Related Experiment Video
Updated: May 5, 2026

Assay for Pathogen-Associated Molecular Pattern PAMP-Triggered Immunity PTI in Plants
Published on: September 9, 2009
Tomato activates ethylene signaling to maintain pathogenesis-related genes expression for conferring bacterial wilt
Weiwei Cai1, Qiquan Li1, Feina Liu1
1Key Laboratory of Quality and Safety Control for Subtropical Fruit and Vegetable, Ministry of Agriculture and Rural Affairs, Collaborative Innovation Center for Efficient and Green Production of Agriculture in Mountainous Areas of Zhejiang Province, College of Horticulture Science, Zhejiang Agriculture and Forestry University, Hangzhou, Zhejiang, China.
Abstract:
Bacterial wilt that caused by Ralstonia solanacearum poses a major threat to tomatoes. Some disease-resistant cultivars have been shown to significantly improve tomato resistance to bacterial wilt. Analyzing and harnessing the resistance mechanism of bacterial wilt-resistant cultivars is therefore of considerable importance for tomato resistance breeding. In this study, we have confirmed that the tomato disease-resistant cultivars "ZJ-7" and "04056" were more resistant to bacterial wilt than the susceptible cultivar Ailsa Craig cv. (AC), and then transcriptome sequencing analysis of roots from "ZJ-7" and "04056" revealed extensive changes in gene expression at 3 and 6 hours post-inoculation (hpi) with R. solanacearum. In both disease-resistant cultivars, the transcriptional expression levels of genes encoding pathogenesis-related (PR) proteins and transcription factors were markedly elevated in response to R. solanacearum infection at both time points. In contrast, the susceptible cultivar AC exhibited a considerably lower number of transcription factors responding to the infection, with up-regulated occuring only at 6 hpi, while the up-regulation of PR gene expression was observed only at 3 hpi. Although the specific up-regulated genes differed between "ZJ-7" and "04056", both showed activation of ethylene biosynthesis-related genes. Ethephon application in AC promoted the expression of transcription factors at 3 hpi and restore PR gene expression at 6 hpi. These results indicate that sustained defense against bacterial wilt in tomato is closely assocated with ethylene synthesis, providing a theoretical basis for elucidating the resistance mechanism and enhancing disease resistance in tomato.
More Related Videos
09:05Tomato Root Transformation Followed by Inoculation with Ralstonia Solanacearum for Straightforward Genetic Analysis of Bacterial Wilt Disease
Published on: March 11, 2020
06:41High-Throughput Identification of Resistance to Pseudomonas syringae pv. Tomato in Tomato using Seedling Flood Assay
Published on: March 10, 2020
Related Concept Videos
Plant Breeding and Biotechnology
Defenses Against Pathogens and Herbivores
Transgenic Plants
The first-ever transgenic plant was a tobacco plant developed in 1983 that showed resistance against the tobacco mosaic virus. Since then, many transgenic plants have been developed and commercialized for improving the agricultural, ornamental, and horticultural value of a crop plant. Transgenic...
Cell Signaling in Plants
Microbe-Plant Interactions
Regulation of Bacterial Virulence