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Professor Anne Mie Emons
Wageningen University, Laboratory of Plant Cell Biology
Arboretumlaan 4, 6703 BD Wageningen, The Netherlands
Tel: +31-317-484329, +31-317-482155; Fax: +31-317-485005
E-mail: annemie.emons@wur.nl
http://www.pcb.wur.nl/UK/People/Faculty/Anne+Mie+Emons/?WBCMODE=PresentationUnpublished
Area of expertise: Cell wall formation; cytoskeleton; modeling; rhyzobium-legume interaction; space sciences
Co-editor until: July 31, 2010 |
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- Gutierrez R, Lindeboom JJ, Paredez AR, Emons AM, Ehrhardt DW (2009) Arabidopsis cortical microtubules position cellulose synthase delivery to the plasma membrane and interact with cellulose synthase trafficking compartments. Nat. Cell Biol. 11, 797-806.
- Sieberer BJ, Kieft H, Franssen-Verheijen T, Emons AM, Vos JW (2009) Cell proliferation, cell shape, and microtubule and cellulose microfibril organization of tobacco BY-2 cells are not altered by exposure to near weightlessness in space. Planta 230,1129-1140.
- Twumasi P, Schel JH, van Ieperen W, Woltering E, Van Kooten O, Emons AM (2009) Establishing in vitro Zinnia elegans cell suspension culture with high tracheary element differentiation. Cell Biol. Int. 33, 524-533.
- Esseling-Ozdoba A, Houtman D, VAN Lammeren AA, Eiser E, Emons AM (2008) Hydrodynamic flow in the cytoplasm of plant cells. J. Microsc. 231, 274-283.
- Esseling-Ozdoba A, Vos JW, van Lammeren AA, Emons AM (2008) Synthetic lipid (DOPG) vesicles accumulate in the cell plate region but do not fuse. Plant Physiol. 147, 1699-1709.
- Ketelaar T, Galway ME, Mulder BM, Emons AM (2008) Rates of exocytosis and endocytosis in Arabidopsis root hairs and pollen tubes. J. Microsc. 231, 265-273.
- Lindeboom J, Mulder BM, Vos JW, Ketelaar T, Emons AM (2008) Cellulose microfibril deposition: coordinated activity at the plant plasma membrane. J. Microsc. 231, 192-200.
- Emons AM, Höfte H, Mulder BM (2007) Microtubules and cellulose microfibrils: how intimate is their relationship? Trends Plant Sci. 12, 279-281.
- van der Honing HS, Emons AM, Ketelaar T (2007) Actin based processes that could determine the cytoplasmic architecture of plant cells. Biochim. Biophys. Acta 1773, 604-614.
- Houtman D, Pagonabarraga I, Lowe CP, Esseling-Ozdoba A, Emons AMC, Eiser E (2007) Hydrodynamic flow caused by active transport along cytoskeletal elements. Europhys. Lett. 78, 1-5.
- Cosentino Lagomarsino M, Tanase C, Vos JW, Emons AM, Mulder BM, Dogterom M (2007) Microtubule organization in three-dimensional confined geometries: evaluating the role of elasticity through a combined in vitro and modeling approach. Biophys. J. 92, 1046-1057.
- Dauphin A, De Ruijter NC, Emons AM, Legué V (2006) Actin organization during eucalyptus root hair development and its response to fungal hypaphorine. Plant Biol. (Stuttg) 8, 204-211.
- Ageeva MV, Petrovská B, Kieft H, Sal'nikov VV, Snegireva AV, van Dam JE, van Veenendaal WL, Emons AM, Gorshkova TA, van Lammeren AA (2005) Intrusive growth of flax phloem fibers is of intercalary type. Planta 222, 565-574.
- Sieberer BJ, Timmers AC, Emons AM (2005) Nod factors alter the microtubule cytoskeleton in Medicago truncatula root hairs to allow root hair reorientation. Mol. Plant Microbe Interact. 18, 1195-1204.
- Esseling JJ, Emons AM (2004) Dissection of Nod factor signalling in legumes: cell biology, mutants and pharmacological approaches. J. Microsc. 214, 104-113.
- Esseling JJ, Lhuissier FG, Emons AM (2004) A nonsymbiotic root hair tip growth phenotype in NORK-mutated legumes: implications for nodulation factor-induced signaling and formation of a multifaceted root hair pocket for bacteria. 16, 933-944.
- Geitmann A, Franklin-Tong VE, Emons AC (2004) The self-incompatibility response in Papaver rhoeas pollen causes early and striking alterations to organelles. Cell Death Differ. 11, 812-822.
- Geitmann A, McConnaughey W, Lang-Pauluzzi I, Franklin-Tong VE, Emons AM (2004) Cytomechanical properties of papaver pollen tubes are altered after self-incompatibility challenge. Biophys. J. 86, 3314-3323.
- Mulder B, Schel J, Emons AM (2004) How the geometrical model for plant cell wall formation enables the production of a random texture. Cellulose 11, 395-401.
- Vos JW, Dogterom M, Emons AM (2004) Microtubules become more dynamic but not shorter during preprophase band formation: a possible "search-and-capture" mechanism for microtubule translocation. Cell Motil. Cytoskeleton 57, 246-258.
- Esseling JJ, Lhuissier FG, Emons AM (2003) Nod factor-induced root hair curling: continuous polar growth towards the point of nod factor application. Plant Physiol. 132, 1982-1988.
- Ketelaar T, de Ruijter NC, Emons AM (2003) Unstable F-actin specifies the area and microtubule direction of cell expansion in Arabidopsis root hairs. Plant Cell 15, 285-292.
- van Lammeren A, Ageeva M, Kieft H, Lhuissier F, Vos J, Gorshkova T, Emons A (2003) Configuration of the microtubule cytoskeleton in elongating fibers of flax (Linum usitatissimum L). Cell Biol. Int. 27, 225.
- Vos JW, Sieberer B, Timmers AC, Emons AM (2003) Microtubule dynamics during preprophase band formation and the role of endoplasmic microtubules during root hair elongation. Cell Biol. Int. 27, 295.
- Emons AMC, Schel JHN, Mulder B (2002) The geometrical model for microfibril deposition and the influence of the cell wall matrix. Plant Biol. 4, 22-26.
- Ketelaar T, Faivre-Moskalenko C, Esseling JJ, de Ruijter NC, Grierson CS, Dogterom M, Emons AM (2002)
Positioning of nuclei in Arabidopsis root hairs: an actin-regulated process of tip growth. Plant Cell 14, 2941-2955.
- Sieberer BJ, Timmers AC, Lhuissier FG, Emons AM (2002)
Endoplasmic microtubules configure the subapical cytoplasm and are required for fast growth of Medicago truncatula root hairs.
Plant Physiol. 130, 977-988.
- Ketelaar MJ, Emons AMC (2001) The cytoskeleton in plant cell growth: lessons from root hairs. New Phytol. 152, 409-418.
- Lhuissier FGP, Ruijter NCA de, Sieberer BJ, Esseling JJ, Emons AMC (2001) Time course of cell biological events evoked in legume root hairs by Rhizobium nod factors: state of the art. Ann. Bot. 87, 289-302.
- Mulder BM, Emons AM (2001) A dynamical model for plant cell wall architecture formation. J. Math. Biol. 42, 261-289.
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