数字农科院2.0

Proteomic Insights into citT-Deletion Induced Metabolic Sensitivity in Bio-Degumming of Ramie Fibers by Bacillus subtilis

文献类型: 外文期刊

作者: Qi Yang;Yuqin Hu;Xiangyuan Feng;Guoguo Xi;Ke Zheng;Zhenghong Peng;Fengbo Han;Lifeng Cheng;Shengwen Duan

作者机构:

关键词: Bacillus subtilis;bio-degumming;natural fibers;proteomic analysis;ramie;Response regulator CitT

期刊名称: Journal of Natural Fibers

ISSN: 1544-0478

年卷期: 2024 年 21 卷 1 期

页码:

收录情况: SCIE(2024版) ; ; EI(2024版)

摘要: Cellulose fibers from ramie is a kind of functional biological material with multipurpose in the textile industry, which called as “China grass.” The degumming of ramie fibers performed with Bacillus subtilis were regulated by response regulator CitT from CitS/CitT two-component system through specifically functioning on the degradation of component pectin. In this study, comparative proteomic analysis was executed to obtain insights into the sensitivity by which the metabolic network induced by the absence of CitT protein, and to further explore the regulatory mechanism during bio-degumming process of ramie fibers. Results showed that 29 differentially expressed proteins were detected from original strain and mutant strain, which were mainly involved in transmembrane transport system, two-component system, and amino acid metabolism. This study demonstrated that the lack of CitT protein could result in the down-regulation of enzymes in histidine biosynthesis pathway, and the up-regulation of enzyme in arginine degradation pathway. This study is the first time to reveal comprehensive information about the regulatory function of CitT protein in bio-degumming of ramie fibers, and may provide important scientific and technological basis for targeted constructing engineering strains in degumming of ramie fibers.

分类号:

  • 相关文献

[1]Response Regulator CitT from CitST Two-Component System Specifically Regulates the Pectin Degradation in Bio-Degumming of Ramie Fibers by Bacillus subtilis. Yang, Qi,Cheng, Lifeng,Feng, Xiangyuan,Zheng, Ke,Liu, Chunjie,Liu, Zhiyuan,Peng, Yuande,Duan, Shengwen. 2022

[2]Construction and co-expression of polycistronic plasmids encoding bio-degumming-related enzymes to improve the degumming process of ramie fibres. Cheng, Yi,Liu, Zhengchu,Zeng, Jie,Cheng, Lifeng,Yan, Zhun,Duan, Shengwen,Feng, Xiangyuan,Zheng, Ke,Zheng, Xia,Wang, Ruijun.

[3]我国苎麻产业的兴衰与未来(I)-产业现状分析. 吕江南. 2012

[4]Benzylated modification and dyeing of ramie fiber in supercritical carbon dioxide. Liu, Zhao-Tie,Liu, Zhong-Wen,Liu, Zhao-Tie,Sun, Zhifeng,Liu, Zhong-Wen,Lu, Jian,Xiong, Heping.

[5]Supercritical CO2 dyeing of ramie fiber with disperse dye. Liu, Zhao-Tie,Zhang, Lili,Liu, Zhongwen,Gao, Ziwei,Dong, Wensheng,Xiong, Heping,Peng, Yuande,Tang, Shouwei.

[6]Selective separation of tanshinone homologs by biocomposite membranes based on poly(ionic liquids) and natural fibers. Shaoping Ma,Changyong Cai,Xuhong Guo,Zhijian Tan. 2025

[7]A rapid process of ramie bio-degumming by Pectobacterium sp CXJZU-120. Liu, Zhengchu,Duan, Shengwen,Sun, Qingxiang,Peng, Yuande,Feng, Xiangyuan,Zheng, Ke,Hu, Zhenxiu,Zhang, Yunxiong. 2012

