Related Content
Search Google Scholar for:
|
|
Science 12 May 1995: Vol. 268. no. 5212, pp. 877 - 880 DOI: 10.1126/science.7754372
|
|
Articles
Science, Vol 268, Issue 5212, 877-880
Copyright © 1995 by American Association for the Advancement of Science
Gene trap tagging of PROLIFERA, an essential MCM2-3-5-like gene in Arabidopsis
PS Springer,
WR McCombie,
V Sundaresan,
and
RA Martienssen
Cold Spring Harbor Laboratory, NY 11724, USA.
Gene trap transposon mutagenesis can identify essential genes whose functions in later development are obscured by an early lethal phenotype. In higher plants, many genes are required for haploid gametophyte viability, so that the phenotypic effects of their disruption cannot be readily observed in the diploid plant body. The PROLIFERA (PRL) gene, identified by gene trap transposon mutagenesis in Arabidopsis, is required for megaga-metophyte and embryo development. Reporter gene expression patterns revealed that PRL was expressed in dividing cells throughout the plant. PRL is related to the MCM2-3-5 family of yeast genes that are required for the initiation of DNA replication.
THIS ARTICLE HAS BEEN CITED BY OTHER ARTICLES:
- SLOW WALKER2, a NOC1/MAK21 Homologue, Is Essential for Coordinated Cell Cycle Progression during Female Gametophyte Development in Arabidopsis.
- N. Li, L. Yuan, N. Liu, D. Shi, X. Li, Z. Tang, J. Liu, V. Sundaresan, and W.-C. Yang (2009)
Plant Physiology
151, 1486-1497
| Abstract »
| Full Text »
| PDF »
- Dynamic Localization of the DNA Replication Proteins MCM5 and MCM7 in Plants.
- R. W. Shultz, T.-J. Lee, G. C. Allen, W. F. Thompson, and L. Hanley-Bowdoin (2009)
Plant Physiology
150, 658-669
| Abstract »
| Full Text »
| PDF »
- Positive regulation of minichromosome maintenance gene expression, DNA replication, and cell transformation by a plant retinoblastoma gene.
- P. A. Sabelli, G. Hoerster, L. E. Lizarraga, S. W. Brown, W. J. Gordon-Kamm, and B. A. Larkins (2009)
PNAS
106, 4042-4047
| Abstract »
| Full Text »
| PDF »
- The Maternal to Zygotic Transition in Animals and Plants.
- C. Baroux, D. Autran, C.S. Gillmor, D. Grimanelli, and U. Grossniklaus (2009)
Cold Spring Harb Symp Quant Biol
| Abstract »
| PDF »
- Meiotic and Mitotic Cell Cycle Mutants Involved in Gametophyte Development in Arabidopsis.
- J. Liu and L.-J. Qu (2008)
Mol Plant
1, 564-574
| Abstract »
| Full Text »
| PDF »
- A Strong Nucleotypic Effect on the Cell Cycle Regardless of Ploidy Level.
- D. Francis, M. S. Davies, and P. W. Barlow (2008)
Ann. Bot.
101, 747-757
| Abstract »
| Full Text »
| PDF »
- A GUS/Luciferase Fusion Reporter for Plant Gene Trapping and for Assay of Promoter Activity with Luciferin-Dependent Control of the Reporter Protein Stability.
- J. Koo, Y. Kim, J. Kim, M. Yeom, I. C. Lee, and H. G. Nam (2007)
Plant Cell Physiol.
48, 1121-1131
| Abstract »
| Full Text »
| PDF »
- Genome-Wide Analysis of the Core DNA Replication Machinery in the Higher Plants Arabidopsis and Rice.
- R. W. Shultz, V. M. Tatineni, L. Hanley-Bowdoin, and W. F. Thompson (2007)
Plant Physiology
144, 1697-1714
| Abstract »
| Full Text »
| PDF »
- Genetic and Epigenetic Regulation of Embryogenesis.
- N. A. Eckardt (2006)
PLANT CELL
18, 781-784
| Full Text »
| PDF »
- Arabidopsis GLUTAMINE-RICH PROTEIN23 Is Essential for Early Embryogenesis and Encodes a Novel Nuclear PPR Motif Protein That Interacts with RNA Polymerase II Subunit III.
