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1
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0028887377
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CLAVATA3 is a specific regulator of shoot and floral meristem development affecting the same processes as CLAVATA1
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Clark SE, Running MP, Meyerowitz EM CLAVATA3 is a specific regulator of shoot and floral meristem development affecting the same processes as CLAVATA1. Development. 121:1995;2057.
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Development
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Clark, S.E.1
Running, M.P.2
Meyerowitz, E.M.3
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2
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0030729445
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The CLAVATA1 gene encodes a putative receptor kinase that controls shoot and floral meristem size in Arabidopsis
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Clark SE, Williams RW, Meyerowitz EM The CLAVATA1 gene encodes a putative receptor kinase that controls shoot and floral meristem size in Arabidopsis. Cell. 89:1997;575-585.
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Cell
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Clark, S.E.1
Williams, R.W.2
Meyerowitz, E.M.3
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3
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0033583173
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Signaling of cell fate decisions by CLAVATA3 in Arabidopsis shoot meristems
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The authors describe the cloning and characterisation of CLV3. Together with previously reported genetic data, the presented data strongly suggest that CLV3 is the ligand of CLV1.
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Fletcher JC, Brand U, Running MP, Simon R, Meyerowitz EM Signaling of cell fate decisions by CLAVATA3 in Arabidopsis shoot meristems. Science. 283:1999;1911-1914. The authors describe the cloning and characterisation of CLV3. Together with previously reported genetic data, the presented data strongly suggest that CLV3 is the ligand of CLV1.
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Science
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Fletcher, J.C.1
Brand, U.2
Running, M.P.3
Simon, R.4
Meyerowitz, E.M.5
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4
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0033101715
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The CLAVATA1 receptor-like kinase requires CLAVATA3 for its assembly into a signaling complex that includes KAPP and a Rho-related protein
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The authors describe how CLV1 occurs in two distinct complexes of 185kD and 450kD, respectively. As the 450kD complex is only formed when functional CLV3 is present, it is proposed that CLV3 binds to the 185kD complex, which serves to activate it, and then associates with other proteins, including the phosphatase KAPP and a Rho-like protein.
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Trotchaud AE, Hao T, Wu G, Yang Z, Clark SE The CLAVATA1 receptor-like kinase requires CLAVATA3 for its assembly into a signaling complex that includes KAPP and a Rho-related protein. Plant Cell. 11:1999;393-405. The authors describe how CLV1 occurs in two distinct complexes of 185kD and 450kD, respectively. As the 450kD complex is only formed when functional CLV3 is present, it is proposed that CLV3 binds to the 185kD complex, which serves to activate it, and then associates with other proteins, including the phosphatase KAPP and a Rho-like protein.
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Plant Cell
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Trotchaud, A.E.1
Hao, T.2
Wu, G.3
Yang, Z.4
Clark, S.E.5
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5
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0029821720
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Phytosulfokine, sulfated peptides that induce the proliferation of single mesophyll cells of Asparagus officinalis L
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Matsubayashi Y, Sakagami Y Phytosulfokine, sulfated peptides that induce the proliferation of single mesophyll cells of Asparagus officinalis L. Proc Natl Acad Sci USA. 93:1996;7623-7627.
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Matsubayashi, Y.1
Sakagami, Y.2
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6
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0030660281
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Phytosulfokine-a, a sulfated pentapeptide, stimulates the proliferation of rice cells by means of specific high- And low-affinity binding sites
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Matsubayashi Y, Takagi L, Sakagami Y Phytosulfokine-a, a sulfated pentapeptide, stimulates the proliferation of rice cells by means of specific high- and low-affinity binding sites. Proc Natl Acad Sci USA. 94:1997;13357-13362.
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Matsubayashi, Y.1
Takagi, L.2
Sakagami, Y.3
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7
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0032989240
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Physiological relationships between auxin, cytokinin, and a peptide growth factor, phytosulfokine-a in stimulation of asparagus cell proliferation
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Matsubayashi Y, Morita A, Matsunaga E, Fruya A, Hanai N, Sakagami Y Physiological relationships between auxin, cytokinin, and a peptide growth factor, phytosulfokine-a in stimulation of asparagus cell proliferation. Planta. 207:1999;559-565.
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Planta
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Matsubayashi, Y.1
Morita, A.2
Matsunaga, E.3
Fruya, A.4
Hanai, N.5
Sakagami, Y.6
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8
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85030364807
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A novel plant growth factor, phytosulfokine, its discovery, cDNA cloning and receptor
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USA, Aug 1-7, On World Wide Web URL
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Sakagami Y, Matsubayashi Y, Young H: A novel plant growth factor, phytosulfokine, its discovery, cDNA cloning and receptor. XVI International Botanical Congress St Louis, USA, Aug 1-7, 1999. On World Wide Web URL: http://www.ibc99.org.
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XVI International Botanical Congress St Louis
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Sakagami, Y.1
Matsubayashi, Y.2
Young, H.3
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9
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0033563988
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Characterization of specific binding sites for a mitogenic sulfated peptide, phytosulfokine-a, in the plasma-membrane fraction derived from Oryza sativa L
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Matsubayashi Y, Sakagami Y Characterization of specific binding sites for a mitogenic sulfated peptide, phytosulfokine-a, in the plasma-membrane fraction derived from Oryza sativa L. Eur J Biochem. 262:1999;1-7.
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Matsubayashi, Y.1
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10
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0030975960
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Ethylene provides positional information on cortical cell division but is not involved in Nod factor-induced root hair tip growth in Rhizobium-legume interaction
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Heidstra R, Yang WC, Yalcin Y, Peck S, Emons AM, van Kammen 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. 124:1997;1781-1787.
