spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Krizek, B. A.
Right arrow Articles by Meyerowitz, E. M.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Krizek, B. A.
Right arrow Articles by Meyerowitz, E. M.
Bowman, J. L., Smyth, D. R., and Meyerowitz, E. M (1989). Genes directing flower development in Arabidopsis. Plant Cell 1, 37-52.[Abstract/Free Full Text]

Bowman, J. L., Smyth, D. R., and Meyerowitz, E. M (1991). Genetic interactions among floral homeotic genes of Arabidopsis. Development 112, 1-20.[Abstract]

Bowman, J. L., Sakai, H., Jack, T., Weigel, D., Mayer, U., and Meyerowitz, E. M (1992). SUPERMAN , a regulator of floral homeotic genes in Arabidopsis. Development 114, 599-615.[Abstract]

Bowman, J. L., Alvarez, J., Weigel, D., Meyerowitz, E. M., and Smyth, D. R (1993). Control of flower development in Arabidopsis thaliana by APETALA1 and interacting genes. Development 119, 721-743.[Abstract]

Coen, E. S., and Meyerowitz, E. M (1991). The war of the whorls: genetic interactions controlling flower development. Nature 353, 31-37.[Medline]

Drews, G. N., Bowman, J. L., and Meyerowitz, E. M (1991). Negative regulation of the Arabidopsis homeotic gene AGAMOUS by the APETALA2 product. Cell 65, 991-1002.[Medline]

Goto, K., and Meyerowitz, E. M (1994). Function and regulation of the Arabidopsis floral homeotic gene PISTILLATA. Genes Dev 8, 1548-1560.[Abstract/Free Full Text]

Halfter, U., Ali, N., Stockhaus, J., Ren, L., and Chua, N.-H (1994). Ectopic expression of a single homeotic gene, the Petunia gene green petal , is sufficient to convert sepals to petaloid organs. EMBO J 13, 1443-1449.[Medline]

Hill, J. P., and Lord, E. M (1989). Floral development in Arabidopsis thaliana : a comparison of the wild-type and the homeotic pistillata mutant. Can. J. Bot 67, 2922-2936.

Huala, E., and Sussex, I. M (1992). LEAFY interacts with floral homeotic genes to regulate Arabidopsis floral development. Plant Cell 4, 901-913.[Abstract/Free Full Text]

Irish, V. F., and Sussex, I. M (1990). Function of the apetala-1 gene during Arabidopsis floral development. Plant Cell 2, 741-753.[Abstract/Free Full Text]

Jack, T., Brockman, L. L., and Meyerowitz, E. M (1992). The homeotic gene APETALA3 of Arabidopsis thaliana encodes a MADS box and is expressed in petals and stamens. Cell 68, 683-687.[Medline]

Jack, T., Fox, G. L., and Meyerowitz, E. M (1994). Arabidopsis homeotic gene APETALA3 ectopic expression: transcriptional and posttranscriptional regulation determine floral organ identity. Cell 76, 703-716.[Medline]

Jefferson, R. A., Kavanagh, T. A., and Bevan, M. W (1987). GUS fusions:-glucuronidase as a sensitive and versatile gene fusion marker in higher plants. EMBO J 6, 3901-3907.[Medline]

Jofuku, K. D., den Boer, B. G. W., Van Montagu, M., and Okamuro, J. K (1994). Control of Arabidopsis flower and seed development by the homeotic gene APETALA2. Plant Cell 6, 1211-1225.[Abstract]

Klimyuk, V. I., Carroll, B. J., Thomas, C. M., and Jones, J. M (1993). Alkali treatment for rapid preparation of plant material for reliable PCR analysis. Plant J 3, 493-494.[Medline]

Kunst, L., Klenz, J. E., Martinez-Zapater, J., and Haughn, G. W (1989). AP2 gene determines the identity of perianth organs in flowers of Arabidopsis thaliana. Plant Cell 1, 1195-1208.[Abstract/Free Full Text]

Levin, J. Z., and Meyerowitz, E. M (1995). UFO : an Arabidopsis gene involved in both floral meristem and floral organ development. Plant Cell 7, 529-548.[Abstract]

Mandel, M. A., Bowman, J. L., Kempin, S. A., Ma, H., Meyerowitz, E. M., and Yanofsky, M. F (1992). Manipulation of flower structure in transgenic tobacco. Cell 71, 133-143.[Medline]

Mandel, M. A., Gustafson-Brown, C., Savidge, B., and Yanofsky, M. F (1992). Molecular characterization of the Arabidopsis floral homeotic gene APETALA1. Nature 360, 273-277.[Medline]

McBride, K. E., and Summerfelt, K. R (1990). Improved binary vectors for Agrobacterium -mediated plant transformation. Plant Mol. Biol 14, 269-276.[Medline]

McDaniel, C. N. and Hartnett, L. K (1993). Floral-stimulus activity in tobacco stem pieces. Planta 189, 577-583.

