Higgins Hall 415
Telephone: 617-552-3103
Email: zoe.hilbert@bc.edu
Host-fungal interactions, adaptive evolution of pathogenic fungi and their hosts, fungal pathogenesis, microbial recognition, immune evolution, pathogen evolution
Schwiesow, M.J.W., Elde, N.C., Hilbert, Z.A.* (2024) Distinct routes to thermotolerance in the fungal pathogenÌýCryptococcus neoformans.ÌýbioRxiv.Ìý
Hilbert, Z.A., Bednarek, J.M., Chung, K.Y., Schwiesow, M.W., Brown, J.C.S., Elde, N.C. (2022). Distinct pathways of adaptive evolution in Cryptococcus neoformans reveal a point mutation in adenylate cyclase with drastic tradeoffs for pathogenicity. Current Biology 33 (19),Ìý4136-4149. e9.Ìý
Hilbert, Z.A., Haffener, P., Young, H.J., Schwiesow, M., Leffler, E.M., Elde, N.C. (2022). Rapid evolution of glycan recognition receptors reveals an axis of host-microbe conflicts at carbohydrate-protein interfaces. bioRxiv.
Carey, C.M., Apple, S. E., Hilbert, Z.A., Kay, M.S., and Elde, N.C.* (2021) Diarrheal pathogens trigger rapid evolution of the guanylate cyclase-C signaling axis in bats.ÌýCell Host and Microbe 29 (9),Ìý1342-1350. e5.