- Y.-H. Ding, N.-Y. Liu, Z.-S. Tang, J. Liu, and W.-C. Yang (2006)
PLANT CELL
18, 815-830
| Abstract »
| Full Text »
| PDF »
- The Fertilization-Induced DNA Replication Factor MCM6 of Maize Shuttles between Cytoplasm and Nucleus, and Is Essential for Plant Growth and Development.
- T. Dresselhaus, K.-o. Srilunchang, D. Leljak-Levanic, D. N. Schreiber, and P. Garg (2006)
Plant Physiology
140, 512-527
| Abstract »
| Full Text »
| PDF »
- Depletion of minichromosome maintenance protein 5 in the zebrafish retina causes cell-cycle defect and apoptosis.
- S. Ryu, J. Holzschuh, S. Erhardt, A.-K. Ettl, and W. Driever (2005)
PNAS
102, 18467-18472
| Abstract »
| Full Text »
| PDF »
- Analysis of the Female Gametophyte Transcriptome of Arabidopsis by Comparative Expression Profiling.
- H.-J. Yu, P. Hogan, and V. Sundaresan (2005)
Plant Physiology
139, 1853-1869
| Abstract »
| Full Text »
| PDF »
- SLOW WALKER1, Essential for Gametogenesis in Arabidopsis, Encodes a WD40 Protein Involved in 18S Ribosomal RNA Biogenesis.
- D.-Q. Shi, J. Liu, Y.-H. Xiang, D. Ye, V. Sundaresan, and W.-C. Yang (2005)
PLANT CELL
17, 2340-2354
| Abstract »
| Full Text »
| PDF »
- Transcriptional Profile of the Arabidopsis Root Quiescent Center.
- T. Nawy, J.-Y. Lee, J. Colinas, J. Y. Wang, S. C. Thongrod, J. E. Malamy, K. Birnbaum, and P. N. Benfey (2005)
PLANT CELL
17, 1908-1925
| Abstract »
| Full Text »
| PDF »
- Genetic and molecular identification of genes required for female gametophyte development and function in Arabidopsis.
- G. C. Pagnussat, H.-J. Yu, Q. A. Ngo, S. Rajani, S. Mayalagu, C. S. Johnson, A. Capron, L.-F. Xie, D. Ye, and V. Sundaresan (2005)
Development
132, 603-614
| Abstract »
| Full Text »
| PDF »
- Large-Scale Mutagenesis of the Yeast Genome Using a Tn7-Derived Multipurpose Transposon.
- A. Kumar, M. Seringhaus, M. C. Biery, R. J. Sarnovsky, L. Umansky, S. Piccirillo, M. Heidtman, K.-H. Cheung, C. J. Dobry, M. B. Gerstein, et al. (2004)
Genome Res.
14, 1975-1986
| Abstract »
| Full Text »
| PDF »
- A Classical Arabinogalactan Protein Is Essential for the Initiation of Female Gametogenesis in Arabidopsis.
- G. Acosta-Garcia and J.-P. Vielle-Calzada (2004)
PLANT CELL
16, 2614-2628
| Abstract »
| Full Text »
| PDF »
- mRNA deadenylation by PARN is essential for embryogenesis in higher plants.
- S. V. REVERDATTO, J. A. DUTKO, J. A. CHEKANOVA, D. A. HAMILTON, and D. A. BELOSTOTSKY (2004)
RNA
10, 1200-1214
| Abstract »
| Full Text »
| PDF »
- The ABNORMAL GAMETOPHYTES (AGM) Gene Product of Arabidopsis Demonstrates a Role in Mitosis During Gamete Development.
- A.-M. Sorensen, S. Kroeber, and H. Saedler (2004)
Plant Cell Physiol.
45, 905-913
| Abstract »
| Full Text »
| PDF »
- Female Gametophyte Development.
- R. Yadegari and G. N. Drews (2004)
PLANT CELL
16, S133-S141
| Full Text »
| PDF »
- Genetic Regulation of Embryonic Pattern Formation.
