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Avian flu could decimate Australian black swans

Date:
January 22, 2023
Source:
University of Queensland
Summary:
The unique genetics of the Australian black swan leaves the species vulnerable to viral illnesses such as avian flu, new research has revealed.
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The unique genetics of the Australian black swan leaves the species vulnerable to viral illnesses such as avian flu, University of Queensland research has revealed.

The UQ-led study has generated a first-ever genome of the black swan which revealed the species lacks some immune genes which help other wild waterfowl combat infectious diseases.

Associate Professor Kirsty Short from UQ's School of Chemistry and Molecular Biosciences said the geographic isolation of Australia's black swans has meant limited exposure to pathogens commonly found in other parts of the world leading to reduced immune diversity.

"Unlike Mallard ducks for example, black swans are extremely sensitive highly pathogenic avian influenza -- HPAI which is often referred to as bird flu -- and can die from it within three days," Dr Short said.

"Our data suggests that the immune system of the black swan is such that, should any avian viral infection become established in its native habitat, their survival would be in peril.

"We currently don't have HPAI in Australia, but it has spread from Asia to North America, Europe, North Africa and South America.

"When it was introduced to new locations, such as Chile and Peru, thousands of wild seabirds perished.

"The risk to one of Australia's most unique and beautiful birds is very real, and we need to be prepared if we hope to protect it."

With the knowledge from the UQ study, Dr Short said researchers and conservationists hope to be able to better protect not only the black swan, but also other susceptible species across the globe.

"We want to increase awareness about how vulnerable Australia's bird species are to avian influenza and the highly precarious situation they are in," Dr Short said.

This research was funded by the Australian Department of Agriculture and Water Resources and an Australian Research Council Discovery Early Career Researcher Award and was in collaboration with the Vertebrate Genomes Project (VGP).

This research was published in Genome Biology.


Story Source:

Materials provided by University of Queensland. Note: Content may be edited for style and length.


Journal Reference:

  1. Anjana C. Karawita, Yuanyuan Cheng, Keng Yih Chew, Arjun Challagulla, Robert Kraus, Ralf C. Mueller, Marcus Z. W. Tong, Katina D. Hulme, Helle Bielefeldt-Ohmann, Lauren E. Steele, Melanie Wu, Julian Sng, Ellesandra Noye, Timothy J. Bruxner, Gough G. Au, Suzanne Lowther, Julie Blommaert, Alexander Suh, Alexander J. McCauley, Parwinder Kaur, Olga Dudchenko, Erez Aiden, Olivier Fedrigo, Giulio Formenti, Jacquelyn Mountcastle, William Chow, Fergal J. Martin, Denye N. Ogeh, Françoise Thiaud-Nissen, Kerstin Howe, Alan Tracey, Jacqueline Smith, Richard I. Kuo, Marilyn B. Renfree, Takashi Kimura, Yoshihiro Sakoda, Mathew McDougall, Hamish G. Spencer, Michael Pyne, Conny Tolf, Jonas Waldenström, Erich D. Jarvis, Michelle L. Baker, David W. Burt, Kirsty R. Short. The swan genome and transcriptome, it is not all black and white. Genome Biology, 2023; 24 (1) DOI: 10.1186/s13059-022-02838-0

Cite This Page:

University of Queensland. "Avian flu could decimate Australian black swans." ScienceDaily. ScienceDaily, 22 January 2023. <www.sciencedaily.com/releases/2023/01/230122215755.htm>.
University of Queensland. (2023, January 22). Avian flu could decimate Australian black swans. ScienceDaily. Retrieved December 20, 2024 from www.sciencedaily.com/releases/2023/01/230122215755.htm
University of Queensland. "Avian flu could decimate Australian black swans." ScienceDaily. www.sciencedaily.com/releases/2023/01/230122215755.htm (accessed December 20, 2024).

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