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Updated: Feb 8, 2026

In vivo and In vitro Infection of Potato Roots with Plant Parasitic Nematodes for the Assessment of Induced Structural Changes
Published on: February 28, 2025
Luchas Invisibles: Cómo los Nematodos Fitoparásitos Manipulan la Señalización de ROS en Plantas Huésped
Anil Kumar1, Chunoti Changwal2, Thomas J Baum3
1Iowa State University, Department of Plant Pathology, Entomology and Microbiology, Pammel dr Ames, Ames, Iowa, United States, 50010; anilm@iastate.edu.
Abstract:
Reactive oxygen species (ROS) play a central role in plant defense, especially during interactions with plant-parasitic nematodes (PPNs). These molecules act as early signals that activate immune responses and help reinforce plant cell walls to block nematode invasion. However, PPNs have evolved specialized effector proteins (small, secreted molecules, typically proteins, that enter host cells to directly suppress immunity and manipulate host processes), which they secrete into host tissues and cells to interfere with ROS production and signaling. These effectors can suppress ROS bursts, detoxify reactive molecules, or manipulate host pathways to reduce immune responses. This review synthesizes current knowledge on these effector-driven strategies, from their discovery using advanced genomics to their specific molecular mechanism of ROS suppression. We also explore the critical interplay between ROS signaling and plant hormone pathways during infection, and provide an overview of the key techniques used to detect and quantify ROS in plant-nematode interactions.
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