Mizukami, Y., and Ma, H (1992). Ectopic expression of the floral homeotic gene AGAMOUS in transgenic Arabidopsis plants alters floral organ identity. Cell 71, 119-131.[Medline]

Schultz, E. A., Pickett, F. B., and Haughn, G. W (1991). The FLO10 gene product regulates the expression domain of homeotic genes AP3 and PI in Arabidopsis flowers. Plant Cell 3, 1221-1237.[Abstract/Free Full Text]

Smyth, D. R., Bowman, J. L., and Meyerowitz, E. M (1990). Early flower development in Arabidopsis. Plant Cell 2, 755-767.[Abstract/Free Full Text]

Tr\232bner, W., Ramirez, L., Motte, P., Hue, I., Huijser, P. L\232nnig, W, Saedler H., Sommer, H., and Schwarz-Sommer, Z (1992). GLOBOSA : a homeotic gene which interacts with DEFICIENS in the control of Antirrhinum floral organogenesis. EMBO J 11, 4693-4704.[Medline]

Weigel, D., Alvarez, J., Smyth, D. R., Yanofsky, M. F., and Meyerowitz, E. M (1992). LEAFY controls floral meristem identity in Arabidopsis. Cell 69, 843-859.[Medline]

Weigel, D., and Meyerowitz, E. M (1993). Activation of floral homeotic genes in Arabidopsis. Science 261, 1723-1726.

Weigel, D., and Meyerowitz, E. M (1994). The ABCs of floral homeotic genes. Cell 78, 203-209.[Medline]

Weigel, D (1995). The APETALA2 domain is related to a novel type of DNA binding domain. Plant Cell 7, 388-389.[Medline]

Yanofsky, M. F., and Ma, H., Bowman, J. L., Drews, G. N., Feldmann, K. A., and Meyerowitz, E. M (1990). The protein encoded by the Arabidopsis homeotic gene agamous resembles transcription factors. Nature 346, 35-39.[Medline]




This article has been cited by other articles:


Home page
Plant Physiol.Home page
C. D. Mara and V. F. Irish
Two GATA Transcription Factors Are Downstream Effectors of Floral Homeotic Gene Action in Arabidopsis
Plant Physiology, June 1, 2008; 147(2): 707 - 718.
[Abstract] [Full Text] [PDF]


Home page
Plant CellHome page
N. Prunet, P. Morel, A.-M. Thierry, Y. Eshed, J. L. Bowman, I. Negrutiu, and C. Trehin
REBELOTE, SQUINT, and ULTRAPETALA1 Function Redundantly in the Temporal Regulation of Floral Meristem Termination in Arabidopsis thaliana
PLANT CELL, April 1, 2008; 20(4): 901 - 919.
[Abstract] [Full Text] [PDF]


Home page
Plant Physiol.Home page
E. Piwarzyk, Y. Yang, and T. Jack
Conserved C-Terminal Motifs of the Arabidopsis Proteins APETALA3 and PISTILLATA Are Dispensable for Floral Organ Identity Function
Plant Physiology, December 1, 2007; 145(4): 1495 - 1505.
[Abstract] [Full Text] [PDF]


Home page
ANN BOT (LOND)Home page
G. Theissen and R. Melzer
Molecular Mechanisms Underlying Origin and Diversification of the Angiosperm Flower
Ann. Bot., September 1, 2007; 100(3): 603 - 619.
[Abstract] [Full Text] [PDF]


Home page
GeneticsHome page
S. R. Yadav, K. Prasad, and U. Vijayraghavan
Divergent Regulatory OsMADS2 Functions Control Size, Shape and Differentiation of the Highly Derived Rice Floret Second-Whorl Organ
Genetics, May 1, 2007; 176(1): 283 - 294.
[Abstract] [Full Text] [PDF]


Home page
J Exp BotHome page
H. Adam, S. Jouannic, Y. Orieux, F. Morcillo, F. Richaud, Y. Duval, and J. W. Tregear
Functional characterization of MADS box genes involved in the determination of oil palm flower structure
J. Exp. Bot., April 1, 2007; 58(6): 1245 - 1259.
[Abstract] [Full Text] [PDF]


