Search Results - "Lee, Chanhui"

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  1. 1

    Global Analysis of Direct Targets of Secondary Wall NAC Master Switches in Arabidopsis by Zhong, Ruiqin, Lee, Chanhui, Ye, Zheng-Hua

    Published in Molecular plant (01-11-2010)
    “…We report the genome-wide analysis of direct target genes of SND1 and VND7, two Arabidopsis thaliana NAC domain transcription factors that are master…”
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  2. 2

    Evolutionary conservation of the transcriptional network regulating secondary cell wall biosynthesis by Zhong, Ruiqin, Lee, Chanhui, Ye, Zheng-Hua

    Published in Trends in plant science (01-11-2010)
    “…The ability to make secondary cell walls was a pivotal step for vascular plants in their conquest of dry land. Here, we review recent molecular and genetic…”
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  3. 3

    MYB58 and MYB63 Are Transcriptional Activators of the Lignin Biosynthetic Pathway during Secondary Cell Wall Formation in Arabidopsis by Zhou, Jianli, Lee, Chanhui, Zhong, Ruiqin, Ye, Zheng-Hua

    Published in The Plant cell (01-01-2009)
    “…It has previously been shown that SECONDARY WALL-ASSOCIATED NAC DOMAIN PROTEIN1 (SND1) is a key transcription factor regulating secondary cell wall formation,…”
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  4. 4

    Functional Characterization of Poplar Wood-Associated NAC Domain Transcription Factors by Zhong, Ruiqin, Lee, Chanhui, Ye, Zheng-Hua

    Published in Plant physiology (Bethesda) (01-02-2010)
    “…Wood is the most abundant biomass produced by land plants. Dissection of the molecular mechanisms underlying the transcriptional regulation of wood formation…”
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  5. 5

    Battery of Transcription Factors Involved in the Regulation of Secondary Cell Wall Biosynthesis in Arabidopsis by Zhong, Ruiqin, Lee, Chanhui, Zhou, Jianli, McCarthy, Ryan L, Ye, Zheng-Hua

    Published in The Plant cell (01-10-2008)
    “…SECONDARY WALL-ASSOCIATED NAC DOMAIN PROTEIN1 (SND1) is a master transcriptional switch activating the developmental program of secondary wall biosynthesis…”
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  6. 6

    Dissection of the Transcriptional Program Regulating Secondary Wall Biosynthesis during Wood Formation in Poplar by Zhong, Ruiqin, McCarthy, Ryan L., Lee, Chanhui, Ye, Zheng-Hua

    Published in Plant physiology (Bethesda) (01-11-2011)
    “…Wood biomass is mainly made of secondary cell walls; hence, elucidation of the molecular mechanisms underlying the transcriptional regulation of secondary wall…”
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  7. 7

    rice RING E3 ligase, OsCTR1, inhibits trafficking to the chloroplasts of OsCP12 and OsRP1, and its overexpression confers drought tolerance in Arabidopsis by LIM, SUNG DON, LEE, CHANHUI, JANG, CHEOL SEONG

    Published in Plant, cell and environment (01-05-2014)
    “…Plant growth under low water availability adversely affects many key processes with morphological, physiological, biochemical and molecular consequences. Here,…”
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  8. 8

    Design of high-performance entangling logic in silicon quantum dot systems with Bayesian optimization by Kang, Ji-Hoon, Yoon, Taehyun, Lee, Chanhui, Lim, Sungbin, Ryu, Hoon

    Published in Scientific reports (02-05-2024)
    “…Device engineering based on computer-aided simulations is essential to make silicon (Si) quantum bits (qubits) be competitive to commercial platforms based on…”
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  9. 9

    Harpins, Multifunctional Proteins Secreted by Gram-Negative Plant-Pathogenic Bacteria by CHOI, Min-Seon, WOOKI KIM, CHANHUI LEE, OH, Chang-Sik

    Published in Molecular plant-microbe interactions (01-10-2013)
    “…Harpins are glycine-rich and heat-stable proteins that are secreted through type III secretion system in gram-negative plant-pathogenic bacteria. Many studies…”
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  10. 10

    Blue light and NAA treatment significantly improve rooting on single leaf-bud cutting of Chrysanthemum via upregulated rooting-related genes by Gil, Chan Saem, Jung, Ho Young, Lee, Chanhui, Eom, Seok Hyun

    Published in Scientia horticulturae (15-12-2020)
    “…•Blue light application overcomes poor rooting in low positioned leaf-bud cuttings.•CmLBD1 was significantly increased at earlier root formation by…”
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  11. 11

    Genome-wide identification and expression analysis of rice pectin methylesterases: Implication of functional roles of pectin modification in rice physiology by Jeong, Ho Young, Nguyen, Hong Phuong, Lee, Chanhui

