Related Experiment Video
Updated: Jun 25, 2026

Direct Agroinoculation of Maize Seedlings by Injection with Recombinant Foxtail Mosaic Virus and Sugarcane Mosaic Virus Infectious Clones
Published on: February 27, 2021
Global status of tospovirus epidemics in diverse cropping systems: successes achieved and challenges ahead
H R Pappu1, R A C Jones, R K Jain
1Department of Plant Pathology, Washington State University, Pullman, WA 99164, USA. hrp@wsu.edu
Abstract:
The diseases caused by thrips-transmitted tospoviruses (genus Tospovirus, family Bunyaviridae) are a major constraint to production of important vegetable, legume and ornamental crops in different parts of the world. Tospoviruses are characterized by having tripartite RNA genomes and utilizing both negative and ambisense genome expression strategies. Their often wide and overlapping host ranges, emergence of resistance-breaking strains, circulative and propagative relationship with polyphagous thrips vectors, and difficulties in predicting their outbreaks pose challenges to development and implementation of effective management programmes. Despite these challenges, for a few tospoviruses, considerable progress has been made in successful development and deployment of practical and effective integrated disease management programmes. This has been due to increased understanding of their molecular biology, plant-virus and virus-vector interactions and epidemiology, and to identification of risk factors that contribute to increased disease incidence and of tactics to mitigate those risk factors. However, challenges remain as resistance-breaking or other new strains of known tospoviruses and completely new tospovirus species continue to be described from various parts of the world and have the potential to cause damaging epidemics. To protect crops from the losses caused by severe tospovirus outbreaks, continued vigilance is required to identify and characterize these emerging tospoviruses, determine their impact on crop production, understand their epidemiologies and develop, evaluate and implement control measures to reduce their impact on crop production.
More Related Videos
11:12Protocols for Investigating the Host-tissue Distribution, Transmission-mode, and Effect on the Host Fitness of a Densovirus in the Cotton Bollworm
Published on: April 12, 2017
14:15On-Site Molecular Detection of Soil-Borne Phytopathogens Using a Portable Real-Time PCR System
Published on: February 23, 2018
Related Concept Videos
Production of Biopesticides
Microorganisms in Agriculture and Food industry
Investigation of Disease Outbreaks
Microbial Bioremediation of Pesticides
Infectious Diseases and Their Occurrence
Principles of Disease Surveillance