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La ricerca find articoli where authors phrase all words ' Bisseling, T' sort by level,fasc_key/DESCEND, pagina_ini_num/ASCEND ha restituito 61 riferimenti
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    1. Kulikova, O; Gualtieri, G; Geurts, R; Kim, DJ; Cook, D; Huguet, T; de Jong, JH; Fransz, PF; Bisseling, T
      Integration of the FISH pachytene and genetic maps of Medicago truncatula

      PLANT JOURNAL
    2. Compaan, B; Yang, WC; Bisseling, T; Franssen, H
      ENOD40 expression in the pericycle precedes cortical cell division in Rhizobium-legume interaction and the highly conserved internal region of the gene does not encode a peptide

      PLANT AND SOIL
    3. Franssen, HJ; Bisseling, T
      Peptide signaling in plants

      PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
    4. Goedhart, J; Hink, MA; Visser, AJWG; Bisseling, T; Gadella, TWJ
      In vivo fluorescence correlation microscopy (FCM) reveals accumulation andimmobilization of Nod factors in root hair cell walls

      PLANT JOURNAL
    5. Laplaze, L; Duhoux, E; Franche, C; Frutz, T; Svistoonoff, S; Bisseling, T; Bogusz, D; Pawlowski, K
      Casuarina glauca prenodule cells display the same differentiation as the corresponding nodule cells

      MOLECULAR PLANT-MICROBE INTERACTIONS
    6. Gualtieri, G; Bisseling, T
      The evolution of nodulation

      PLANT MOLECULAR BIOLOGY
    7. Fransz, PF; Armstrong, S; de Jong, JH; Parnell, LD; van Drunen, G; Dean, C; Zabel, P; Bisseling, T; Jones, GH
      Integrated cytogenetic map of chromosome arm 4S of A-thaliana: Structural organization of heterochromatic knob and centromere region

      CELL
    8. Jahraus, A; Bisseling, T
      Rhizobium-induced plant gene expression in root hairs

      ROOT HAIRS: CELL AND MOLECULAR BIOLOGY
    9. Bisseling, T
      The role of plant peptides in intercellular signalling

      CURRENT OPINION IN PLANT BIOLOGY
    10. Ausubel, F; Bisseling, T
      Pathogenesis and symbiosis: two sides of the same coin that should be united by a common web-accessible database

      CURRENT OPINION IN PLANT BIOLOGY
    11. Gadella, TWJ; van der Krogt, GNM; Bisseling, T
      GFP-based FRET microscopy in living plant cells

      TRENDS IN PLANT SCIENCE
    12. Schell, J; Bisseling, T; Dulz, M; Franssen, H; Fritze, K; John, M; Kleinow, T; Lessnick, A; Miklashevichs, E; Pawlowski, K; Rohrig, H; van de Sande, K; Schmidt, J; Steinbiss, HH; Stoll, M
      Re-evaluation of phytohormone-independent division of tobacco protoplast-derived cells

      PLANT JOURNAL
    13. Miller, DD; de Ruijter, NCA; Bisseling, T; Emons, AMC
      The role of actin in root hair morphogenesis: studies with lipochito-oligosaccharide as a growth stimulator and cytochalasin as an actin perturbing drug

      PLANT JOURNAL
    14. de Ruijter, NCA; Bisseling, T; Emons, AMC
      Rhizobium Nod factors induce an increase in sub-apical fine bundles of actin filaments in Vicia sativa root hairs within minutes

      MOLECULAR PLANT-MICROBE INTERACTIONS
    15. Albrecht, C; Geurts, R; Bisseling, T
      Legume nodulation and mycorrhizae formation two extremes in host specificity meet

      EMBO JOURNAL
    16. Goedhart, J; Rohrig, H; Hink, MA; van Hoek, A; Visser, AJWG; Bisseling, T; Gadella, TWJ
      Nod factors integrate spontaneously in biomembranes and transfer rapidly between membranes and to root hairs, but transbilayer flip-flop does not occur

      BIOCHEMISTRY
    17. ALBRECHT C; GEURTS R; LAPEYRIE F; BISSELING T
      ENDOMYCORRHIZAE AND RHIZOBIAL NOD FACTORS BOTH REQUIRE SYM8 TO INDUCETHE EXPRESSION OF THE EARLY NODULIN GENES PSENOD5 AND PSENOD12A