Home page
Plant Cell PhysiolHome page
M. Hirai, T. Kamimura, and A. Kanno
The Expression Patterns of Three Class B Genes in Two Distinctive Whorls of Petaloid Tepals in Alstroemeria ligtu
Plant Cell Physiol., February 1, 2007; 48(2): 310 - 321.
[Abstract] [Full Text] [PDF]


Home page
J Exp BotHome page
M. Hintz, C. Bartholmes, P. Nutt, J. Ziermann, S. Hameister, B. Neuffer, and G. Theissen
Catching a 'hopeful monster': shepherd's purse (Capsella bursa-pastoris) as a model system to study the evolution of flower development
J. Exp. Bot., October 1, 2006; 57(13): 3531 - 3542.
[Abstract] [Full Text] [PDF]


Home page
J Exp BotHome page
E. R. Alvarez-Buylla, B. Garcia-Ponce, and A. Garay-Arroyo
Unique and redundant functional domains of APETALA1 and CAULIFLOWER, two recently duplicated Arabidopsis thaliana floral MADS-box genes
J. Exp. Bot., September 1, 2006; 57(12): 3099 - 3107.
[Abstract] [Full Text] [PDF]


Home page
GeneticsHome page
J. C. Preston and E. A. Kellogg
Reconstructing the Evolutionary History of Paralogous APETALA1/FRUITFULL-Like Genes in Grasses (Poaceae)
Genetics, September 1, 2006; 174(1): 421 - 437.
[Abstract] [Full Text] [PDF]


Home page
Plant CellHome page
A. S. Rijpkema, S. Royaert, J. Zethof, G. van der Weerden, T. Gerats, and M. Vandenbussche
Analysis of the Petunia TM6 MADS Box Gene Reveals Functional Divergence within the DEF/AP3 Lineage
PLANT CELL, August 1, 2006; 18(8): 1819 - 1832.
[Abstract] [Full Text] [PDF]


Home page
ANN BOT (LOND)Home page
Y. ZHAO, G. WANG, J. ZHANG, J. YANG, S. PENG, L. GAO, C. LI, J. HU, D. LI, and L. GAO
Expressed Sequence Tags (ESTs) and Phylogenetic Analysis of Floral Genes from a Paleoherb Species, Asarum caudigerum
Ann. Bot., July 1, 2006; 98(1): 157 - 163.
[Abstract] [Full Text] [PDF]


Home page
Plant Physiol.Home page
S. Ferrario, A. V. Shchennikova, J. Franken, R. G.H. Immink, and G. C. Angenent
Control of Floral Meristem Determinacy in Petunia by MADS-Box Transcription Factors
Plant Physiology, March 1, 2006; 140(3): 890 - 898.
[Abstract] [Full Text] [PDF]


Home page
Plant Cell PhysiolHome page
K. Nakahigashi, Z. Jasencakova, I. Schubert, and K. Goto
The Arabidopsis HETEROCHROMATIN PROTEIN1 Homolog (TERMINAL FLOWER2) Silences Genes Within the Euchromatic Region but not Genes Positioned in Heterochromatin
Plant Cell Physiol., November 1, 2005; 46(11): 1747 - 1756.
[Abstract] [Full Text] [PDF]


Home page
Plant Physiol.Home page
A. Berbel, C. Navarro, C. Ferrandiz, L. A. Canas, J.-P. Beltran, and F. Madueno
Functional Conservation of PISTILLATA Activity in a Pea Homolog Lacking the PI Motif
Plant Physiology, September 1, 2005; 139(1): 174 - 185.
[Abstract] [Full Text] [PDF]


Home page
Plant Cell PhysiolHome page
W.-C. Tsai, P.-F. Lee, H.-I. Chen, Y.-Y. Hsiao, W.-J. Wei, Z.-J. Pan, M.-H. Chuang, C.-S. Kuoh, W.-H. Chen, and H.-H. Chen
PeMADS6, a GLOBOSA/PISTILLATA-like Gene in Phalaenopsis equestris Involved in Petaloid Formation, and Correlated with Flower Longevity and Ovary Development
Plant Cell Physiol., July 1, 2005; 46(7): 1125 - 1139.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
C. Gomez-Mena, S. de Folter, M. M. R. Costa, G. C. Angenent, and R. Sablowski
Transcriptional program controlled by the floral homeotic gene AGAMOUS during early organogenesis
Development, February 1, 2005; 132(3): 429 - 438.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
C. J. Whipple, P. Ciceri, C. M. Padilla, B. A. Ambrose, S. L. Bandong, and R. J. Schmidt
Conservation of B-class floral homeotic gene function between maize and Arabidopsis
Development, December 15, 2004; 131(24): 6083 - 6091.
[Abstract] [Full Text] [PDF]


