1. Tao, J., Anteck, C., Aspholm, P., Vellekson, D., Ehlke, N., & McCaghey, M. Evaluation of Bio-Fungicides for Sclerotinia Stem Rot Management of Canola, MN 2024. Plant Health Progress, Plans Disease Management Report. [Submitted:2025] 
  2. Zarouri, A., Meher, A., Malvick, D., Floyd, C., McCaghey, M., Aboubakr, H. and Abbas, A., 2025. A rapid loop-mediated isothermal amplification assay for the detection of root rot in soybean caused by Phytophthora sojae. Analytical Methods17(35), pp.7061-7070.
  3. Sharma, A., Groves, C.L., McCaghey, M., Mueller, B., Webster, R.W. and Smith, D.L., 2025. Coniothyrium minitans: A biocontrol agent for sustainable management of Sclerotinia-induced diseases. Biological Control, p.105877.
  4. Swett, C.L., Geiser, D., Miyao, E.M., Helpio, E., Zimmerman, K., Hellman, E.M., Gastelum, M., Rodriguez, F., Aegerter, B.J., Turini, T.A. and Vinchesi-Vahl, A, Li, N., Martin, F., Brackrog, A., Castillo Múnera, J., Paugh, K., McCaghey, M. Hopkins, A., Beaulieu, J. 2025. Fusarium stem rot and decline caused by Fusarium noneumartii and F. martii: A widespread outbreak-associated disease in California processing tomatoes, distinguishable from F. falciforme-driven foot rot. Plant Disease, (ja).
  5. Mo Mohan, K., Leite, D.C., Fakhoury, A.M., Harveson, R.M., Markell, S.G., McCaghey, M., Rasuleva, D., Kashyap, R. and Mathew, F.M., 2025. G143A Mutation identified in Diaporthe helianthi causing Phomopsis Stem Canker in Sunflower. Plant Health Progress26(4), pp.550-554.
  6. Aspholm, P., Chanda, A. K., Lien, A., McCaghey, M., 2024. Susceptibility of Kodiak Brown Mustard and Hazlet Winter Rye to Rhizoctonia solani isolates from AG 5, AG4, and AG 2-2, IV. Plant Disease Management Report.
  7. McCaghey, M., Aegerter, B., Sidhu, J, and Swett, C., 2024. Late season chemical applications for the management of southern blight and tuber rots in potato in 2021. Plant Disease Management Report. 
  8. Webster, R.W., McCaghey, M., Mueller, B., Groves, C., Mathew, F.M., Singh, A., Kabbage, M. and Smith, D.L., 2023. Development of Glycine max Germplasm Highly Resistant to Sclerotinia sclerotiorum. PhytoFrontiers.
  9. McCaghey, M., Aegerter, B., Sidhu, J, and Swett, C., 2021. Late season chemical applications for the management of southern blight and tuber rots in potato in 2021. Plant Disease Management Report .
  10. Webster, R., Roth, M., Reed, H., Mueller, B., Groves, C., McCaghey, M., Chilvers, M.,  Mueller, D., Kabbage, M., and Smith, D., 2021. Identification of Soybean Check Lines for Evaluating Genetic Resistance to Sclerotinia Stem Rot. Plant Disease: PDIS-10.
  11. McCaghey, M., Shao, D., Kurcezewski, J., Lindstrom, A., Ranjan, A., Grau, C., Whitham, S.A., Conley, S.P., Smith, D.L., and Kabbage, M. 2021. Host-induced gene silencing of a Sclerotinia sclerotiorum pathogenicity factor using Bean Pod Mottle Virus as a vehicle. Frontiers in Plant Science: 1216.
  12. Mueller, B., Smith, D.L., Webster, M., McCaghey, M., Reed, H. 2020. Evaluation of foliar fungicide treatments for control of Sclerotinia stem rot of soybean in Hancock Wisconsin, 2019. Plant Disease Management Report: 14:CF040.
  13. Mueller, B., Smith, D.L., Webster, M., McCaghey, M., Reed, H. 2020. Evaluation of an herbicide and fungicides for control of Sclerotinia stem rot of soybean in Hancock Wisconsin, 2019. Plant Disease Management Report: 14:CF039.
  14. McCaghey, M., Willbur, J.F, Smith, D.L., and Kabbage, M., 2019. The complexity of the Sclerotinia sclerotiorum pathosystem in soybean: virulence factors, resistance mechanisms, and their exploitation to control Sclerotinia stem rot. Tropical Plant Pathology 44:12-22.
  15. Willbur, J.F., McCaghey, M., Kabbage, M., and Smith, D.L., 2019. An overview of the Sclerotinia sclerotiorum pathosystem in soybean: Impact, fungal biology, and current management strategies. Tropical Plant Pathology 44:3-11.
  16. Willbur J.F., Fall M.L, Byrne A.M., Chapman S.A., McCaghey M.M., Mueller B.D., Schmidt R., Chilvers M.I., Mueller D.S., Kabbage M., Giesler L., Conley S.P., and Smith D.L., 2018. Validating Sclerotinia sclerotiorum Apothecial Models to Predict Sclerotinia Stem Rot in Soybean (Glycine max) fields. Plant Disease 102(12): 2592-2601.
  17. Willbur, J.F., Fall, M.L., Bloomingdale, C., Byrne, A.M., Chapman, S.A., Isard, S.A., Magarey, R.D., McCaghey, M.M., Mueller, B.D., Russo, J.M. and Schlegel, J., 2018. Weather-Based Models for Assessing the Risk of Sclerotinia sclerotiorum Apothecial Presence in Soybean (Glycine max) Fields. Plant Disease 102:73-84.
  18. McCaghey M., Willbur J., Ranjan A., Grau C.R., Chapman S., Diers B., Groves C., Kabbage M., and Smith D., 2017. Development and Evaluation of Glycine max Germplasm Lines with Quantitative Resistance to Sclerotinia sclerotiorum. Frontiers in Plant Science 8:1495.