数字农科院2.0

Mathematical Modeling Reveals That Sucrose Regulates Leaf Senescence via Dynamic Sugar Signaling Pathways

文献类型: 外文期刊

作者: Muhammad Asim;Quaid Hussain;Xiaolin Wang;Yanguo Sun;Haiwei Liu;Rayyan Khan;Shasha Du;Yi Shi;Yan Zhang

作者机构:

关键词: glucose;senescence;SnRK1;sucrose concentration;sugar signaling dynamics;trehalose-6-phosphate

期刊名称: International Journal of Molecular Sciences

ISSN: 1661-6596

年卷期: 2022 年 23.0 卷 12 期

页码:

摘要: Sucrose (Suc) accumulation is one of the key indicators of leaf senescence onset, but little is known about its regulatory role. Here, we found that application of high (120–150 mM) and low levels (60 mM) of Suc to young leaf (YL) and fully expanded leaf (FEL) discs, respectively, decreased chlorophyll content and maximum photosynthetic efficiency. Electrolyte leakage and malondialdehyde levels increased at high Suc concentrations (90–120 mM in YL and 60 and 150 mM in FEL discs). In FEL discs, the senescence-associated gene NtSAG12 showed a gradual increase in expression with increased Suc application; in contrast, in YL discs, NtSAG12 was upregulated with low Suc treatment (60 mM) but downregulated at higher levels of Suc. In YL discs, trehalose-6phosphate (T6P) accumulated at a low half-maximal effective concentration (EC50) of Suc (1.765 mM). However, T6P levels declined as trehalose 6 phosphate synthase (TPS) content decreased, resulting in the maximum velocity of sucrose non-fermenting-1-related protein kinase (SnRK) and hexokinase (HXK) occurring at higher level of Suc. We therefore speculated that senescence was induced by hexose accumulation. In FEL discs, the EC50 of T6P occurred at a low concentration of Suc (0.9488 mM); T6P levels progressively increased with higher TPS content, which inhibited SnRK activity with a dissociation constant (Kd) of 0.001475 U/g. This confirmed that the T6P–SnRK complex induced senescence in detached FEL discs.

分类号:

  • 相关文献

[1]Investigation of sugar signaling behaviors involved in sucrose-induced senescence initiation and progression in N. tabacum. Muhammad Asim,Mei Guo,Rayyan Khan,Yanguo Sun,Shasha Du,Wenting liu,Yang Li,Xiaolin Wang,Mengyun Wang,Yi Shi,Yan Zhang. 2022

[2]Dual-mode sensing of biomarkers based on nano 3D Cu-Flo.@AuNPs-electrocatalyzed oxidation of glucose inducing in-situ H2O2-generation system. Guo J., Li S., Wang J., Wang J.. 2022

[3]Differential gene expression in whitefly (Bemisia tabaci) B-biotype females and males under heat-shock condition. Wan, Fang-Hao,Wan, Fang-Hao.

[4]Trehalose: A sugar molecule involved in temperature stress management in plants. Raza, Ali,Bhardwaj, Savita,Rahman, Md Atikur,Garcia-Caparros, Pedro,Habib, Madiha,Saeed, Faisal,Charagh, Sidra,Foyer, Christine H.,Siddique, Kadambot H. M.,Varshney, Rajeev K.. 2024

[5]Mimic Phosphorylation of a beta C1 Protein Encoded by TYLCCNB Impairs Its Functions as a Viral Suppressor of RNA Silencing and a Symptom Determinant. Zhong, Xueting,Wang, Zhan Qi,Xiao, Ruyuan,Cao, Linge,Wang, Yaqin,Xie, Yan,Zhou, Xueping,Zhou, Xueping.

