Search Results - "Benfey, P.N"

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  1. 1

    Tissue‐specific expression from CaMV 35S enhancer subdomains in early stages of plant development by Benfey, P.N., Ren, L., Chua, N.H.

    Published in The EMBO journal (01-06-1990)
    “…The cauliflower mosaic virus (CaMV) 35S enhancer is able to confer strong constitutive expression in plants. We have previously defined two domains within this…”
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  2. 2

    Characterization of zinc finger DNA-binding protein expressed specifically in Petunia petals and seedlings by Takatsuji, H, Mori, M, Benfey, P.N, Ren, L, Chua, N.H

    Published in The EMBO journal (1992)
    “…In Petunia, the expression of the 5-enolpyruvylshikimate-3-phosphate synthase gene (EPSPS) is tissue-specific and developmentally regulated. Nuclear extracts…”
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  3. 3

    Transcriptional control of tissue formation throughout root development by Moreno-Risueno, Miguel A., Sozzani, Rosangela, Yardımcı, Galip Gürkan, Petricka, Jalean J., Vernoux, Teva, Blilou, Ikram, Alonso, Jose, Winter, Cara M., Ohler, Uwe, Scheres, Ben, Benfey, Philip N.

    “…Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembryonic growth requires asymmetric divisions and the…”
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  4. 4

    Combinatorial and synergistic properties of CaMV 35S enhancer subdomains by Benfey, P.N., Ren, L., Chua, N.H.

    Published in The EMBO journal (01-06-1990)
    “…We have analyzed expression conferred by five subdomains of the cauliflower mosaic virus (CaMV) 35S enhancer in mature transgenic plants. Expression was…”
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  5. 5

    Spatiotemporal regulation of cell-cycle genes by SHORTROOT links patterning and growth by Benfey, P. N, Sozzani, R, Cui, H, Moreno-Risueno, M. A, Busch, W, Van Norman, J. M, Vernoux, T, Brady, S. M, Dewitte, W, Murray, J. A. H

    Published in Nature (London) (01-07-2010)
    “…The development of multicellular organisms relies on the coordinated control of cell divisions leading to proper patterning and growth. The molecular…”
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    Transcriptional and posttranscriptional regulation of transcription factor expression in Arabidopsis roots by Lee, J.Y, Colinas, J, Wang, J.Y, Mace, D, Ohler, U, Benfey, P.N

    “…Understanding how the expression of transcription factor (TF) genes is modulated is essential for reconstructing gene regulatory networks. There is increasing…”
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  9. 9

    Toward a systems analysis of the root by Benfey, P N

    “…During the past 20 years, our work on root development has been influenced by and has contributed to three biological approaches: molecular genetics, genomics,…”
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  10. 10

    Cloning of the mast cell protease, RMCP II. Evidence for cell-specific expression and a multi-gene family by Benfey, P.N., Yin, F.H., Leder, P.

    Published in The Journal of biological chemistry (15-04-1987)
    “…We have isolated, cloned, and characterized cDNA and genomic DNA corresponding to the mRNA and gene for the rat mast cell protease, RMCP II. The amino acid…”
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  11. 11

    Organization and cell differentiation in lateral roots of Arabidopsis thaliana by Malamy, J E, Benfey, P N

    Published in Development (Cambridge) (01-01-1997)
    “…Lateral root formation in plants involves the stimulation of mature pericycle cells to proliferate and redifferentiate to create a new organ. The simple…”
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  12. 12

    The GRAS gene family in Arabidopsis: sequence characterization and basic expression analysis of the SCARECROW‐LIKE genes by Pysh, Leonard D., Wysocka‐Diller, Joanna W., Camilleri, Christine, Bouchez, David, Benfey, Philip N.

    “…Summary Mutations at the SCARECROW (SCR) locus in Arabidopsis thaliana result in defective radial patterning in the root and shoot. The SCR gene product…”
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  13. 13

    Molecular analysis of SCARECROW function reveals a radial patterning mechanism common to root and shoot by Wysocka-Diller, J W, Helariutta, Y, Fukaki, H, Malamy, J E, Benfey, P N

    Published in Development (Cambridge) (01-02-2000)
    “…Mutation of the SCARECROW (SCR) gene results in a radial pattern defect, loss of a ground tissue layer, in the root. Analysis of the shoot phenotype of scr…”
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  14. 14

    Network building: transcriptional circuits in the root by Birnbaum, Kenneth, Benfey, Philip N

    Published in Current opinion in plant biology (01-10-2004)
    “…Genes that control cell fate in all major root tissues have been described in Arabidopsis and new candidates that pattern the root apical meristem have been…”
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  15. 15

    Root development in Arabidopsis: four mutants with dramatically altered root morphogenesis by BENFEY, P. N, LINSTEAD, P. J, ROBERTS, K, SCHIEFELBEIN, J. W, HAUSER, M.-T, AESCHBACHER, R. A

    Published in Development (Cambridge) (01-09-1993)
    “…A genetic analysis of root development in Arabidopsis thaliana has identified mutants that have abnormal morphogenesis. Four of these root morphogenesis…”
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  16. 16

    Beyond Arabidopsis. Translational biology meets evolutionary developmental biology by Irish, V.F, Benfey, P.N

    Published in Plant physiology (Bethesda) (01-06-2004)
    “…Developmental processes shape plant morphologies, which constitute important adaptive traits selected for during evolution. Identifying the genes that act in…”
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  17. 17

    Conditional root expansion mutants of Arabidopsis by Hauser, M T, Morikami, A, Benfey, P N

    Published in Development (Cambridge) (01-04-1995)
    “…Regulation of cell expansion is essential to the formation of plant organs. We have characterized 21 mutations, representing six loci, that cause abnormal cell…”
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  18. 18

    The cauliflower mosaic virus 35S promoter: combinatorial regulation of transcription in plants by Benfey, P.N. (The Rockefeller University, New York, NY), Chua, N.H

    “…Appropriate regulation of transcription in higher plants requires specific cis elements in the regulatory regions of genes and their corresponding trans-acting…”
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  19. 19

    Is the shoot a root with a view? by Benfey, Philip N

    Published in Current opinion in plant biology (01-02-1999)
    “…Recently, it has been shown that the same sets of genes act in both root and shoot to regulate cell fate and patterning. One gene cassette regulates epidermal…”
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    Site-specific mutations alter in vitro factor binding and change promoter expression pattern in transgenic plants by Lam, E. (The Rockefeller University, New York, NY), Benfey, P.N, Gilmartin, P.M, Fang, R.X, Chua, N.H

    “…The 35S promoter of cauliflower mosaic virus (CaMV) is able to confer high-level gene expression in most organs of transgenic plants. A cellular factor from…”
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