      Plant journal
    18. DERUIJTER NCA; ROOK MB; BISSELING T; EMONS AMC
      LIPOCHITO-OLIGOSACCHARIDES RE-INITIATE ROOT HAIR TIP GROWTH IN VICIA-SATIVA WITH HIGH-CALCIUM AND SPECTRIN-LIKE ANTIGEN AT THE TIP

      Plant journal
    19. VLASSAK KM; LUYTEN E; VERRETH C; VANRHIJN P; BISSELING T; VANDERLEYDEN J
      THE RHIZOBIUM SP. BR816 NODO GENE CAN FUNCTION AS A DETERMINANT FOR NODULATION OF LEUCAENA-LEUCOCEPHALA, PHASEOLUS-VULGARIS, AND TRIFOLIUM-REPENS BY A DIVERSITY OF RHIZOBIUM SPP

      Molecular plant-microbe interactions
    20. OVTSYNA AO; GEURTS R; BISSELING T; LUGTENBERG BJJ; TIKHONOVICH IA; SPAINK HP
      RESTRICTION OF HOST-RANGE BY THE SYM2 ALLELE OF AFGHAN PEA IS NONSPECIFIC FOR THE TYPE OF MODIFICATION AT THE REDUCING TERMINUS OF NODULATION SIGNALS

      Molecular plant-microbe interactions
    21. MARTINEZABARCA F; HERRERACERVERA JA; BUENO P; SANJUAN J; BISSELING T; OLIVARES J
      INVOLVEMENT OF SALICYLIC-ACID IN THE ESTABLISHMENT OF THE RHIZOBIUM-MELILOTI - ALFALFA SYMBIOSIS

      Molecular plant-microbe interactions
    22. LAZAROWITZ SG; BISSELING T
      PLANT DEVELOPMENT FROM THE CELLULAR PERSPECTIVE - INTEGRATING THE SIGNALS

      The Plant cell
    23. HEIDSTRA R; YANG WC; YALCIN Y; PECK S; EMONS AM; VANKAMMEN A; BISSELING T
      ETHYLENE PROVIDES POSITIONAL INFORMATION ON CORTICAL CELL-DIVISION BUT IS NOT INVOLVED IN NOD FACTOR-INDUCED ROOT HAIR TIP GROWTH IN RHIZOBIUM-LEGUME INTERACTION

      Development
    24. HEIDSTRA R; NILSEN G; MARTINEZABARCA F; VANKAMMEN A; BISSELING T
      NOD FACTOR-INDUCED EXPRESSION OF LEGHEMOGLOBIN TO STUDY THE MECHANISMOF NH4NO3 INHIBITION ON ROOT HAIR DEFORMATION

      Molecular plant-microbe interactions
    25. GEURTS R; HEIDSTRA R; HADRI AE; DOWNIE JA; FRANSSEN H; VANKAMMEN A; BISSELING T
      SYM2 OF PEA IS INVOLVED IN A NODULATION FACTOR-PERCEPTION MECHANISM THAT CONTROLS THE INFECTION PROCESS IN THE EPIDERMIS

      Plant physiology
    26. GUAN CH; AKKERMANS ADL; VANKAMMEN A; BISSELING T; PAWLOWSKI K
      AG13 IS EXPRESSED IN ALNUS-GLUTINOSA NODULES IN INFECTED-CELLS DURINGENDOSYMBIONT DEGRADATION AND IN THE NODULE PERICYCLE

      Physiologia Plantarum
    27. GADELLA TWJ; VEREB G; HADRI AE; ROHRIG H; SCHMIDT J; JOHN M; SCHELL J; BISSELING T
      MICROSPECTROSCOPIC IMAGING OF NODULATION FACTOR-BINDING SITES ON LIVING VICIA-SATIVA ROOTS USING A NOVEL BIOACTIVE FLUORESCENT NODULATION FACTOR

      Biophysical journal
    28. GUAN CH; WOLTERS DJ; VANDIJK C; AKKERMANS ADL; VANKAMMEN A; BISSELING T; PAWLOWSKI K
      GENE-EXPRESSION IN INEFFECTIVE ACTINORHIZAL NODULES OF ALNUS-GLUTINOSA

