolic factors in quinoa under low-temperature stress and provide a reference for the screening of quinoa varieties resistant to low temperature.
藜麦是一种喜冷凉、高海拔的作物,在其生殖阶段易受到低温胁迫的影响。在此,我们对藜麦幼苗进行了广泛的靶向代谢组学分析,以探索对低温胁迫的代谢物动态变化,并进行转录组分析以确定潜在的遗传机制。我们将两种藜麦变体(Dian Quinoa 2324 和 Dian Quinoa 281)暴露在-2、5 和 22°C 的温度下。使用 UPLC-MS/MS 分析和 Illumina HiSeq 系统共检测到 794 种代谢物;注释了 52845 个基因,包括 6628 个新基因。结合形态学指标来解决藜麦苗对低温胁迫反应的机制问题,我们发现基于温度暴露,藜麦的分子机制发生了很大的变化。在遭受冷害的植物中,可溶性糖大量积累,在冻害下调控网络发生变化,如α-亚麻酸代谢上调和能量底物减少,这可能解释了这些代谢物生物合成和积累的空间模式。共表达分析表明,在冷响应过程中活跃表达的基因可能参与了其调控。这些结果为藜麦在低温胁迫下的代谢因素提供了深入了解,并为筛选低温抗性藜麦品种提供了参考。