- T. Laux, T. Wurschum, and H. Breuninger (2004)
PLANT CELL
16, S190-S202
| Full Text »
| PDF »
- Gene and Enhancer Trap Tagging of Vascular-Expressed Genes in Poplar Trees.
- A. Groover, J. R. Fontana, G. Dupper, C. Ma, R. Martienssen, S. Strauss, and R. Meilan (2004)
Plant Physiology
134, 1742-1751
| Abstract »
| Full Text »
| PDF »
- Eukaryotic MCM Proteins: Beyond Replication Initiation.
- S. L. Forsburg (2004)
Microbiol. Mol. Biol. Rev.
68, 109-131
| Abstract »
| Full Text »
| PDF »
- Plant DNA helicases: the long unwinding road.
- N. Tuteja (2003)
J. Exp. Bot.
54, 2201-2214
| Abstract »
| Full Text »
| PDF »
- The Arabidopsis LATERAL ORGAN BOUNDARIES-Domain Gene ASYMMETRIC LEAVES2 Functions in the Repression of KNOX Gene Expression and in Adaxial-Abaxial Patterning.
- W.-c. Lin, B. Shuai, and P. S. Springer (2003)
PLANT CELL
15, 2241-2252
| Abstract »
| Full Text »
| PDF »
- Phyllotactic pattern and stem cell fate are determined by the Arabidopsis homeobox gene BELLRINGER.
- M. E. Byrne, A. T. Groover, J. R. Fontana, and R. A. Martienssen (2003)
Development
130, 3941-3950
| Abstract »
| Full Text »
| PDF »
- Secretion Trap Tagging of Secreted and Membrane-Spanning Proteins Using Arabidopsis Gene Traps.
- A. T. Groover, J. R. Fontana, J. M. Arroyo, C. Yordan, W. R. McCombie, and R. A. Martienssen (2003)
Plant Physiology
132, 698-708
| Abstract »
| Full Text »
| PDF »
- AtSig5 Is an Essential Nucleus-Encoded Arabidopsis {sigma}-Like Factor.
- J. Yao, S. Roy-Chowdhury, and L. A. Allison (2003)
Plant Physiology
132, 739-747
| Abstract »
| Full Text »
| PDF »
- ASYMMETRIC LEAVES1 reveals knox gene redundancy in Arabidopsis.
- M. E. Byrne, J. Simorowski, and R. A. Martienssen (2003)
Development
129, 1957-1965
| Abstract »
| Full Text »
| PDF »
- Agrobacterium-Mediated Plant Transformation: the Biology behind the "Gene-Jockeying" Tool.
- S. B. Gelvin (2003)
Microbiol. Mol. Biol. Rev.
67, 16-37
| Abstract »
| Full Text »
| PDF »
- Comparative Transcriptional Profiling of Placenta and Endosperm in Developing Maize Kernels in Response to Water Deficit.
- L.-X. Yu and T. L. Setter (2003)
Plant Physiology
131, 568-582
| Abstract »
| Full Text »
| PDF »
- Isolation of GUS marker lines for genes expressed in Arabidopsis endosperm, embryo and maternal tissues.
- B. Stangeland, Z. Salehian, R. Aalen, A. Mandal, and O.-A. Olsen (2003)
J. Exp. Bot.
54, 279-290
| Abstract »
| Full Text »
| PDF »
- Embryo and Endosperm Development Is Disrupted in the Female Gametophytic capulet Mutants of Arabidopsis.
- P. E. Grini, G. Jurgens, and M. Hulskamp (2002)
Genetics
162, 1911-1925
| Abstract »
| Full Text »
| PDF »
- The Lateral Organ Boundaries Gene Defines a Novel, Plant-Specific Gene Family.
- B. Shuai, C. G. Reynaga-Pena, and P. S. Springer (2002)
Plant Physiology
129, 747-761
| Abstract »
| Full Text »
| PDF »
- Insertional Mutagenesis of Genes Required for Seed Development in Arabidopsis thaliana.