      Acta botanica gallica
    29. RIBEIRO A; PRAEKELT U; AKKERMANS ADL; MEACOCK PA; VANKAMMEN A; BISSELING T; PAWLOWSKI K
      IDENTIFICATION OF AGTHI1, WHOSE PRODUCT IS INVOLVED IN BIOSYNTHESIS OF THE THIAMINE PRECURSOR THIAZOLE, IN ACTINORHIZAL NODULES OF ALNUS-GLUTINOSA

      Plant journal
    30. GUAN CG; RIBEIRO A; AKKERMANS ADL; JING YX; VANKAMMEN A; BISSELING T; PAWLOSKI K
      NITROGEN-METABOLISM IN ACTINORHIZAL NODULES OF ALNUS-GLUTINOSA - EXPRESSION OF GLUTAMINE-SYNTHETASE AND ACETYLORNITHINE TRANSAMINASE

      Plant molecular biology
    31. CHRISTIANSEN H; HANSEN AC; VIJN I; PALLISGAARD N; LARSEN K; YANG WC; BISSELING T; MARCKER KA; JENSEN EO
      A NOVEL TYPE OF DNA-BINDING PROTEIN INTERACTS WITH A CONSERVED SEQUENCE IN AN EARLY NODULIN ENOD12 PROMOTER

      Plant molecular biology
    32. KOZIK A; MATVIENKO M; SCHERES B; PARUVANGADA VG; BISSELING T; VANKAMMEN A; ELLIS THN; LARUE T; WEEDEN N
      THE PEA EARLY NODULIN GENE PSENOD7 MAPS IN THE REGION OF LINKAGE GROUP-I CONTAINING SYM2 AND LEGHEMOGLOBIN

      Plant molecular biology
    33. VANDESANDE K; PAWLOWSKI K; CZAJA I; WIENEKE U; SCHELL J; SCHMIDT J; WALDEN R; MATVIENKO M; WELLINK J; VANKAMMEN A; FRANSSEN H; BISSELING T
      MODIFICATION OF PHYTOHORMONE RESPONSE BY A PEPTIDE ENCODED BY ENOD40 OF LEGUMES AND A NONLEGUME

      Science
    34. HEIDSTRA R; BISSELING T
      NOD FACTOR-INDUCED HOST RESPONSES AND MECHANISMS OF NOD FACTOR PERCEPTION

      New phytologist
    35. VANGHELUE M; RIBEIRO A; SOLHEIM B; AKKERMANS ADL; BISSELING T; PAWLOWSKI K
      SUCROSE SYNTHASE AND ENOLASE EXPRESSION IN ACTINORHIZAL NODULES OF ALNUS-GLUTINOSA - COMPARISON WITH LEGUME NODULES

      MGG. Molecular & general genetics
    36. MYLONA P; PAWLOWSKI K; BISSELING T
      SYMBIOTIC NITROGEN-FIXATION

      The Plant cell
    37. RIBEIRO A; AKKERMANS ADL; VANKAMMEN A; BISSELING T; PAWLOWSKI K
      A NODULE-SPECIFIC GENE ENCODING A SUBTILISIN-LIKE PROTEASE IS EXPRESSED IN EARLY STAGES OF ACTINORHIZAL NODULE DEVELOPMENT

      The Plant cell
    38. FRANSSEN H; MYLONA P; PAWLOWSKI K; VANDESANDE K; HEIDSTRA R; GEURTS R; KOZIK A; MATVIENKO M; YANG WC; HADRI AE; MARTINEZABARCA F; BISSELING T
      PLANT GENES INVOLVED IN ROOT-NODULE DEVELOPMENT ON LEGUMES

      Philosophical transactions-Royal Society of London. Biological sciences
    39. VIJN I; MARTINEZABARCA F; YANG WC; DASNEVES L; VANBRUSSEL A; VANKAMMEN A; BISSELING T
      EARLY NODULIN GENE-EXPRESSION DURING NOD FACTOR-INDUCED PROCESSES IN VICIA-SATIVA