Home page
Plant CellHome page
C. Espinosa-Soto, P. Padilla-Longoria, and E. R. Alvarez-Buylla
A Gene Regulatory Network Model for Cell-Fate Determination during Arabidopsis thaliana Flower Development That Is Robust and Recovers Experimental Gene Expression Profiles
PLANT CELL, November 1, 2004; 16(11): 2923 - 2939.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
C. Navarro, N. Efremova, J. F. Golz, R. Rubiera, M. Kuckenberg, R. Castillo, O. Tietz, H. Saedler, and Z. Schwarz-Sommer
Molecular and genetic interactions between STYLOSA and GRAMINIFOLIA in the control of Antirrhinum vegetative and reproductive development
Development, August 1, 2004; 131(15): 3649 - 3659.
[Abstract] [Full Text] [PDF]


Home page
Plant CellHome page
F. Wellmer, J. L. Riechmann, M. Alves-Ferreira, and E. M. Meyerowitz
Genome-Wide Analysis of Spatial Gene Expression in Arabidopsis Flowers
PLANT CELL, May 1, 2004; 16(5): 1314 - 1326.
[Abstract] [Full Text] [PDF]


Home page
Plant CellHome page
H. Nakagawa, S. Ferrario, G. C. Angenent, A. Kobayashi, and H. Takatsuji
The Petunia Ortholog of Arabidopsis SUPERMAN Plays a Distinct Role in Floral Organ Morphogenesis
PLANT CELL, April 1, 2004; 16(4): 920 - 932.
[Abstract] [Full Text] [PDF]


Home page
Plant Cell PhysiolHome page
J.-H. Park, Y. Ishikawa, T. Ochiai, A. Kanno, and T. Kameya
Two GLOBOSA-Like Genes are Expressed in Second and Third Whorls of Homochlamydeous Flowers in Asparagus officinalis L.
Plant Cell Physiol., March 15, 2004; 45(3): 325 - 332.
[Abstract] [Full Text] [PDF]


Home page
Plant CellHome page
M. Sagi, O. Davydov, S. Orazova, Z. Yesbergenova, R. Ophir, J. W. Stratmann, and R. Fluhr
Plant Respiratory Burst Oxidase Homologs Impinge on Wound Responsiveness and Development in Lycopersicon esculentum
PLANT CELL, March 1, 2004; 16(3): 616 - 628.
[Abstract] [Full Text] [PDF]


Home page
Plant CellHome page
M. Vandenbussche, J. Zethof, S. Royaert, K. Weterings, and T. Gerats
The Duplicated B-Class Heterodimer Model: Whorl-Specific Effects and Complex Genetic Interactions in Petunia hybrida Flower Development
PLANT CELL, March 1, 2004; 16(3): 741 - 754.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
J.-L. Gallois, F. R. Nora, Y. Mizukami, and R. Sablowski
WUSCHEL induces shoot stem cell activity and developmental plasticity in the root meristem
Genes & Dev., February 15, 2004; 18(4): 375 - 380.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
S. Takeda, N. Matsumoto, and K. Okada
RABBIT EARS, encoding a SUPERMAN-like zinc finger protein, regulates petal development in Arabidopsis thaliana
Development, January 15, 2004; 131(2): 425 - 434.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
T. Durfee, J. L. Roe, R. A. Sessions, C. Inouye, K. Serikawa, K. A. Feldmann, D. Weigel, and P. C. Zambryski
The F-box-containing protein UFO and AGAMOUS participate in antagonistic pathways governing early petal development in Arabidopsis
PNAS, July 8, 2003; 100(14): 8571 - 8576.
[Abstract] [Full Text] [PDF]


Home page
Plant Cell PhysiolHome page
T. Kotake, S. Takada, K. Nakahigashi, M. Ohto, and K. Goto
Arabidopsis TERMINAL FLOWER 2 Gene Encodes a Heterochromatin Protein 1 Homolog and Represses both FLOWERING LOCUS T to Regulate Flowering Time and Several Floral Homeotic Genes
Plant Cell Physiol., June 15, 2003; 44(6): 555 - 564.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
R. S. Lamb and V. F. Irish
Functional divergence within the APETALA3/PISTILLATA floral homeotic gene lineages
PNAS, May 27, 2003; 100(11): 6558 - 6563.
[Abstract] [Full Text] [PDF]


