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March 29, 2026Plants0 citationsOpen Access

The Ralstonia solanacearum Effector RipP1 Interacts with Nicotiana benthamiana FRL4a to Suppress Ethylene Signaling and Modulate Bacterial Wilt Susceptibility

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XXXiaoyan XieXMXue MaJHJianwei He

Key Points

  • Investigate the interaction between RipP1 and FRL4a in Nicotiana benthamiana and its effect on ethylene signaling and susceptibility to bacterial wilt.
  • Screened a Nicotiana benthamiana cDNA library via yeast two-hybrid assay to identify interacting proteins.
  • Conducted structural analysis and created serial mutants of FRL4a.
  • Used virus-induced gene silencing (VIGS) to silence FRL4a and assess effects on RipP1 function.
  • Performed quantitative real-time PCR (qPCR) to analyze gene expression changes in silenced plants.
  • Conducted pathogenicity tests by inoculating R. solanacearum with varying FRL4a levels.
  • Identified FRL4a as a host protein that interacts with RipP1.
  • FRL4a plays a critical role in mediating HR in response to RipP1.
  • RipP1's ability to suppress ethylene signaling was inhibited in FRL4a-silenced plants.
  • FRL4a-silenced plants showed enhanced resistance to bacterial wilt compared to overexpressing plants.

Abstract

RipP1 is a well-characterized avirulence effector that induces a hypersensitive response (HR) in three tobacco species. However, the molecular mechanisms by which host proteins recognize RipP1 to activate a defense response and modulate host–pathogen interactions remain largely unknown. In this study, we screened a Nicotiana benthamiana cDNA library via yeast two-hybrid assay and identified FRIGIDA-like protein 4a (FRL4a) as a host protein interacting with RipP1. Secondary structure analysis of FRL4a and construction of serial mutants revealed that the ClyA-like domain of FRL4a is the key region mediating its interaction with RipP1. Using virus-induced gene silencing (VIGS) and quantitative real-time PCR (qPCR) analysis, we found that the ability of RipP1 to induce HR was significantly attenuated in FRL4a-silenced plants, and RipP1 no longer suppressed the ethylene signaling pathway. Pathogenicity tests by inoculating R. solanacearum on N. benthamiana with different FRL4a expression levels showed enhanced bacterial wilt resistance in FRL4a-silenced plants but increased susceptibility in FRL4a-overexpressing plants. Collectively, these findings demonstrate that RipP1 suppresses the ethylene pathway through its interaction with FRL4a, and FRL4a acts as a negative regulator of tobacco resistance to bacterial wilt.

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Cite This Study

Xie et al. (2026) studied this question.

synapsesocial.com/papers/69c8c30dde0f0f753b39da7bhttps://doi.org/10.3390/plants15071039
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