Lin Yanhui, Cao Guangping, Xu Jing, Zhu Honglin, Tang Liqiong
Hainan Key Laboratory of Crop Genetics and Breeding, Institute of Food Crops, Hainan Academy of Agricultural Sciences, Haikou 571100, China.
Metabolites. 2024 Dec 7;14(12):687. doi: 10.3390/metabo14120687.
Green soybean ( (L.) Merrill) is a highly nutritious food that is a good source of protein and fiber. However, it is sensitive to low temperatures during the growing season, and enhancing cold tolerance has become a research hotspot for breeding improvement. The underlying molecular mechanisms of cold tolerance in green soybean are not well understood. Here, a comprehensive analysis of transcriptome and metabolome was performed on a cold-tolerant cultivar treated at 10 °C for 24 h. Compared to control groups, we identified 17,011 differentially expressed genes (DEGs) and 129 differentially expressed metabolites (DEMs). The DEGs and DEMs were further subjected to KEGG functional analysis. Finally, 11 metabolites (such as sucrose, lactose, melibiose, and dehydroascorbate) and 17 genes (such as , , , and ) were selected as candidates associated with cold tolerance. Notably, the identified metabolites and genes were enriched in two common pathways: 'galactose metabolism' and 'ascorbate and aldarate metabolism'. The findings suggest that green soybean modulates the galactose metabolism and ascorbate and aldarate metabolism pathways to cope with cold stress. This study contributes to a deeper understanding of the complex molecular mechanisms enabling green soybeans to better avoid low-temperature damage.
毛豆([大豆属] 美林)是一种营养丰富的食物,是蛋白质和纤维的良好来源。然而,它在生长季节对低温敏感,提高耐寒性已成为育种改良的研究热点。毛豆耐寒性的潜在分子机制尚不清楚。在此,对在10°C处理24小时的耐寒品种进行了转录组和代谢组的综合分析。与对照组相比,我们鉴定出17,011个差异表达基因(DEGs)和129个差异表达代谢物(DEMs)。对这些DEGs和DEMs进一步进行KEGG功能分析。最后,选择了11种代谢物(如蔗糖、乳糖、蜜二糖和脱氢抗坏血酸)和17个基因(如[此处原文缺失基因名称])作为与耐寒性相关的候选物。值得注意的是,鉴定出的代谢物和基因富集在两个共同途径中:“半乳糖代谢”和“抗坏血酸和醛糖酸代谢”。这些发现表明,毛豆通过调节半乳糖代谢以及抗坏血酸和醛糖酸代谢途径来应对冷胁迫。本研究有助于更深入地理解使毛豆能够更好地避免低温伤害的复杂分子机制。