[8]Bio-degumming technology of jute bast by Pectobacterium sp DCE-01. Duan, Shengwen,Feng, Xiangyuan,Cheng, Lifeng,Peng, Yuande,Zheng, Ke,Liu, Zhengchu. 2016

[9]Bacterial strain for bast fiber crops degumming and its bio-degumming technique. Shengwen Duan,Bingrong Xu,Lifeng Cheng,Xiangyuan Feng,Qi Yang,Ke Zheng,Mingqiang Gao,Zhiyuan Liu,Chunjie Liu,Yuande Peng. 2021

[10]Insights on bio-degumming of kenaf bast based on metagenomic and proteomics. Liu, Zhi Yuan,Zheng, Ke,Peng, Yuan De,Yang, Qi,Duan, Sheng Wen,Cheng, Li Feng,Feng, Xiang Yuan. 2020

[11]Diversity And Characteristics Of Kenaf B.ast Degumming Microbial Resources. Duan, SW, Cheng, LF, Liu, ZC, Feng, XY, Zheng, K, Peng, YD. 2018

[12]iTRAQ Protein Profile Differential Analysis of Dormant and Germinated Grassbur Twin Seeds Reveals that Ribosomal Synthesis and Carbohydrate Metabolism Promote Germination Possibly Through the PI3K Pathway. Zhang, Guo-Liang,Zhu, Yue,Fu, Wei-Dong,Zhang, Rui-Hai,Zhang, Yan-Lei,Song, Zhen,Zhu, Yue,Wang, Peng,Xia, Gui-Xian,Wu, Jia-He.

[13]Proteome profile of bovine ruminal epithelial tissue based on GeLC-MS/MS. Yang, Yongxin,Wang, Jiaqi,Yuan, Tingjie,Bu, Dengpan,Yang, Jinhui,Sun, Peng,Yang, Yongxin.

[14]Proteomic analysis of the lungs of mice infected with different pathotypes of H5N1 avian influenza viruses. Zhao, Dongming,Liang, Libin,Li, Yanbing,Liu, Liling,Guan, Yuntao,Jiang, Yongping,Chen, Hualan.

[15]An insecticidal protein from Xenorhabdus ehlersii stimulates the innate immune response in Galleria mellonella. Zeng, HongMei,Yang, XiuFen,Liu, Zheng,Qiu, Dewen. 2013

[16]Proteomic Analysis Of Zhangzagu3 (Setaria I.talica) And Its Parents B ased On Itraq Technique. Song, XQ, Zhao, Y, Weng, QY, Yuan, JC, Dong, ZP, Zhao, ZH, Liu, YH, Zhao, M. 2018

[17]Label-Free Quantitative Proteomic Analysis Revealed A. Positive Effect Of E ctopic Over-Expression Of Peat1 From Alternaria Tenuissima On Rice (Oryza Sativa) Response To Drought. Zeng, Hongmei,Shi, Fachao,Yang, Xiufen,Shi, Fachao,Qiu, Dewen,Guo, Lihua. 2018

[18]Metagenomic and proteomic analysis of bacterial retting community and proteome profile in the degumming process of kenaf bast. Xu H.,Zhang L.,Feng X.,Yang Q.,Zheng K.,Duan S.,Cheng L.. 2022

[19]Proteomic analysis revealed the pharmacological mechanism of Xueshuantong injection in preventing early acute myocardial infarction injury. Wang A.,Li Y.,Wang Z.,Xin G.,You Y.,Sun M.,Miao L.,Li L.,Pan Y.,Liu J.. 2022

[20]Ethylene Regulates Combined Drought and Low Nitrogen Tolerance in Wheat: Proteomic Analysis. Yan, Jiji,Wang, Daoping,Kang, Shuyu,He, Zhang,Li, Xin,Tang, Wensi,Chen, Kai,Pan, Yinghong,Zhou, Yongbin,Xu, Zhaoshi,Chen, Jun,Ma, Youzhi,Chen, Ming,Pang, Chunhua. 2023

作者其他论文 更多>>