      Plant journal
    40. BRITO B; PALACIOS JM; IMPERIAL J; RUIZARGUESO T; YANG WC; BISSELING T; SCHMITT H; KERL V; BAUER T; KOKOTEK W; LOTZ W
      TEMPORAL AND SPATIAL COEXPRESSION OF HYDROGENASE AND NITROGENASE GENES FROM RHIZOBIUM-LEGUMINOSARUM BV VICIAE IN PEA (PISUM-SATIVUM L) ROOT-NODULES

      Molecular plant-microbe interactions
    41. BISSELING T; FRANSSEN H; HIRT H; MATVIEAKO M; PAWLOWSKI K; VANDESANDE K; WALDEN R; YANG WC
      REACTIVATION OF MITOTIC-ACTIVITY IN ROOT CORTICAL-CELLS BY RHIZOBIUM LIPO-OLIGOSACCHARIDES

      Journal of cellular biochemistry
    42. KOZIK A; HEIDSTRA R; HORVATH B; KULIKOVA O; TIKHONOVICH I; ELLIS THN; VANKAMMEN A; LIE TA; BISSELING T
      PEA LINES CARRYING SYM1 OR SYM2 CAN BE NODULATED BY RHIZOBIUM STRAINSCONTAINING NODX - SYML AND SYM2 ARE ALLELIC

      PLANT SCIENCE
    43. VIJN I; CHRISTIANSEN H; LAURIDSEN P; KARDAILSKY I; QUANDT HJ; BROER I; DRENTH J; JENSEN EO; VANKAMMEN A; BISSELING T
      A 200 BP REGION OF THE PEA ENOD12 PROMOTER IS SUFFICIENT FOR NODULE-SPECIFIC AND NOD FACTOR-INDUCED EXPRESSION

      Plant molecular biology
    44. VIJN I; YANG WC; PALLISGARD N; JENSEN EO; VANKAMMEN A; BISSELING T
      VSENOD5, VSENOD12 AND VSENOD40 EXPRESSION DURING RHIZOBIUM-INDUCED NODULE FORMATION ON VICIA-SATIVA ROOTS

      Plant molecular biology
    45. BIALEK U; SKORUPSKA A; YANG WC; BISSELING T; VANLAMMEREN AAM
      DISTURBED GENE-EXPRESSION AND BACTEROID DEVELOPMENT IN TRIFOLIUM-PRATENSE ROOT-NODULES INDUCED BY A TN5 MUTANT OF RHIZOBIUM-LEGUMINOSARUM BV TRIFOLII DEFECTIVE IN EXOPOLYSACCHARIDE SYNTHESIS

      Planta
    46. CAMPOS F; CARSOLIO C; KUIN H; BISSELING T; ROCHASOSA M; SANCHEZ F
      CHARACTERIZATION AND GENE-EXPRESSION OF NODULIN NPV30 FROM COMMON BEAN

      Plant physiology
    47. PAWLOWSKI K; AKKERMANS ADL; VANKAMMEN A; BISSELING T
      EXPRESSION OF FRANKIA NIF GENES IN NODULES OF ALNUS-GLUTINOSA

      Plant and soil
    48. ROUSSIS A; VANDESANDE K; PAPADOPOULOU K; DRENTH J; BISSELING T; FRANSSEN H; KATINAKIS P
      CHARACTERIZATION OF THE SOYBEAN GENE GMENOD40-2

      Journal of Experimental Botany
    49. YANG WC; DEBLANK C; MESKIENE I; HIRT H; BAKKER J; VANKAMMEN A; FRANSSEN H; BISSELING T
      RHIZOBIUM NOD FACTORS REACTIVATE THE CELL-CYCLE DURING INFECTION AND NODULE PRIMORDIUM FORMATION, BUT THE CYCLE IS ONLY COMPLETED IN PRIMORDIUM FORMATION

      The Plant cell
    50. YANG WC; DEBLANK C; MESKIENE I; HIRT H; BAKKER J; VANKAMMEN A; FRANSSEN H; BISSELING T
      RHIZOBIUM NOD FACTORS REACTIVATE THE CELL-CYCLE DURING INFECTION AND NODULE PRIMORDIUM FORMATION, BUT THE CYCLE IS ONLY COMPLETED IN PRIMORDIUM FORMATION