[6]The SnRK Protein Kinase Family and the Function of SnRK1 Protein Kinase. Cui Na,Li Tian-Lai,Dong Xue-Fei,Wang Li,Zhao Xiao-Cui,Qu Bo,Zhang Guo-Liang. 2012

[7]Barley GRIK1-SnRK1 kinases subvert a viral virulence protein to upregulate antiviral RNAi and inhibit infection. Jin, Huaibing,Han, Xinyun,Wang, Zhaohui,Xie, Yilin,Zhang, Kunpu,Zhao, Xiaoge,Wang, Lina,Yang, Jin,Liu, Huiyun,Ji, Xiang,Dong, Lingli,Zheng, Hongyuan,Hu, Weijuan,Liu, Yan,Wang, Xifeng,Zhou, Xueping,Zhang, Yijing,Qian, Weiqiang,Zheng, Wenming,Shen, Qianhua,Gou, Mingyue,Wang, Daowen. 2022

[8]The C4 Protein of TbLCYnV Promotes SnRK1 β2 Degradation Via the Autophagy Pathway to Enhance Viral Infection in N. benthamiana. Xinquan Li,Min Zhao,Wanyi Yang,Xueping Zhou,Yan Xie. 2024

[9]Quantitative Trait Loci Mapping of Dark-Induced Senescence in Winter Wheat (Triticum aestivum). Li, Hongwei,Lin, Fanyun,Wang, Gui,Zheng, Qi,Li, Bin,Li, Zhensheng,Jing, Ruffian. 2012

[10]Identification of Rice Ethylene-Response Mutants and Characterization of MHZ7/OsEIN2 in Distinct Ethylene Response and Yield Trait Regulation. Ma, Biao,He, Si-Jie,Duan, Kai-Xuan,Yin, Cui-Cui,Chen, Hui,Yang, Chao,Xiong, Qing,Song, Qing-Xin,Lu, Xiang,Chen, Hao-Wei,Zhang, Wan-Ke,Chen, Shou-Yi,Zhang, Jin-Song,Lu, Tie-Gang.

[11]Isolation and characterization of a cDNA encoding a papain-like cysteine protease from alfalfa. Yan, Longfeng,Han, Jianguo,Sun, Yan,Yan, Longfeng,Yang, Qingchuan,Kang, Junmei,Liu, Zhipeng,Wu, Mingsheng.

[12]Effect of 1-methylcyclopene on senescence and quality maintenance of green bell pepper fruit during storage at 20 degrees C. Yang, Zhenfeng,Cao, Shifeng,Zheng, Yonghua. 2012

[13]Arabidopsis cytosolic glutamine synthetase AtGLN1;1 is a potential substrate of AtCRK3 involved in leaf senescence. Li, RJ,Hua, W,Lu, YT.

[14]A Novel Protein RLS1 with NB-ARM Domains Is Involved in Chloroplast Degradation during Leaf Senescence in Rice. Jiao, Bin-Bin,Zeng, Long-Jun,Li, Qun,He, Zu-Hua,Wang, Jian-Jun,Zhu, Xu-Dong.

[15]Functional and RNA-Sequencing Analysis Revealed Expression of a Novel Stay-Green Gene from Zoysia japonica (ZjSGR) Caused Chlorophyll Degradation and Accelerated Senescence in Arabidopsis. Teng, Ke,Chang, Zhihui,Liang, Xiaohong,Xu, Lixin,Chao, Yuehui,Han, Liebao,Li, Xiao,Sun, Xinbo. 2016

[16]Expression of the ethylene response factor gene TSRF1 enhances abscisic acid responses during seedling development in tobacco. Zhang, Hongbo,Zhang, Zhijin,Huang, Rongfeng,Zhang, Hongbo,Chen, Jia,Wang, Xue-Chen,Yang, Yuhong,Zhang, Hongbo,Zhang, Zhijin,Huang, Rongfeng.

[17]Free radical scavenging effect of Pu-erh tea extracts and their protective effect on oxidative damage in human fibroblast cells. Jie, Guoliang,Lin, Zhi,Zhang, Longze,Lv, Haipeng,He, Puming,Zhao, Baolu.

[18]Identification of genes associated with cotyledon senescence in upland cotton. SHEN Fafu,YU Shuxun,XIE Qingen,HAN Xiulan,FAN Shuli. 2006

[19]Over-Expression of Tomato GDP-Mannose Pyrophosphorylase (GMPase) in Potato Increases Ascorbate Content and Delays Plant Senescence. Yu Xian-chang,Lin Ling-ling,Shi Qing-hua,Qin Ai-guo,Wang Hua-sen. 2011

[20]Cloning and characterization of a gene encoding cysteine proteases from senescent leaves of Gossypium hirsutum. Yu, SX,Han, XL,Fan, SL.

作者其他论文 更多>>