Epidemiological drivers of turnip yellows virus and its vector Myzus persicae in Australian canola ( Brassica napus ) systems: a 3‐year study of commercial crops and noncrop vegetation

BACKGROUND: Turnip yellows virus (TuYV) is one of the most economically important viral pathogens of Brassica napus (canola) in Australia. However, the relative contributions of noncrop reservoirs, aphid vectors and virus genetic variation to TuYV epidemiology remain only partly resolved. Myzus persicae is the principal vector of TuYV and a major pest of B. napus production globally. In Australia, both M. persicae and TuYV persist between growing seasons in weeds and volunteer B. napus plants that can facilitate early-season crop infection. RESULTS: We conducted a 3-year study across southeastern and southwestern Australia to identify key noncrop reservoirs of M. persicae and TuYV, quantify seasonal and regional patterns of infection, characterize TuYV P5 variants, and assess predictors of TuYV occurrence in B. napus fields. Arctotheca calendula and Raphanus raphanistrum were identified as major reservoirs of both M. persicae and TuYV. P5-II was the predominant virus genotype, accounting for >97% of TuYV-positive samples. Disease symptoms were a reliable indicator of infection in B. napus during spring and earlier crop sowing dates were associated with increased TuYV incidence. CONCLUSION: The identification of key reservoir hosts and the strong association between earlier sowing and increased disease incidence highlight opportunities for targeted weed management, strategic sowing decisions and improved surveillance. These results provide new insights into the ecology of the M. persicae-TuYV-B. napus pathosystem, and support the development of integrated management strategies to reduce TuYV spread and minimize yield losses in Australian B. napus crops. © 2026 The Author(s). Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

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Journal
Pest Management Science
Published
2026-09-20
DOI
https://doi.org/10.1002/ps.71325
Primary Topic
Plant Virus Research Studies
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article

Epidemiological drivers of turnip yellows virus and its vector Myzus persicae in Australian canola ( Brassica napus ) systems: a 3‐year study of commercial crops and noncrop vegetation

Paul A. Umina, Andrew Raymond Weeks, Owain Rhys Edwards, Benjamin Steven Congdon et al.
Pest Management Science
Plant Virus Research Studies
article

Epidemiological drivers of turnip yellows virus and its vector Myzus persicae in Australian canola ( Brassica napus ) systems: a 3‐year study of commercial crops and noncrop vegetation

Paul A. Umina, Andrew Raymond Weeks, Owain Rhys Edwards, Benjamin Steven Congdon, Alex Slavenko, Marielle Babineau, John G. Black, Samantha E Edley, Roger AC Jones, Anthony R van Rooyen
article en

Abstract

BACKGROUND: Turnip yellows virus (TuYV) is one of the most economically important viral pathogens of Brassica napus (canola) in Australia. However, the relative contributions of noncrop reservoirs, aphid vectors and virus genetic variation to TuYV epidemiology remain only partly resolved. Myzus persicae is the principal vector of TuYV and a major pest of B. napus production globally. In Australia, both M. persicae and TuYV persist between growing seasons in weeds and volunteer B. napus plants that can facilitate early-season crop infection. RESULTS: We conducted a 3-year study across southeastern and southwestern Australia to identify key noncrop reservoirs of M. persicae and TuYV, quantify seasonal and regional patterns of infection, characterize TuYV P5 variants, and assess predictors of TuYV occurrence in B. napus fields. Arctotheca calendula and Raphanus raphanistrum were identified as major reservoirs of both M. persicae and TuYV. P5-II was the predominant virus genotype, accounting for >97% of TuYV-positive samples. Disease symptoms were a reliable indicator of infection in B. napus during spring and earlier crop sowing dates were associated with increased TuYV incidence. CONCLUSION: The identification of key reservoir hosts and the strong association between earlier sowing and increased disease incidence highlight opportunities for targeted weed management, strategic sowing decisions and improved surveillance. These results provide new insights into the ecology of the M. persicae-TuYV-B. napus pathosystem, and support the development of integrated management strategies to reduce TuYV spread and minimize yield losses in Australian B. napus crops. © 2026 The Author(s). Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

Pest Management Science
Commonwealth Scientific and Industrial Research Organisation (AU), The University of Melbourne (AU), The University of Western Australia (AU), Brunswick (United States) (US), Department of Primary Industries and Regional Development (AU), Agriculture Victoria (AU)
Openalex Percentile: Top 13%
Plant Virus Research Studies
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