Zhong Ruiqin | Department Of Plant Biology University Of Georgia
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概要
関連著者
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Ye Zheng-hua
Department Of Plant Biology University Of Georgia
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Zhong Ruiqin
Department Of Plant Biology University Of Georgia
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ZHONG Ruiqin
Department of Plant Biology, University of Georgia
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Zhong Ruiqin
Univ. Georgia Ga Usa
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Ye Zheng‐hua
Department Of Plant Biology University Of Georgia
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Lee Chanhui
Department Of Plant Biology University Of Georgia
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Teng Quincy
National Exposure Research Laboratory Us Environmental Protection Agency
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LEE Chanhui
Department of Plant Biology, University of Georgia
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HUANG Wenlin
National Exposure Research Laboratory, US Environmental Protection Agency
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Mccarthy Ryan
Department Of Plant Biology University Of Georgia
著作論文
- Molecular Characterization of PoGT8D and PoGT43B, Two Secondary Wall-Associated Glycosyltransferases in Poplar
- Overexpression of miR165 Affects Apical Meristem Formation, Organ Polarity Establishment and Vascular Development in Arabidopsis
- amphivasal vascular bundle 1, a Gain-of-Function Mutation of the IFL1/REV Gene, Is Associated with Alterations in the Polarity of Leaves, Stems and Carpels
- The Poplar GT8E and GT8F Glycosyltransferases are Functional Orthologs of Arabidopsis PARVUS Involved in Glucuronoxylan Biosynthesis
- Down-Regulation of PoGT47C Expression in Poplar Results in a Reduced Glucuronoxylan Content and an Increased Wood Digestibility by Cellulase
- The F8H Glycosyltransferase is a Functional Paralog of FRA8 Involved in Glucuronoxylan Biosynthesis in Arabidopsis
- Molecular and Biochemical Characterization of Three WD-Repeat-Domain-containing Inositol Polyphosphate 5-Phosphatases in Arabidopsis thaliana
- The Poplar MYB Transcription Factors, PtrMYB3 and PtrMYB20, are Involved in the Regulation of Secondary Wall Biosynthesis
- MYB83 Is a Direct Target of SND1 and Acts Redundantly with MYB46 in the Regulation of Secondary Cell Wall Biosynthesis in Arabidopsis
- The PARVUS Gene is Expressed in Cells Undergoing Secondary Wall Thickening and is Essential for Glucuronoxylan Biosynthesis