Food and water stations for wild birds contributing to spread of deadly diseases
Feeding stations providing food and water for wild birds are contributing to the spread of disease-causing parasites among farmland birds, researchers have said, with birds three times more likely to catch a parasite from these resources.
Led by Dr Rebecca Thomas, as part of her PhD work at the University of Leeds, co-supervised by Dr Simon Goodman in Leeds' School of Biology, and Dr Jenny Dunn from Keele's School of Life Sciences, the new research published in the journal Molecular Ecology looked at the prevalence of the parasite Trichomonas gallinae in farmland birds.
The research was conducted in collaboration with the RSPB, Natural England, and the University of Sheffield.
The Trichomonas gallinae parasite is widespread worldwide in birds from the pigeon and dove group, also known as columbids, where it is a conservation threat to some endangered species such the turtle dove (Streptopelia turtur).
The parasite also causes a lethal disease in another class of birds known as passerines, which are common in gardens and include well known songbirds like finches, warblers, and sparrows. Previous work has suggested that the parasite may be transmitted between birds through shared food and water in gardens, but more information is needed on how the parasite is transmitted between species and to what extent it persists in the environment.
One hypothesis has suggested that this parasite might also be transmitted at shared food and water resources which are commonly used on farmland to help wild bird populations. Providing supplementary food on farms is widespread as a conservation measure to support endangered wildlife species including turtle doves, and to sustain gamebirds such as pheasants.
To test this idea, the team used DNA sequencing to screen 363 birds in the UK and France, as well as 51 shared food and water resources, at 12 farmland sites over a two-year period. The DNA tests confirmed the presence or absence of the parasite, and identified which strains were present.
The birds sampled were both columbids and non-columbids, and included birds who fed at high density shared food resources where supplementary feed stations were set out, as well as from low density, natural sources like seed-providing vegetation.
Their results showed that T. gallinae parasites were present in 79% of the columbid birds screened, 36% of the non-columbids, and 39% of the shared environmental resources.
One strain of the parasite, known as Type A, was more than doubly prevalent in the birds who fed at high density resources compared to lower density, more natural sites, and it was also found nearly three times as often at the high-density feeding sites themselves compared to the natural feed sites. The Type A strain is a more virulent strain that has been linked to mortalities and population declines in UK greenfinch populations.
These findings provide strong evidence that the parasite is transmitted to different birds from these shared resources, with the researchers saying that carefully managing supplementary feeding resources on farms and making them as low density as possible could help reduce parasite transmission.
This will help to protect the health of the birds that feed there, while still providing necessary resources to help breeding farmland birds. The same applies in gardens, with new guidance by the Royal Society for Protection of Birds (RSPB) asking people to feed birds seasonally and safely.
An example of carefully managed, low density supplementary seed provision has been successfully trialled for Turtle Doves, and now forms part of the Operation Turtle Dove management package for the species.
Dr Jenny Dunn said: "Our findings demonstrate that the Trichomonas gallinae parasite is much more widespread that we were expecting, and suggest that food and water are key to parasite transmission. However, this knowledge also gives us the tools to manage environmental resources such as supplementary food, to reduce parasite transmission between birds and hopefully reduce mortality."
Dr Rebecca Thomas added: “This study is an important example of how novel techniques like DNA-based disease monitoring can give new insights into how parasites impact wildlife populations, help us develop more informed conservation policy.”
Dr Thomas's PhD work was supported by a PhD scholarship from the Royal Society for Protection of Birds (RSPB) and Natural England, under the Action for Birds in England partnership, and by a grant from the Natural Environment Research Council (NERC) for use of the National Biomolecular Analysis Facility at the University of Sheffield.
Most read
- Keele celebrates success in National Student Survey 2026 with 13 subjects ranked Top 10 in England
- Keele named University of the Year at national social mobility awards
- Keele Business School wins top honour at Midlands Education Awards 2026
- Keele University ranked in Top 10 in England for international student experience
- Researchers developing new injectable gel to repair damaged cartilage
Contact us
Andy Cain,
Media Relations Manager
+44 1782 733857
Abby Swift,
Senior Communications Officer
+44 1782 734925
Adam Blakeman,
Press Officer
+44 7775 033274
Ashleigh Williams,
Senior Internal Communications Officer
Strategic Communications and Brand news@keele.ac.uk.