senior walk

2024

  • Huang L, Yuan Y, Lewis C, Xia C, Zhang C, Kud J, Kuhl JC, Caplan A, Dandurand LM, Xiao F. 2024. The potato RNA metabolism machinery is targeted by the cyst nematode effector RHA1B for successful parasitism. Plant Cell. doi:10.1093/plcell/koae264

2023

  • Huang L, Yuan Y, Lewis C, Kud J, Kuhl JC, Caplan A, Dandurand LM, Zasada I, Xiao F. 2023. NILR1 perceives a nematode ascaroside triggering immune signaling and resistance. Current Biology, doi:10.1016/j.cub.2023.08.017

2022

  • Kud J, Dahan J, Orellana GE, Dandurand LM, Karasev AV. 2022. A novel rhabdovirus associated with the Idaho population of potato cyst nematode Globodera pallida. Viruses 14, 2718. doi:10.3390/v14122718
  • Kud J, Pillai SS, Raber G, Caplan A, Kuhl JC, Xiao F, Dandurand LM. 2022. Belowground chemical interactions: an insight into host-specific behavior of Globodera spp. hatched in root exudates from potato and its wild relative, Solanum sisymbriifolium. Front. Plant Sci. 12:802622. doi:10.3389/fpls.2021.802622

2021

  • Solo N, Kud J, Caplan A, Kuhl JC, Xiao F, Dandurand LM. 2021. Characterization of the superoxide dismutase (SOD) from the potato cyst nematode, Globodera pallida. Phytopathology 111(11):2110-2117. doi:10.1094/PHYTO-01-21-0021-R

2019

  • Kud J, Solo N, Caplan A, Kuhl JC, Dandurand LM, Xiao F. 2019. In situ hybridization of sections of plant-parasitic nematode G. pallida juveniles to detect gene expression. Bio-Protocol l9(18):e3372  doi:10.21769/BioProtoc.3372
  • Kud J, Wang J, Yuan Y, Caplan A, Kuhl JC, Dandurand LM, Xiao F. 2019. A guide for functional characterization of RING-type E3 ubiquitin ligases in vitro and in planta. J Vis. Exp. (154):e60533. doi:10.3791/60533
  • Kud J, Wang W, Gross R, Fan Y, Huang L, Yuan Y, Gray A, Duarte A, Kuhl JC, Caplan A, Goverse A, Liu Y, Dandurand LM, Xiao F. 2019. The potato cyst nematode effector RHA1B is a ubiquitin ligase and uses two distinct mechanisms to suppress plant immune signaling. PLOS Pathogens 12;15(4):e1007720. doi:10.1371/journal.ppat.1007720

2018

  • Wang W, Fan Y, Niu X, Miao M, Kud J, Zhou B, Zeng L, Liu Y, Xiao F. 2018. Functional Analysis of the SEVEN IN ABSENTIA (SINA) Ubiquitin Ligase Family in Tomato: Analysis of SINA ubiquitin ligases in tomato. Plant Cell Environ. 41(3):689-703. doi:10.1111/pce.13140

2017

  • Ramachandran S, Yin C, Kud J, Tanaka K, Mahoney A, Xiao F, Hulbert SH. 2017. Effectors from wheat rust fungi suppress multiple plant defense responses. Phytopathology 107(1):75-83. doi:10.1094/PHYTO-02-16-0083-R

2016

  • Miao M, Niu X, Kud J, Du X, Avila J, Devarenne TP, Kuhl JC, Liu Y, Xiao F. 2016. The ubiquitin ligase SEVEN IN ABSENTIA (SINA) ubiquitinates a defense-related NAC transcription factor and is involved in defense signaling. New Phytol. 211(1):138-48. doi:10.1111/nph.13890
  • Paduch R, Trytek M, Krol SK, Kud J, Frant M, Kandefer-Szerszen M, Fiedurek J. 2016. Biological activity of terpene compounds produced by biotechnological methods. Pharm Biol25(1):1-12. doi:10.3109/13880209.2015.1103753

2013

  • Kud J, Zhao Z, Du X, Liu Y, Zhao Y, Xiao F. 2013. SGT1 interacts with the Prf resistance protein and is required for Prf accumulation and Prf-mediated defense signaling. Biochem Biophys Res Commun. 431(3):501-505. doi:10.1016/j.bbrc.2013.01.028
  • Huang W, Miao M, Kud J, Niu X, Ouyang B, Zhang J, Ye Z, Kuhl JC, Liu Y, Xiao F. 2013. SlNAC1, a stress-related transcription factor, is fine-tuned on both the transcriptional and the post-translational level. New Phytol. 197(4):1214-24. doi:10.1111/nph.12096