数字农科院2.0

CitSAR-mediated coordination of sucrose and citrate metabolism in citrus fruits

文献类型: 外文期刊

作者: Shengchao Liu;Yinchun Li;Yijing Fan;Mengjie Xu;Ziyi Huang;Dengliang Wang;Chongde Sun;Shaojia Li

作者机构:

关键词: (1-0-2)

期刊名称: Plant physiology

ISSN: 1532-2548

年卷期: 2025 年 198 卷 2 期

页码:

收录情况: SCIE(2025版)

摘要: Soluble sugars and organic acids are the primary determinants of flavor quality and consumer appeal in fruits. In citrus, sucrose and citric acid dominate the sugar and acid profiles, directly influencing sensory attributes and market preference. Here, we identified the sugar and acid regulator (CitSAR) through transcriptome analysis by investigating sugar and acid levels at the fruit development stage of 2 mandarin orange (Citrus reticulata Blanco) cultivars: "Ponkan" (PK), and a bud sport mutant of PK (mPK) that exhibits a higher sugar and lower acid profile. Functional characterization revealed that CitSAR orchestrates a hierarchical transcriptional network governing sucrose and citrate metabolism, as demonstrated by overexpression assays in citrus callus and tomato. Mechanistic studies using dual-luciferase reporter assays and electrophoretic mobility shift assays confirmed that CitSAR binds directly to the GCC-box in the promoters of CitSPS4 and CitGAD4, activating their expression. Our findings corroborate the important role of CitSAR in modulating sucrose and citrate homeostasis and provide a molecular framework for enhancing citrus sensory quality.

分类号:

  • 相关文献

[1]Chromosome-level genome assembly of Oriental chestnut gall wasp (Dryocosmus kuriphilus). Bo Liu,Ye Song Ren,Cheng Yuan Su,Xiu Dan Wang,Yang Zeng,Dao Hong Zhu. 2024

[2]RT-Transformer: retention time prediction for metabolite annotation to assist in metabolite identification. Jun Xue,Bingyi Wang,Hongchao Ji,Wei Hua Li. 2024

[3]Epigenetic Modifications and Breeding Applications in Horticultural Plants. Shi, Meiyan,Wei, Ziwei,Zhang, Pingxian,Guan, Changfei,Chachar, Sadaruddin,Zhang, Jinzhi. 2024

[4]Prediction of plant complex traits via integration of multi-omics data. Peipei Wang,Melissa D. Lehti-Shiu,Serena Lotreck,Kenia Segura Abá,Patrick J. Krysan,Shin Han Shiu. 2024

[5]A fungal core effector exploits the OsPUX8B.2–OsCDC48-6 module to suppress plant immunity. Xuetao Shi,Xin Xie,Yuanwen Guo,Junqi Zhang,Ziwen Gong,Kai Zhang,Jie Mei,Xinyao Xia,Haoxue Xia,Na Ning,Yutao Xiao,Qing Yang,Guo Liang Wang,Wende Liu. 2024

[6]A nuclease-dead Cas9-derived tool represses target gene expression. Wang, Bowen,Liu, Xiaolin,Li, Zhenxiang,Zeng, Kang,Guo, Jiangyi,Xin, Tongxu,Zhang, Zhen,Li, Jian-Feng,Yang, Xueyong. 2024

[7]A teosinte-derived allele of ZmSC improves salt tolerance in maize (副). Xiaofeng Li 1,2† , Qiangqiang Ma 3† , Xingyu Wang1 , Yunfeng Zhong1 , Yibo Zhang1 , Ping Zhang 4 , Yiyang Du1 , Hanyu Luo1 , Yu Chen1 , Xiangyuan Li 1 , Yingzheng Li 1 , Ruyu He 5 , Yang Zhou1 , Yang Li 6 , Mingjun Cheng7 , Jianmei He1 , Tingzhao Rong1 and Qilin Tang1 *. 2024

[8]Mapping and functional characterization of the golden fruit 1 (gf1) in melon (Cucumis melo L.). Shuai Li,Huihui Wang,Yang Li,Feng Jing,Yuanchao Xu,Shijun Deng,Naonao Wang,Zhonghua Zhang,Sen Chai. 2025

[9]Genome analyses and breeding of polyploid crops. Cheng, Lin,Bao, Zhigui,Kong, Qianqian,Lassois, Ludivine,Stein, Nils,Huang, Sanwen,Zhou, Qian. 2025

[10]AND Logic-Gated CRISPR/Cas9 and Hybridization Chain Reaction System for Precise ctDNA Detection. 王桂荣. 2025

[11]Optimizing genomic prediction for complex traits via investigating multiple factors in switchgrass. Wang, Peipei,Meng, Fanrui,Del Azodi, Christina Brady,Aba, Kenia Estefania Segura,Casler, Michael D.,Shiu, Shin-Han. 2025

[12]Sensl: a synthetic biology sensor for tracking strigolactone signaling in rice. 闫建斌. 2025

[13]A complete telomere-to-telomere assembly of Oryza sativa L. subsp. indica Kato T197 genome. Tianyuan Zhang,Yi Zhang,Xiao Tang,Wenyan Peng,Hongjun Xie,Yangqin Xie,Yuchen Zhao,Lulu Yang,Yinghong Yu,Mingdong Zhu. 2025

作者其他论文 更多>>