      The Plant cell
    51. DEMAAGD RA; YANG WC; ROO LGD; MULDERS IHM; ROEST HP; SPAINK HP; BISSELING T; LUGTENBERG BJJ
      DOWN-REGULATION OF EXPRESSION OF THE RHIZOBIUM-LEGUMINOSARUM OUTER-MEMBRANE PROTEIN GENE ROPA OCCURS ABRUPTLY IN INTERZONE II-III OF PEA NODULES AND CAN BE UNCOUPLED FROM NIF GENE ACTIVATION

      Molecular plant-microbe interactions
    52. MYLONA P; MOERMAN M; YANG WC; GLOUDEMANS T; VANDEKERCKHOVE J; VANKAMMEN A; BISSELING T; FRANSSEN HJ
      THE ROOT EPIDERMIS-SPECIFIC PEA GENE RH2 IS HOMOLOGOUS TO A PATHOGENESIS-RELATED GENE

      Plant molecular biology
    53. MATVIENKO M; VANDESANDE K; YANG WC; VANKAMMEN A; BISSELING T; FRANSSEN H
      COMPARISON OF SOYBEAN AND PEA ENOD40 CDNA CLONES REPRESENTING GENES EXPRESSED DURING BOTH EARLY AND LATE STAGES OF NODULE DEVELOPMENT

      Plant molecular biology
    54. HEIDSTRA R; GEURTS R; FRANSSEN H; SPAINK HP; VANKAMMEN A; BISSELING T
      ROOT HAIR DEFORMATION ACTIVITY OF NODULATION FACTORS AND THEIR FATE ON VICIA-SATIVA

      Plant physiology
    55. KOZIK AV; MEN AE; KULIKOVA OA; BISSELING T; TIKHONOVICH IA
      PEA (PISUM-SATIVUM) GENES INVOLVED IN SYMBIOSIS WITH NITROGEN-FIXING BACTERIA .4. STUDY OF GENE INHERITANCE WITH DNA PROBES

      Molecular biology
    56. DEJONG AJ; HEIDSTRA R; SPAINK HP; HARTOG MV; MEIJER EA; HENDRIKS T; LOSCHIAVO F; TERZI M; BISSELING T; VANKAMMEN A; DEVRIES SC
      RHIZOBIUM LIPOOLIGOSACCHARIDES RESCUE A CARROT SOMATIC EMBRYO MUTANT

      The Plant cell
    57. HORVATH B; HEIDSTRA R; LADOS M; MOERMAN M; SPAINK HP; PROME JC; VANKAMMEN A; BISSELING T
      LIPO-OLIGOSACCHARIDES OF RHIZOBIUM INDUCE INFECTION-RELATED EARLY NODULIN GENE-EXPRESSION IN PEA ROOT HAIRS

      Plant journal
    58. YANG WC; KATINAKIS P; HENDRIKS P; SMOLDERS A; DEVRIES F; SPEE J; VANKAMMEN A; BISSELING T; FRANSSEN H
      CHARACTERIZATION OF GMENOD40, A GENE SHOWING NOVEL PATTERNS OF CELL-SPECIFIC EXPRESSION DURING SOYBEAN NODULE DEVELOPMENT

      Plant journal
    59. KARDAILSKY I; YANG WC; ZALENSKY A; VANKAMMEN A; BISSELING T
      THE PEA LATE NODULIN GENE PSNOD6 IS HOMOLOGOUS TO THE EARLY NODULIN GENES PSENOD3 14 AND IS EXPRESSED AFTER THE LEGHEMOGLOBIN GENES/

      Plant molecular biology
    60. DEBLANK C; MYLONA P; YANG WC; KATINAKIS P; BISSELING T; FRANSSEN H
      CHARACTERIZATION OF THE SOYBEAN EARLY NODULIN CDNA CLONE GMENOD55

      Plant molecular biology
    61. VIJN I; DASNEVES L; VANKAMMEN A; FRANSSEN H; BISSELING T
      NOD FACTORS AND NODULATION IN PLANTS

      Science


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Documento generato il 26/01/21 alle ore 14:35:54