Liu Bailin, Kong Lingshuang, Zhang Yu, Liao Yuncheng
State Key Laboratory of Crop Stress Biology for Arid Areas, College of Agronomy, Northwest A&F University, Yangling 712100, China.
Plants (Basel). 2021 Jan 6;10(1):103. doi: 10.3390/plants10010103.
Potatoes are particularly vulnerable to elevated temperatures, with short heat stress (6 h) inducing stomatal opening and reducing membrane stability and prolonged heat stress (3-day) decreasing the photosynthetic capacity of potato leaves. The integration of transcriptomics and metabolomics methods demonstrated that 448 heat upregulated and 918 heat downregulated genes and 325 and 219 compounds in the positive and negative ionization modes, respectively, were up- or downregulated in leaves in response to short and prolonged heat stress. Differentially expressed genes enriched in photosynthesis, cell wall degradation, heat response, RNA processing, and protein degradation were highly induced during heat exposure, and differentially expressed metabolites involved in amino acid biosynthesis and secondary metabolism were mostly induced during heat exposure, suggesting a possible role of these genes and metabolites in the heat tolerance of the potato. Metabolite and transcript abundances for the upregulation of flavone and flavonol biosynthesis under prolonged heat stress were closely correlated. Heat-induced gene expression in shoots and potato leaves overlapped, and heat stress-responsive genes overlapped with drought stress-related genes in potato. The transient expression of four heat-induced genes in exhibited increased heat tolerance. This study provides a new transcriptome and metabolic profile of the potato's response to heat.
马铃薯对温度升高特别敏感,短时间热胁迫(6小时)会诱导气孔开放并降低膜稳定性,长时间热胁迫(3天)会降低马铃薯叶片的光合能力。转录组学和代谢组学方法的整合表明,在正负离子模式下,分别有448个热上调基因和918个热下调基因以及325种和219种化合物在叶片中响应短时间和长时间热胁迫而发生上调或下调。在热暴露期间,富集于光合作用、细胞壁降解、热响应、RNA加工和蛋白质降解的差异表达基因被高度诱导,参与氨基酸生物合成和次生代谢的差异表达代谢物大多在热暴露期间被诱导,这表明这些基因和代谢物在马铃薯耐热性中可能发挥作用。长时间热胁迫下黄酮和黄酮醇生物合成上调的代谢物和转录本丰度密切相关。热诱导基因在茎和马铃薯叶片中的表达重叠,且热胁迫响应基因与马铃薯中干旱胁迫相关基因重叠。四个热诱导基因在中的瞬时表达表现出耐热性增强。本研究提供了马铃薯对热响应的新转录组和代谢谱。