Authors:
Steiner-Lange, S
Gremse, M
Kuckenberg, M
Nissing, E
Schachtele, D
Spenrath, N
Wolff, M
Saedler, H
Dekker, K
Citation: S. Steiner-lange et al., Efficient identification of Arabidopsis knock-out mutants using DNA-arraysof transposon flanking sequences, PLANT BIO, 3(4), 2001, pp. 391-397
Citation: Bm. Muller et al., The MADS-box gene DEFH28 from Antirrhinum is involved in the regulation offloral meristem identity and fruit development, PLANT J, 28(2), 2001, pp. 169-179
Authors:
Efremova, N
Perbal, MC
Yephremov, A
Hofmann, WA
Saedler, H
Schwarz-Sommer, Z
Citation: N. Efremova et al., Epidermal control of floral organ identity by class B homeotic genes in Antirrhinum and Arabidopsis, DEVELOPMENT, 128(14), 2001, pp. 2661-2671
Authors:
Munster, T
Wingen, LU
Faigl, W
Werth, S
Saedler, H
Theissen, G
Citation: T. Munster et al., Characterization of three GLOBOSA-like MADS-box genes from maize: evidencefor ancient paralogy in one class of floral homeotic B-function genes of grasses, GENE, 262(1-2), 2001, pp. 1-13
Authors:
Cremer, F
Lonnig, WE
Saedler, H
Huijser, P
Citation: F. Cremer et al., The delayed terminal flower phenotype is caused by a conditional mutation in the CENTRORADIALIS gene of snapdragon, PLANT PHYSL, 126(3), 2001, pp. 1031-1041
Authors:
Wellesen, K
Durst, F
Pinot, F
Benveniste, I
Nettesheim, K
Wisman, E
Steiner-Lange, S
Saedler, H
Yephremov, A
Citation: K. Wellesen et al., Functional analysis of the LACERATA gene of Arabidopsis provides evidence for different robes of fatty acid omega-hydroxylation in development, P NAS US, 98(17), 2001, pp. 9694-9699
Authors:
Zachgo, S
Perbal, MC
Saedler, H
Schwarz-Sommer, Z
Citation: S. Zachgo et al., In situ analysis of RNA and protein expression in whole mounts facilitatesdetection of floral gene expression dynamics, PLANT J, 23(5), 2000, pp. 697-702
Citation: A. Yephremov et H. Saedler, Display and isolation of transposon-flanking sequences starting from genomic DNA or RNA, PLANT J, 21(5), 2000, pp. 495-505
Authors:
Wilkinson, M
Silva, ED
Zachgo, S
Saedler, H
Schwarz-Sommer, Z
Citation: M. Wilkinson et al., CHORIPETALA and DESPENTEADO: general regulators during plant development and potential floral targets of FIMBRIATA-mediated degradation, DEVELOPMENT, 127(17), 2000, pp. 3725-3734
Authors:
Yephremov, A
Wisman, E
Huijser, P
Huijser, C
Wellesen, K
Saedler, H
Citation: A. Yephremov et al., Characterization of the FIDDLEHEAD gene of Arabidopsis reveals a link between adhesion response and cell differentiation in the epidermis, PL CELL, 11(11), 1999, pp. 2187-2201
Citation: J. Cacharron et al., Expression of MADS box genes ZMM8 and ZMM14 during inflorescence development of Zea mays discriminates between the upper and the lower floret of eachspikelet, DEV GENES E, 209(7), 1999, pp. 411-420
Citation: M. Egea-cortines et al., Ternary complex formation between the MADS-box proteins SQUAMOSA, DEFICIENS and GLOBOSA is involved in the control of floral architecture in Antirrhinum majus, EMBO J, 18(19), 1999, pp. 5370-5379
Authors:
Davies, B
Motte, P
Keck, E
Saedler, H
Sommer, H
Schwarz-Sommer, Z
Citation: B. Davies et al., PLENA and FARINELLI: redundancy and regulatory interactions between two Antirrhinum MADS-box factors controlling flower development, EMBO J, 18(14), 1999, pp. 4023-4034
Citation: G. Theissen et H. Saedler, The golden decade of molecular floral development (1990-1999): A cheerful obituary, DEV GENET, 25(3), 1999, pp. 181-193
Authors:
Winter, KU
Becker, A
Munster, T
Kim, JT
Saedler, H
Theissen, G
Citation: Ku. Winter et al., MADS-box genes reveal that gnetophytes are more closely related to conifers than to flowering plants, P NAS US, 96(13), 1999, pp. 7342-7347