Surveillance of wild animals carrying infectious agents based on high-throughput screening platform in the Republic of Korea

  • Myeongsu Kim
  • , Jieun Bae
  • , Byungkwan Oh
  • , Haerin Rhim
  • , Myeon Sik Yang
  • , Somyeong Yang
  • , Bumseok Kim
  • , Jae Ik Han*
  • *Corresponding author for this work

Research output: Contribution to journalJournal articlepeer-review

Abstract

Background: Infectious diseases transmitted by wild animals are major threats to public health. This study aimed to investigate the potential of rescued wild animals that died of unknown causes as reservoirs of infectious agents. From 2018 to 2019, 121 dead wild animals (55 birds and 66 mammals) were included in this study. All wild animals died during treatment after anthropogenic events. After deaths of animals, necropsies were performed and trachea, lungs, large intestine (including stool), and spleen were collected to determine causes of deaths. A high-throughput screening (HTS) quantitative polymerase chain reaction (qPCR) designed to detect 19 pathogens simultaneously against 48 samples in duplicate was performed using nucleic acids extracted from pooled tissues and peripheral blood samples. If positive, singleplex real-time PCR was performed for individual organs or blood samples. Results: The HTS qPCR showed positive results for Campylobacter jejuni (10/121, 8.3%), Campylobacter coli (1/121, 0.8%), Mycoplasma spp. (78/121, 64.5%), and Plasmodium spp. (7/121, 5.7%). Singleplex real-time PCR confirmed that C. jejuni was detected in the large intestine but not in the blood. C. coli was only detected in the large intestine. Mycoplasma spp. were detected in all organs, having the highest proportion in the large intestine and lowest in the blood. Plasmodium spp. was also detected in all organs, with proportions being were similar among organs. Conclusions: This study shows that wild animals can become carriers of infectious agents without showing any clinical symptoms.

Original languageEnglish
Article number158
JournalBMC Veterinary Research
Volume19
Issue number1
DOIs
StatePublished - 2023.12

Keywords

  • High-throughput platform
  • Infectious disease
  • Reservoir
  • Wild animal

Quacquarelli Symonds(QS) Subject Topics

  • Veterinary Science

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