Liang Xiao, Wang Huixin, Xu Wanhua, Liu Xiaojuan, Zhao Chenning, Chen Jiebiao, Wang Dengliang, Xu Shuting, Cao Jinping, Sun Chongde, Wang Yue
Laboratory of Fruit Quality Biology, The State Agriculture Ministry Laboratory of Horticultural Plant Growth, Development and Quality Improvement, Zhejiang Provincial Key Laboratory of Integrative Biology of Horticultural Plants, Zhejiang University, Hangzhou 310058, China.
Citrus Research Institute, Quzhou Academy of Agricultural Sciences, Quzhou 324000, China.
Antioxidants (Basel). 2024 Feb 18;13(2):243. doi: 10.3390/antiox13020243.
Citrus is an important type of fruit, with antioxidant bioactivity. However, the variations in the antioxidant ability of different tissues in citrus and its metabolic and molecular basis remain unclear. Here, we assessed the antioxidant capacities of 12 tissues from 'Ponkan', finding that young leaves and root exhibited the strongest antioxidant capacity. Secondary metabolites accumulated differentially in parts of the citrus plant, of which flavonoids were enriched in stem, leaf, and flavedo; phenolic acids were enriched in the albedo, while coumarins were enriched in the root, potentially explaining the higher antioxidant capacities of these tissues. The spatially specific accumulation of metabolites was related to the expression levels of biosynthesis-related genes such as (), (), (), (), (), (), (), and (), among others, in the phenylpropane pathway. Weighted gene co-expression network analysis (WGCNA) identified modules associated with flavonoids and coumarin content, among which we identified an OMT involved in coumarin -methylation, and related transcription factors were predicted. Our study identifies key genes and metabolites influencing the antioxidant capacity of citrus, which could contribute to the enhanced understanding and utilization of bioactive citrus components.
柑橘是一种重要的水果类型,具有抗氧化生物活性。然而,柑橘不同组织的抗氧化能力差异及其代谢和分子基础仍不清楚。在此,我们评估了‘椪柑’12个组织的抗氧化能力,发现幼叶和根表现出最强的抗氧化能力。次生代谢产物在柑橘植株的部分组织中差异积累,其中黄酮类化合物在茎、叶和外果皮中富集;酚酸在白皮层中富集,而香豆素在根中富集,这可能解释了这些组织较高的抗氧化能力。代谢产物的空间特异性积累与苯丙烷途径中诸如()、()、()、()、()、()、()和()等生物合成相关基因的表达水平有关。加权基因共表达网络分析(WGCNA)确定了与黄酮类化合物和香豆素含量相关的模块,其中我们鉴定出一个参与香豆素甲基化的OMT,并预测了相关转录因子。我们的研究确定了影响柑橘抗氧化能力的关键基因和代谢产物,这有助于增强对柑橘生物活性成分的理解和利用。