Marinus Pilon
Affiliations: | Colorado State University, Fort Collins, CO |
Area:
Molecular Biology, BiochemistryGoogle:
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Children
Sign in to add traineeJason Burkhead | grad student | 2003 | Colorado State |
Hong Ye | grad student | 2005 | Colorado State |
Christopher M. Cohu | grad student | 2009 | Colorado State |
Wiebke Tapken | grad student | 2012 | Colorado State |
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Publications
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Hunter C, Sun Z, Mansfield SD, et al. (2023) The effects of copper deficiency on lignification, xylem vessel structure, and hydraulic traits in hybrid poplar. Physiologia Plantarum. 175: e14006 |
Hunter C, Stewart JJ, Gleason SM, et al. (2022) Age Dependent Partitioning Patterns of Essential Nutrients Induced by Copper Feeding Status in Leaves and Stems of Poplar. Frontiers in Plant Science. 13: 930344 |
Hunter C, Ware MA, Gleason SM, et al. (2022) Recovery after deficiency: Systemic copper prioritization and partitioning in the leaves and stems of hybrid poplar. Tree Physiology |
Kroh GE, Pilon M. (2020) Micronutrient homeostasis and chloroplast iron protein expression is largely maintained in a chloroplast copper transporter mutant. Functional Plant Biology : Fpb |
Kroh GE, Pilon M. (2020) Regulation of Iron Homeostasis and Use in Chloroplasts. International Journal of Molecular Sciences. 21 |
Kroh GE, Pilon M. (2019) Connecting the negatives and positives of plant iron homeostasis. The New Phytologist |
Shahbaz M, Pilon M. (2019) Conserved Cu-MicroRNAs in Function in Copper Economy under Deficiency. Plants (Basel, Switzerland). 8 |
Andrés-Colás N, Carrió-Seguí A, Abdel-Ghany SE, et al. (2018) Expression of the Intracellular COPT3-Mediated Cu Transport Is Temporally Regulated by the TCP16 Transcription Factor. Frontiers in Plant Science. 9: 910 |
Jiang Y, Schiavon M, Lima LW, et al. (2018) Comparison of ATP sulfurylase 2 from selenium hyperaccumulator Stanleya pinnata and non-accumulator Stanleya elata reveals differential intracellular localization and enzyme activity levels. Biochimica Et Biophysica Acta |
Hantzis LJ, Kroh GE, Jahn CE, et al. (2017) A program for iron economy during deficiency targets specific Fe proteins. Plant Physiology |