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Heidstra, R.1
Yang, W.C.2
Yalcin, Y.3
Peck, S.4
Emons, A.M.5
Van Kammen, A.6
Bisseling, T.7
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11
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0027232818
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Isolation and characterization of novel nodulin cDNAs representing genes expressed at early stages of soybean nodule development
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Kouchi H, Hata S Isolation and characterization of novel nodulin cDNAs representing genes expressed at early stages of soybean nodule development. Mol Gen Genet. 238:1993;106-119.
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Kouchi, H.1
Hata, S.2
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12
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0027584631
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Characterization of GmENOD40, a gene showing novel patterns of cell-specific expression during soybean nodule development
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Yang WC, Katinakis P, Hendriks P, Smolders A, de Vries F, Spee J, Van Kammen A, Bisseling T, Franssen H Characterization of GmENOD40, a gene showing novel patterns of cell-specific expression during soybean nodule development. Plant J. 3:1993;573-585.
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Yang, W.C.1
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De Vries, F.5
Spee, J.6
Van Kammen, A.7
Bisseling, T.8
Franssen, H.9
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13
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85030369547
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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
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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. 1999;. in press.
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Plant and Soil
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Compaan, B.1
Yang, W.C.2
Bisseling, T.3
Franssen, H.4
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14
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0033118515
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Rice ENOD40: Isolation and expression analysis in rice and transgenic soybean root nodules
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Kouchi H, Takane K, So RB, Ladha JK, Reddy PM Rice ENOD40: isolation and expression analysis in rice and transgenic soybean root nodules. Plant J. 18:1999;121-129.
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Takane, K.2
So, R.B.3
Ladha, J.K.4
Reddy, P.M.5
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15
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9344220520
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A peptide encoded by ENOD40 of legumes and a nonlegume modifies phytohormone response
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Van de Sande K, Pawlowski K, Czaja I, Wieneke U, Schell J, Schmidt J, Walden R, Matvienko M, Wellink J, Van Kammen Aet al. A peptide encoded by ENOD40 of legumes and a nonlegume modifies phytohormone response. Science. 273:1996;370-373.
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Van De Sande, K.1
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Schell, J.5
Schmidt, J.6
Walden, R.7
Matvienko, M.8
Wellink, J.9
Van Kammen, A.10
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16
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0030795553
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Enod40 induces dedifferentiation and division of root cortical cells in legumes
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Charon C, Johansson C, Kondorosi E, Kondorosi A, Crespi M enod40 induces dedifferentiation and division of root cortical cells in legumes. Proc Natl Acad Sci USA. 94:1997;8901-8906.
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Crespi, M.5
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0032941653
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Re-evaluation of phytohormone independent division of tobacco protoplast derived cells
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Schell J, Bisseling T, Dulz M, Franssen H, Fritze K, John M, Kleinow T, Lessnick A, Miklashevich E, Pawlowski Ket al. Re-evaluation of phytohormone independent division of tobacco protoplast derived cells. Plant J. 17:1999;461-466.
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Schell, J.1
Bisseling, T.2
Dulz, M.3
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Fritze, K.5
John, M.6
Kleinow, T.7
Lessnick, A.8
Miklashevich, E.9
Pawlowski, K.10
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18
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0025886794
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A polypeptide from tomato leaves induces wound-inducible proteinase inhibitor proteins
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Pearce G, Strydom D, Johnson S, Ryan CA A polypeptide from tomato leaves induces wound-inducible proteinase inhibitor proteins. Science. 253:1991;895-898.
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Structure, expression and antisense inhibition of the systemin precursor gene
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20
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11944260974
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Octadecanoid jasmonate precursors activate the synthesis of wound-inducible proteinase inhibitors
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Farmer EE, Ryan CA Octadecanoid jasmonate precursors activate the synthesis of wound-inducible proteinase inhibitors. Plant Cell. 4:1992;129-134.
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Farmer, E.E.1
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0027987123
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Identification of a 50-kDa systemin-binding protein in tomato plasma membranes having Kex2p-like properties
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Schaller A, Ryan CA Identification of a 50-kDa systemin-binding protein in tomato plasma membranes having Kex2p-like properties. Proc Natl Acad Sci USA. 91:1994;11802-11806.
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Systemin induces rapid ion fluxes and ethylene biosynthesis in Lycopersicum cells
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Felix G, Boller T Systemin induces rapid ion fluxes and ethylene biosynthesis in Lycopersicum cells. Plant J. 7:1995;381-389.
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The plant wound hormone systemin binds with the N-terminal part to its receptor but needs the C-terminal part to activate it
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0032720691
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A 160 kDa systemin receptor on the cell surface of Lycopersicum peruvianum suspension culture cells: Kinetic analyses, induction by methyl jasmonate and photoaffinity labeling
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•], the authors describe the identification of a high affinity binding site present in the plasmamembrane of tomato suspension cells.
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•], the authors describe the identification of a high affinity binding site present in the plasmamembrane of tomato suspension cells.
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Plant Cell
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Scheer, J.M.1
Ryan, C.A.2
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Alteration of enod40 expression modifies Medicago root nodule development induced by Sinorhizobium meliloti
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Charon C, Sousa C, Crespi M, Kondorosi A Alteration of enod40 expression modifies Medicago root nodule development induced by Sinorhizobium meliloti. Plant Cell. 1999;. in press.
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Plant Cell
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Charon, C.1
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Kondorosi, A.4
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