    Published in Journal of plant physiology (01-07-2015)
    “…Pectin, which is enriched in primary cell walls and middle lamellae, is an essential polysaccharide in all higher plants. Homogalacturonans (HGA), a major form…”
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  12. 12

    Arabidopsis GUX proteins are glucuronyltransferases responsible for the addition of glucuronic acid side chains onto xylan by Lee, Chanhui, Teng, Quincy, Zhong, Ruiqin, Ye, Zheng-Hua

    Published in Plant and cell physiology (01-07-2012)
    “…Xylan, the second most abundant cell wall polysaccharide, is composed of a linear backbone of β-(1,4)-linked xylosyl residues that are often substituted with…”
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  13. 13

    Transcriptional Activation of Secondary Wall Biosynthesis by Rice and Maize NAC and MYB Transcription Factors by Zhong, Ruiqin, Lee, Chanhui, McCarthy, Ryan L., Reeves, Cromwell K., Jones, Evan G., Ye, Zheng-Hua

    Published in Plant and cell physiology (01-10-2011)
    “…The bulk of grass biomass potentially useful for cellulose-based biofuel production is the remains of secondary wall-containing sclerenchymatous fibers. Hence,…”
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  14. 14

    Isoflavone accumulation and the metabolic gene expression in response to persistent UV-B irradiation in soybean sprouts by Lim, You Jin, Jeong, Ho Young, Gil, Chan Saem, Kwon, Soon-Jae, Na, Jong Kuk, Lee, Chanhui, Eom, Seok Hyun

    Published in Food chemistry (15-01-2020)
    “…•Six of 12 isoflavones in soybean sprouts were increased by UV-B irradiation.•Malonyl genistin did not increase in dark but did in the sprouts grown under…”
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  15. 15

    Pigmentation and Flavonoid Metabolite Diversity in Immature 'Fuji' Apple Fruits in Response to Lights and Methyl Jasmonate by Ryu, Jung-A, Duan, Shucheng, Jeong, Ho-Young, Lee, Chanhui, Kang, In-Kyu, Eom, Seok Hyun

    “…Artificial pigmentation of apple fruits has been intensely evaluated to generate less pigmented red apples, which are profitable because of the changes in…”
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  16. 16

    Arabidopsis Family GT43 Glycosyltransferases Form Two Functionally Nonredundant Groups Essential for the Elongation of Glucuronoxylan Backbone by Lee, Chanhui, Teng, Quincy, Huang, Wenlin, Zhong, Ruiqin, Ye, Zheng-Hua

    Published in Plant physiology (Bethesda) (01-06-2010)
    “…There exist four members of family GT43 glycosyltransferases in the Arabidopsis (Arabidopsis thaliana) genome, and mutations of two of them, IRX9 and IRX14,…”
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  17. 17

    Molecular Dissection of Xylan Biosynthesis during Wood Formation in Poplar by Lee, Chanhui, Teng, Quincy, Zhong, Ruiqin, Ye, Zheng-Hua

    Published in Molecular plant (01-07-2011)
    “…Xylan, being the second most abundant polysaccharide in dicot wood, is considered to be one of the factors contributing to wood biomass recalcitrance for…”
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  18. 18

    Arabidopsis Family GT43 Members are Xylan Xylosyltransferases Required for the Elongation of the Xylan Backbone by Lee, Chanhui, Zhong, Ruiqin, Ye, Zheng-Hua

    Published in Plant and cell physiology (01-01-2012)
    “…Xylan is the second most abundant polysaccharide in plant biomass targeted for biofuel production. Therefore, it is imperative to understand the biochemical…”
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  19. 19

    The Four Arabidopsis REDUCED WALL ACETYLATION Genes are Expressed in Secondary Wall-Containing Cells and Required for the Acetylation of Xylan by Lee, Chanhui, Teng, Quincy, Zhong, Ruiqin, Ye, Zheng-Hua

    Published in Plant and cell physiology (01-08-2011)
    “…Xylan is one of the major polysaccharides in cellulosic biomass, and understanding the mechanisms underlying xylan biosynthesis will potentially help us design…”
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  20. 20

    CRISPR-Knockout of CSE Gene Improves Saccharification Efficiency by Reducing Lignin Content in Hybrid Poplar by Jang, Hyun-A, Bae, Eun-Kyung, Kim, Min-Ha, Park, Su-Jin, Choi, Na-Young, Pyo, Seung-Won, Lee, Chanhui, Jeong, Ho-Young, Lee, Hyoshin, Choi, Young-Im, Ko, Jae-Heung

    “…Caffeoyl shikimate esterase (CSE) has been shown to play an important role in lignin biosynthesis in plants and is, therefore, a promising target for…”
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