| [1] | Smith, O. M., Edworthy, A., Taylor, J. M., Jones, M. S., Tormanen, A., Kennedy, C. M., Fu, Z., Latimer, C. E., Cornell, K. A., Michelotti, L. A., Sato, C., Northfield, T., Snyder, W. E., & Owen, J. P. (2020). “Agricultural intensification heightens food safety risks posed by wild birds.” Journal of Applied Ecology, 57(11), 2246–2257. |
| |
| [2] | Carter, S., Morford, S. L., Tack, J. D., Lark, T. J., Aragon, N. U., Allred, B. W., Twidwell, D., & Naugle, D. E. (2025). Annual cultivated extent and agricultural land use expansion across the central grasslands of North America, 1996–2021. Ecological Indicators, 178, 113968. |
| |
| [3] | Elser, J. L., Adams Progar, A. L., Steensma, K. M. M., Caskin, T. P., Kerr, S. R., & Shwiff, S. P. (2019). “Economic and livestock health impacts of birds on dairies: Evidence from a survey of Washington dairy operators.” PLOS ONE, 14(9). |
| |
| [4] | Mostafa, A., Naguib, M. M., Nogales, A., Barre, R. S., Stewart, J. P., García-Sastre, A., & Martinez-Sobrido, L. (2024). Avian influenza A (H5N1) virus in dairy cattle: Origin, evolution, and cross-species transmission. mBio, 15(12), e02542-24. |
| |
| [5] | Scallan, E. (2011). “Foodborne Illness Acquired in the United States (Reply).” Emerging Infectious Diseases, 17(7), 1339–1340. |
| |
| [6] | Qiu, Y., Lv, C., Chen, J., Sun, Y., Tang, T., Zhang, Y., Yang, Y., Wang, G., Xu, Q., Zhang, X., Hong, F., Hay, S. I., Fang, L., & Liu, W. (2025). The global distribution and diversity of wild-bird-associated pathogens: An integrated data analysis and modeling study. Med, 6(4), 100553. |
| |
| [7] | Green, H. C., Dick, L. K., Gilpin, B., Samadpour, M., & Field, K. G. (2012). “Genetic Markers for Rapid PCR-Based Identification of Gull, Canada Goose, Duck, and Chicken Fecal Contamination in Water.” Applied and Environmental Microbiology, 78(2), 503–510. |
| |
| [8] | Corn, J. L., Manning, E. J. B., Sreevatsan, S., & Fischer, J. R. (2005). “Isolation of Mycobacterium avium subsp. Paratuberculosis from Free-Ranging Birds and Mammals on Livestock Premises.” Applied and Environmental Microbiology, 71(11), 6963–6967. |
| |
| [9] | Reed, K. D., Meece, J. K., Henkel, J. S., & Shukla, S. K. (2003). Birds, Migration and Emerging Zoonoses: West Nile Virus, Lyme Disease, Influenza A and Enteropathogens. Clinical Medicine & Research, 1(1), 5–12. |
| |
| [10] | Hubálek, Z. (2004). An Annotated Checklist Of Pathogenic Microorganisms Associated With Migratory Birds. Journal of Wildlife Diseases, 40(4), 639–659. |
| |
| [11] | Jourdain, E., Gauthier-Clerc, M., Bicout, D., & Sabatier, P. (2007). Bird Migration Routes and Risk for Pathogen Dispersion into Western Mediterranean Wetlands. Emerging Infectious Diseases, 13(3), 365–372. |
| |
| [12] | Pao, S., Hagens, B. E., Kim, C., Wildeus, S., Ettinger, M. R., Wilson, M. D., Watts, B. D., Whitley, N. C., Porto-Fett, A. C. S., Schwarz, J. G., Kaseloo, P., Ren, S., Long, W., Li, H., & Luchansky, J. B. (2014). “Prevalence and molecular analyses of Campylobacter jejuni and Salmonella spp. In co-grazing small ruminants and wild-living birds.” Livestock Science, 160, 163–171. |
| |
| [13] | Paruch, A. M., & Paruch, L. (2024). Current status of microbial source tracking applications in constructed wetlands serving as nature-based solutions for water management and wastewater treatment. Environmental Pollution, 351, 124076. |
| |
| [14] | Ahmed, W., Staley, C., Sadowsky, M. J., Gyawali, P., Sidhu, J. P. S., Palmer, A., Beale, D. J., & Toze, S. (2015). “Toolbox Approaches Using Molecular Markers and 16S rRNA Gene Amplicon Data Sets for Identification of Fecal Pollution in Surface Water.” Applied and Environmental Microbiology, 81(20), 7067–7077. |
| |
| [15] | Ahmed, W., Harwood, V. J., Nguyen, K., Young, S., Hamilton, K., & Toze, S. (2016). “Utility of Helicobacter spp. Associated GFD markers for detecting avian fecal pollution in natural waters of two continents.” Water Research, 88, 613–622. |
| |
| [16] | Werner, D., Acharya, K., Blackburn, A., Zan, R., Plaimart, J., Allen, B., Mgana, S. M., Sabai, S. M., Halla, F. F., Massawa, S. M., Haile, A. T., Hiruy, A. M., Mohammed, J., Vinitnantharat, S., Thongsamer, T., Pantha, K., Mota Filho, C. R., & Lopes, B. C. (2022). “MinION Nanopore Sequencing Accelerates Progress towards Ubiquitous Genetics in Water Research.” Water, 14(16), 2491. |
| |
| [17] | Kang, M., Yang, J., Kim, S., Park, J., Kim, M., & Park, W. (2022). “Occurrence of antibiotic resistance genes and multidrug-resistant bacteria during wastewater treatment processes.” Science of The Total Environment, 811, 152331. |
| |
| [18] | QIAGEN. (2022). AllPrep® PowerFecal® Pro DNA/RNA Kit Handbook. |
| |
| [19] | Oxford Nanopore Technologies. (2025). Rapid Sequencing DNA V14 Barcoding Kit (SQK-RBK114.24 or SQK-RBK114.96) |
| |
| [20] | Abd El-Ghany, W. A. (2021). “Pseudomonas aeruginosa infection of avian origin: Zoonosis and one health implications.” Veterinary World, 2155–2159. |
| |
| [21] | Yuan, Y., Liang, B., Jiang, B., Zhu, L., Wang, T., Li, Y., Liu, J., Guo, X., Ji, X., & Sun, Y. (2021). “Migratory wild birds carrying multidrug-resistant Escherichia coli as potential transmitters of antimicrobial resistance in China.” PLOS ONE, 16(12), e0261444. |
| |
| [22] | Holzhauer, M., & Wennink, G. J. (2023). Zoonotic risks of pathogens from dairy cattle and their milk-borne transmission. Journal of Dairy Research, 90(4), 325–331. |
| |
| [23] | Holschbach, C. L., & Peek, S. F. (2018). Salmonella in Dairy Cattle. Veterinary Clinics of North America: Food Animal Practice, 34(1), 133–154. |
| |
| [24] | Pennycott, T. W., Park, A., & Mather, H. A. (2006). “Isolation of different serovars of Salmonella enterica from wild birds in Great Britain between 1995 and 2003.” Veterinary Record, 158(24), 817–820. |
| |
| [25] | Ruan, Z., & Feng, Y. (2016). “BacWGSTdb, a database for genotyping and source tracking bacterial pathogens.” Nucleic Acids Research, 44(D1), D682–D687. |
| |