Related Experiment Video
Updated: Oct 30, 2025

Visualizing Early Infection Sites of Rice Blast Disease Magnaporthe oryzae on Barley Hordeum vulgare Using a Basic Microscope and a Smartphone
Published on: March 17, 2023
Disruption of the Interfacial Membrane Leads to Magnaporthe oryzae Effector Re-location and Lifestyle Switch During
Kiersun Jones1, Jie Zhu1, Cory B Jenkinson1
1Department of Plant Biology, University of Georgia, Athens, GA, United States.
Abstract:
To cause the devastating rice blast disease, the hemibiotrophic fungus Magnaporthe oryzae produces invasive hyphae (IH) that are enclosed in a plant-derived interfacial membrane, known as the extra-invasive hyphal membrane (EIHM), in living rice cells. Little is known about when the EIHM is disrupted and how the disruption contributes to blast disease. Here we show that the disruption of the EIHM correlates with the hyphal growth stage in first-invaded susceptible rice cells. Our approach utilized GFP that was secreted from IH as an EIHM integrity reporter. Secreted GFP (sec-GFP) accumulated in the EIHM compartment but appeared in the host cytoplasm when the integrity of the EIHM was compromised. Live-cell imaging coupled with sec-GFP and various fluorescent reporters revealed that the loss of EIHM integrity preceded shrinkage and eventual rupture of the rice vacuole. The vacuole rupture coincided with host cell death, which was limited to the invaded cell with presumed closure of plasmodesmata. We report that EIHM disruption and host cell death are landmarks that delineate three distinct infection phases (early biotrophic, late biotrophic, and transient necrotrophic phases) within the first-invaded cell before reestablishment of biotrophy in second-invaded cells. M. oryzae effectors exhibited infection phase-specific localizations, including entry of the apoplastic effector Bas4 into the host cytoplasm through the disrupted EIHM during the late biotrophic phase. Understanding how infection phase-specific cellular dynamics are regulated and linked to host susceptibility will offer potential targets that can be exploited to control blast disease.
Insights
The extra-invasive hyphal membrane (EIHM) surrounding Magnaporthe oryzae in rice cells breaks down during infection. This disruption precedes host cell death and marks key stages of rice blast disease development.
Area of Science:
- Plant Pathology
- Molecular Plant-Microbe Interactions
- Fungal Pathogenesis
Background:
- Magnaporthe oryzae causes rice blast, a devastating disease.
- Invasive hyphae (IH) are enclosed by the extra-invasive hyphal membrane (EIHM) within rice cells.
- The timing and role of EIHM disruption in disease progression are poorly understood.
Purpose of the Study:
- To investigate the disruption dynamics of the EIHM during M. oryzae infection.
- To correlate EIHM integrity loss with host cell events and infection phases.
- To understand the implications of EIHM disruption for M. oryzae pathogenesis.
Main Methods:
- Utilized secreted GFP (sec-GFP) as an EIHM integrity reporter.
- Employed live-cell imaging with sec-GFP and other fluorescent reporters.
- Monitored host cell responses, including vacuole integrity and cell death.
Main Results:
- EIHM disruption correlates with M. oryzae hyphal growth stage in susceptible rice.
- Loss of EIHM integrity precedes rice vacuole shrinkage, rupture, and host cell death.
- EIHM disruption and cell death define distinct infection phases (biotrophic and necrotrophic).
- Apoplastic effector Bas4 enters the host cytoplasm via the disrupted EIHM during the late biotrophic phase.
Conclusions:
- EIHM integrity is crucial for M. oryzae's biotrophic phase.
- EIHM disruption is a key event linking infection phases and host cell death.
- Understanding EIHM dynamics offers potential targets for controlling rice blast disease.