Home page
Plant CellHome page
X. Wang, S. Feng, N. Nakayama, W. L. Crosby, V. Irish, X. W. Deng, and N. Wei
The COP9 Signalosome Interacts with SCFUFO and Participates in Arabidopsis Flower Development
PLANT CELL, May 1, 2003; 15(5): 1071 - 1082.
[Abstract] [Full Text]


Home page
Plant CellHome page
Y.-H. Moon, L. Chen, R. L. Pan, H.-S. Chang, T. Zhu, D. M. Maffeo, and Z. R. Sung
EMF Genes Maintain Vegetative Development by Repressing the Flower Program in Arabidopsis
PLANT CELL, March 1, 2003; 15(3): 681 - 693.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
P. Laufs, E. Coen, J. Kronenberger, J. Traas, and J. Doonan
Separable roles of UFO during floral development revealed by conditional restoration of gene function
Development, February 15, 2003; 130(4): 785 - 796.
[Abstract] [Full Text] [PDF]


Home page
Plant CellHome page
M. Zik and V. F. Irish
Global Identification of Target Genes Regulated by APETALA3 and PISTILLATA Floral Homeotic Gene Action
PLANT CELL, January 1, 2003; 15(1): 207 - 222.
[Abstract] [Full Text] [PDF]


Home page
Nucleic Acids ResHome page
H. Markel, J. Chandler, and W. Werr
Translational fusions with the engrailed repressor domain efficiently convert plant transcription factors into dominant-negative functions
Nucleic Acids Res., November 1, 2002; 30(21): 4709 - 4719.
[Abstract] [Full Text] [PDF]


Home page
Plant Physiol.Home page
S.-C. Fang and D. E. Fernandez
Effect of Regulated Overexpression of the MADS Domain Factor AGL15 on Flower Senescence and Fruit Maturation
Plant Physiology, September 1, 2002; 130(1): 78 - 89.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
J.-L. Gallois, C. Woodward, G. V. Reddy, and R. Sablowski
Combined SHOOT MERISTEMLESS and WUSCHEL trigger ectopic organogenesis in Arabidopsis
Development, January 7, 2002; 129(13): 3207 - 3217.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
R. S. Lamb, T. A. Hill, Q. K.-G. Tan, and V. F. Irish
Regulation of APETALA3 floral homeotic gene expression by meristem identity genes
Development, January 5, 2002; 129(9): 2079 - 2086.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
S. F. Baum, Y. Eshed, and J. L. Bowman
The Arabidopsis nectary is an ABC-independent floral structure
Development, November 15, 2001; 128(22): 4657 - 4667.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
N. Efremova, M.-C. Perbal, A. Yephremov, W. A. Hofmann, H. Saedler, and Z. Schwarz-Sommer
Epidermal control of floral organ identity by class B homeotic genes in Antirrhinum and Arabidopsis
Development, July 15, 2001; 128(14): 2661 - 2671.
[Abstract] [Full Text] [PDF]


Home page
Plant CellHome page
M. Ng and M. F. Yanofsky
Activation of the Arabidopsis B Class Homeotic Genes by APETALA1
PLANT CELL, April 1, 2001; 13(4): 739 - 754.
[Abstract] [Full Text]


Home page
DevelopmentHome page
J. Fletcher
The ULTRAPETALA gene controls shoot and floral meristem size in Arabidopsis
Development, January 4, 2001; 128(8): 1323 - 1333.
[Abstract] [PDF]


Home page
GeneticsHome page
J. Serrano-Cartagena, H. Candela, P. Robles, M. R. Ponce, J. M. Pérez-Pérez, P. Piqueras, and J. L. Micol
Genetic Analysis of incurvata Mutants Reveals Three Independent Genetic Operations at Work in Arabidopsis Leaf Morphogenesis
Genetics, November 1, 2000; 156(3): 1363 - 1377.
[Abstract] [Full Text]


Home page
Plant CellHome page
M. K. Deyholos and L. E. Sieburth
Separable Whorl-Specific Expression and Negative Regulation by Enhancer Elements within the AGAMOUS Second Intron
PLANT CELL, October 1, 2000; 12(10): 1799 - 1810.
[Abstract] [Full Text]


