Naringenin restricts the colonization and growth of Ralstonia solanacearum in tobacco mutant KCB-1
文献类型: 外文期刊
作者: Shi, Haoqi;Jiang, Jiale;Yu, Wen;Cheng, Yazhi;Wu, Shengxin;Zong, Hao;Wang, Xiaoqiang;Ding, Anming;Wang, Weifeng;Sun, Yuhe
作者机构:
期刊名称: PLANT PHYSIOLOGY
ISSN: 0032-0889
年卷期: 2024 年
页码:
收录情况: SCIE(2024版)
摘要: Bacterial wilt severely jeopardizes plant growth and causes enormous economic loss in the production of many crops, including tobacco (Nicotiana tabacum). Here, we first demonstrated that the roots of bacterial wilt-resistant tobacco mutant KCB-1 can limit the growth and reproduction of Ralstonia solanacearum. Secondly, we demonstrated that KCB-1 specifically induced an upregulation of naringenin content in root metabolites and root secretions. Further experiments showed that naringenin can disrupt the structure of R. solanacearum, inhibit the growth and reproduction of R. solanacearum, and exert a controlling effect on bacterial wilt. Exogenous naringenin application activated the resistance response in tobacco by inducing the burst of reactive oxygen species and salicylic acid deposition, leading to transcriptional reprogramming in tobacco roots. Additionally, both external application of naringenin in CB-1 and overexpression of the Nicotiana tabacum chalcone isomerase (NtCHI) gene, which regulates naringenin biosynthesis, in CB-1 resulted in a higher complexity of their inter-root bacterial communities than in untreated CB-1. Further analysis showed that naringenin could be used as a marker for resistant tobacco. The present study provides a reference for analyzing the resistance mechanism of bacterial wilt-resistant tobacco and controlling tobacco bacterial wilt. Bacterial wilt-resistant mutant KCB-1 restricts colonization and growth of Ralstonia solanacearum by specifically inducing increased naringenin content.
分类号:
- 相关文献
作者其他论文 更多>>
-
Genetic Diversity and Endosymbiont Infection Patterns of the Greenhouse Whitefly, Trialeurodes vaporariorum, in China
作者:Xue, Yantao;Wang, Weifeng;Lu, Yanhui;Chen, Jiqiang;Zhang, Guifen;Liu, Wanxue;Wan, Fanghao;He, Zhuyong;Zhang, Yibo
关键词:Trialeurodes vaporariorum;greenhouse whitefly;population genetics;mitochondrial COI;endosymbiont;biological invasion;Edited by Alberto Soares Corr & ecirc;a
-
Construction of pH-responsive nucleic acid delivery system based on amination of BSA and schiff-base for precise pest control
作者:Sun, Meixue;Su, Chenyu;Xu, Chuantao;Liu, Yingjie;Zhang, Yonghui;Graham, Robert I.;Tian, Lei;Zong, Hao;Xu, Pengjun;Ren, Guangwei
关键词:pH-responsive delivery system;RNAi;Heat shock protein 90;Accurate pest control;Biosafety
-
Comparative analysis of extraction technologies for plant extracts and absolutes
作者:Cao, Shoutao;Liang, Jinchang;Chen, Mingguang;Xu, Chao;Wang, Xiaoqiang;Qiu, Lei;Zhao, Xianyan;Hu, Wenxiao
关键词:plant extract;plant absolute;conventional extraction technology;green extraction techniques;green extraction solvent
-
A B3 Domain Transcription Factor NtMAB1 Regulates the Release and Outgrowth of Axillary Buds in Tobacco
作者:Xue, Luyao;Xia, Fei;Song, Wenting;Wu, Xinru;Jin, Xiaoshan;Zhong, Qun;Sun, Tingting;Dai, Changbo;Liu, Guanshan;Sun, Yuhe;Liu, Chunming;Li, Shengjun;Yao, Xuefeng;Wang, Dawei
关键词:gibberellins (GAs);NtGA2ox8;NtMAB1-S1;NtTPPF;trehalose-6-phosphate (Tre6p)
-
Complete genome sequence of the environmental Pseudomonas mediterranea strain Cas656 isolated from rhizosphere soil in China
作者:Sun, Hongquan;Chen, Fuliang;Zhang, Youai;Chen, Xiaoxiang;Wang, Weimin;Cui, Qingwei;Ai, Yongfeng;Song, Guanglong;Liang, Jinchang;Chen, Yonghua;Wang, Xiaoqiang
关键词:complete genome;Pseudomonas mediterranea;rhizosphere soil
-
Sensitive Detection of Ralstonia solanacearum Using Recombinase-Aided Amplification and an Aerolysin Nanopore
作者:Li, Bin;Wang, Xiaoqiang;Xi, Dongmei;Wang, Ying
关键词:
-
Identification and analysis of long non-coding RNAs response to quinclorac stress in tobacco
作者:Li, Zefeng;Lv, Jing;Wang, Zhong;Li, Feng;Wang, Shuaibin;He, Xinxi;Wu, Mingzhu;Dai, Changbo;Xu, Xin;Xie, Xiaodong;Sun, Yuhe;Yang, Jun;Luo, Zhaopeng;Gao, Junping
关键词:LncRNA;Auxinic herbicide;Quinclorac stress;Nicotiana tabacum