Woei-Jiun Guo, Ph.D.
Affiliations: | 2005 | Purdue University, West Lafayette, IN, United States |
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Botany BiologyGoogle:
"Woei-Jiun Guo"Mean distance: (not calculated yet)
Parents
Sign in to add mentorPeter B. Goldsbrough | grad student | 2005 | Purdue | |
(Functional characterization of metallothionein gene family in Arabidopsis.) |
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Publications
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Wu YC, Yu CW, Chiu JY, et al. (2023) The AT-hook protein AHL29 promotes Bacillus subtilis colonization by suppressing SWEET2-mediated sugar retrieval in Arabidopsis roots. Plant, Cell & Environment |
Guo WJ, Pommerrenig B, Neuhaus HE, et al. (2023) Interaction between sugar transport and plant development. Journal of Plant Physiology. 288: 154073 |
Ko HY, Tseng HW, Ho LH, et al. (2022) Hexose translocation mediated by SlSWEET5b is required for pollen maturation in Solanum lycopersicum. Plant Physiology |
Ko HY, Ho LH, Neuhaus HE, et al. (2021) Transporter SlSWEET15 unloads sucrose from phloem and seed coat for fruit and seed development in tomato. Plant Physiology |
Ho LH, Lee YI, Hsieh SY, et al. (2020) GeSUT4 mediates sucrose import at the symbiotic interface for carbon allocation of heterotrophic Gastrodia elata (Orchidaceae). Plant, Cell & Environment |
Ho LH, Klemens PAW, Neuhaus HE, et al. (2019) SlSWEET1a is involved in glucose import to young leaves in tomato plants. Journal of Experimental Botany |
Chen HY, Huh JH, Yu YC, et al. (2015) The Arabidopsis vacuolar sugar transporter SWEET2 limits carbon sequestration from roots and restricts Pythium infection. The Plant Journal : For Cell and Molecular Biology |
R Benatti M, Yookongkaew N, Meetam M, et al. (2014) Metallothionein deficiency impacts copper accumulation and redistribution in leaves and seeds of Arabidopsis. The New Phytologist. 202: 940-51 |
Guo WJ, Nagy R, Chen HY, et al. (2014) SWEET17, a facilitative transporter, mediates fructose transport across the tonoplast of Arabidopsis roots and leaves. Plant Physiology. 164: 777-89 |
Grossmann G, Guo WJ, Ehrhardt DW, et al. (2011) The Rootchip: An integrated microfluidic chip for plant Science Plant Cell. 23: 4234-4240 |