Home page
Plant Physiol.Home page
L. A. Sheppard, A. M. Brunner, K. V. Krutovskii, W. H. Rottmann, J. S. Skinner, S. S. Vollmer, and S. H. Strauss
A DEFICIENS Homolog from the Dioecious Tree Black Cottonwood Is Expressed in Female and Male Floral Meristems of the Two-Whorled, Unisexual Flowers
Plant Physiology, October 1, 2000; 124(2): 627 - 640.
[Abstract] [Full Text]


Home page
Plant CellHome page
H. Sakai, B. A. Krizek, S. E. Jacobsen, and E. M. Meyerowitz
Regulation of SUP Expression Identifies Multiple Regulators Involved in Arabidopsis Floral Meristem Development
PLANT CELL, September 1, 2000; 12(9): 1607 - 1618.
[Abstract] [Full Text]


Home page
DevelopmentHome page
T. Honma and K. Goto
The Arabidopsis floral homeotic gene PISTILLATA is regulated by discrete cis-elements responsive to induction and maintenance signals
Development, May 15, 2000; 127(10): 2021 - 2030.
[Abstract] [PDF]


Home page
Plant CellHome page
D. E. Fernandez, G. R. Heck, S. E. Perry, S. E. Patterson, A. B. Bleecker, and S.-C. Fang
The Embryo MADS Domain Factor AGL15 Acts Postembryonically: Inhibition of Perianth Senescence and Abscission via Constitutive Expression
PLANT CELL, February 1, 2000; 12(2): 183 - 198.
[Abstract] [Full Text]


Home page
Plant Physiol.Home page
S.-K. Sung, G.-H. Yu, and G. An
Characterization of MdMADS2, a Member of the SQUAMOSA Subfamily of Genes, in Apple
Plant Physiology, August 1, 1999; 120(4): 969 - 978.
[Abstract] [Full Text]


Home page
GeneticsHome page
M. D. Purugganan and J. I. Suddith
Molecular Population Genetics of Floral Homeotic Loci: Departures From the Equilibrium-Neutral Model at the APETALA3 and PISTILLATA Genes of Arabidopsis thaliana
Genetics, February 1, 1999; 151(2): 839 - 848.
[Abstract] [Full Text]


Home page
Plant CellHome page
F. D. Hempel, P. C. Zambryski, and L. J. Feldman
Photoinduction of Flower Identity in Vegetatively Biased Primordia
PLANT CELL, October 1, 1998; 10(10): 1663 - 1676.
[Abstract] [Full Text]


Home page
GeneticsHome page
O. Nilsson, I. Lee, M. A. Blázquez, and D. Weigel
Flowering-Time Genes Modulate the Response to LEAFY Activity
Genetics, September 1, 1998; 150(1): 403 - 410.
[Abstract] [Full Text]


Home page
Plant CellHome page
R. W. M. Sablowski and E. M. Meyerowitz
Temperature-Sensitive Splicing in the Floral Homeotic Mutant apetala3-1
PLANT CELL, September 1, 1998; 10(9): 1453 - 1464.
[Abstract] [Full Text]


Home page
Plant CellHome page
Y. Yi and T. Jack
An Intragenic Suppressor of the Arabidopsis Floral Organ Identity Mutant apetala3-1 Functions by Suppressing Defects in Splicing
PLANT CELL, September 1, 1998; 10(9): 1465 - 1478.
[Abstract] [Full Text]


Home page
GeneticsHome page
J. Z. Levin, J. C. Fletcher, X. Chen, and E. M. Meyerowitz
A Genetic Screen for Modifiers of UFO Meristem Activity Identifies Three Novel FUSED FLORAL ORGANS Genes Required for Early Flower Development in Arabidopsis
Genetics, June 1, 1998; 149(2): 579 - 595.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
T. Hill, C. Day, S. Zondlo, A. Thackeray, and V. Irish
Discrete spatial and temporal cis-acting elements regulate transcription of the Arabidopsis floral homeotic gene APETALA3
Development, January 5, 1998; 125(9): 1711 - 1721.
[Abstract] [PDF]


Home page
DevelopmentHome page
A Telfer and R. Poethig
HASTY: a gene that regulates the timing of shoot maturation in Arabidopsis thaliana
Development, January 5, 1998; 125(10): 1889 - 1898.
[Abstract] [PDF]


Home page
Genes Dev.Home page
B McGonigle, K Bouhidel, and V F Irish
Nuclear localization of the Arabidopsis APETALA3 and PISTILLATA homeotic gene products depends on their simultaneous