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Yuhong Tang

Researcher at Oak Ridge National Laboratory

Publications -  112
Citations -  7478

Yuhong Tang is an academic researcher from Oak Ridge National Laboratory. The author has contributed to research in topics: Medicago truncatula & Arabidopsis. The author has an hindex of 45, co-authored 109 publications receiving 6367 citations. Previous affiliations of Yuhong Tang include United States Department of Energy.

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A gene expression atlas of the model legume Medicago truncatula.

TL;DR: A gene expression atlas is generated that provides a global view of gene expression in all major organ systems of this species, with special emphasis on nodule and seed development, and indicates that phylogenetic analysis alone is insufficient to predict the function of orthologs in different species.
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Medicago truncatula and Glomus intraradices gene expression in cortical cells harboring arbuscules in the arbuscular mycorrhizal symbiosis

TL;DR: Analysis of gene expression in the colonized cortical cell revealed up-regulation of a lysine motif (LysM)-receptor like kinase, members of the GRAS transcription factor family and a symbiosis-specific ammonium transporter that is a likely candidate for mediating ammonium transport in the AM symbiosis.
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Functional characterization of the switchgrass (Panicum virgatum) R2R3-MYB transcription factor PvMYB4 for improvement of lignocellulosic feedstocks

TL;DR: PVMYB4-OX transgenic switchgrass lines can be used as potential germplasm for improvement of lignocellulosic feedstocks and provide a platform for further understanding gene regulatory networks underlying switchgrass cell wall recalcitrance.
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MATE2 Mediates Vacuolar Sequestration of Flavonoid Glycosides and Glycoside Malonates in Medicago truncatula

TL;DR: The functional characterization of a multidrug and toxin extrusion transporter (MATE2), from Medicago truncatula, is reported, which transports glycosylated flavonoids into the vacuole, showing higher transport efficiency with anthocyanins than other flavonoid glycosides, and an increase in transport efficiency for malonylated Flavonoid glucosides.