Postharvest water loss-induced transcriptomic reprogramming modulates non-structural carbohydrate remobilization in Quercus texana kernels
文献类型: 外文期刊
作者: Sun, Liyong 1 ; Zu, Xin 2 ; Cui, Shuaikang 1 ; Zhu, Mingwei 2 ; Huang, Tao 1 ; Duan, Yu 1 ; Ma, Qiuyue 3 ; Yin, Tongming 2 ; Li, Shuxian 1 ;
作者机构: 1.Nanjing Forestry Univ, Coll Forestry, Coinnovat Ctr Sustainable Forestry Southern China, Nanjing 210037, Peoples R China
2.Nanjing Forestry Univ, State Key Lab Tree Genet & Breeding, Nanjing 210037, Peoples R China
3.Jiangsu Acad Agr Sci, Inst Leisure Agr, Jiangsu Key Lab Hort Crop Genet Improvement, Nanjing 210014, Peoples R China
关键词: Nuttall oak; Non-structural carbohydrate; Dehydration; Metabolomics; Transcriptional regulation
期刊名称:INDUSTRIAL CROPS AND PRODUCTS ( 影响因子:6.2; 五年影响因子:6.2 )
ISSN: 0926-6690
年卷期: 2025 年 227 卷
页码:
收录情况: SCI
摘要: Quercus texana Buckley (Nuttall oak) acorns contain up to 46 % carbohydrates, making them a potential highquality starch-based or sugar-based raw material for the production of food, feeds, value-added biochemicals, biomaterials, biofuels, and bioenergy. Natural air drying is a commonly used and economically friendly postharvest processing method of Nuttall oak acorns. However, the physiological changes and molecular mechanisms underlying postharvest dehydration in Nuttall oak kernels remain poorly understood. Here, we conducted a comprehensive analysis of physiological, transcriptomic, and metabolomic changes of postharvest Nuttall oak kernels. A general increase in soluble sugar, starch, and total non-structural carbohydrate (NSC) contents was observed, along with a fluctuating reduction in starch allocation ratios during postharvest natural dehydration. A time-course and comparative transcriptomics and metabolomics analysis revealed dramatic alterations in gene expression and metabolite accumulation induced by water loss, and multiple carbohydrate metabolism and energy production-related pathways and TF genes were involved in this process, including "Starch and sucrose metabolism", "Glycolysis/Gluconeogenesis", and "Citrate cycle". Notably, postharvest water loss-triggered transcriptomic reprogramming modulated metabolomic landscape remodeling, especially NSC remobilization in Nuttall oak kernels. Overall, these results implied that postharvest natural water loss-induced transcriptomic reprogramming modulated NSC remobilization in Nuttall oak kernels. Hopefully, our present findings will provide valuable insights into the molecular and metabolic mechanism governing NSC in Nuttall oak kernels during postharvest. Additionally, this research may serve as a reference for postharvest preservation of Nuttall oak acorns and even genetic and bioengineering improvements.
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