- J. McElver, I. Tzafrir, G. Aux, R. Rogers, C. Ashby, K. Smith, C. Thomas, A. Schetter, Q. Zhou, M. A. Cushman, et al. (2001)
Genetics
159, 1751-1763
| Abstract »
| Full Text »
| PDF »
- High-Resolution Metabolic Phenotyping of Genetically and Environmentally Diverse Potato Tuber Systems. Identification of Phenocopies.
- U. Roessner, L. Willmitzer, and A. R. Fernie (2001)
Plant Physiology
127, 749-764
| Abstract »
| Full Text »
| PDF »
- The Arabidopsis Dual-Affinity Nitrate Transporter Gene AtNRT1.1 (CHL1) Is Activated and Functions in Nascent Organ Development during Vegetative and Reproductive Growth.
- F.-Q. Guo, R. Wang, M. Chen, and N. M. Crawford (2001)
PLANT CELL
13, 1761-1777
| Abstract »
| Full Text »
| PDF »
- Networking Senescence-Regulating Pathways by Using Arabidopsis Enhancer Trap Lines.
- Y. He, W. Tang, J. D. Swain, A. L. Green, T. P. Jack, and S. Gan (2001)
Plant Physiology
126, 707-716
| Abstract »
| Full Text »
| PDF »
- Origins and complexes: the initiation of DNA replication.
- J. A. Bryant, K. Moore, and S. J. Aves (2001)
J. Exp. Bot.
52, 193-202
| Abstract »
| Full Text »
| PDF »
- Gene Traps: Tools for Plant Development and Genomics.
- P. S. Springer (2000)
PLANT CELL
12, 1007-1020
| Abstract »
| Full Text »
- From the Cover: Insights into DNA replication from the third domain of life.
- B. K. Tye (2000)
PNAS
97, 2399-2401
| Full Text »
| PDF »
- The essential Mcm7 protein PROLIFERA is localized to the nucleus of dividing cells during the G(1) phase and is required maternally for early Arabidopsis development.
- P. Springer, D. Holding, A Groover, C Yordan, and R. Martienssen (2000)
Development
127, 1815-1822
| Abstract »
| PDF »
- The dyad gene is required for progression through female meiosis in Arabidopsis.
- I Siddiqi, G Ganesh, U Grossniklaus, and V Subbiah (2000)
Development
127, 197-207
| Abstract »
| PDF »
- Transposon Tagging of the Sulfur Gene of Tobacco Using Engineered Maize Ac/Ds Elements.
- W. P. Fitzmaurice, L. V. Nguyen, E. A. Wernsman, W. F. Thompson, and M. A. Conkling (1999)
Genetics
153, 1919-1928
| Abstract »
| Full Text »
- Cyclin-Dependent Kinases and Cell Division in Plants— The Nexus.
- V. Mironov, L. De Veylder, M. Van Montagu, and D. Inzé (1999)
PLANT CELL
11, 509-522
| Full Text »
- Isolation of Ethyl Methanesulfonate-Induced Gametophytic Mutants in Arabidopsis thaliana by a Segregation Distortion Assay Using the Multimarker Chromosome 1.
- P. E. Grini, A. Schnittger, H. Schwarz, I. Zimmermann, B. Schwab, G. Jürgens, and M. Hülskamp (1999)
Genetics
151, 849-863
| Abstract »
| Full Text »
- A Chloroplast DNA Helicase II from Pea That Prefers Fork-Like Replication Structures.
- N. Tuteja and T.-N. Phan (1998)
Plant Physiology
118, 1029-1038
| Abstract »
| Full Text »
- Axonal Injury Alters Alternative Splicing of the Retinal NR1 Receptor: the Preferential Expression of the NR1b Isoforms Is Crucial for Retinal Ganglion Cell Survival.
- M. R. Kreutz, T. M. Bockers, J. Bockmann, C. I. Seidenbecher, B. Kracht, C. K. Vorwerk, J. Weise, and B. A. Sabel (1998)
J. Neurosci.
18, 8278-8291
| Abstract »
| Full Text »
| PDF »
- Selection of T-DNA-Tagged Male and Female Gametophytic Mutants by Segregation Distortion in Arabidopsis.
- R. Howden, S. K. Park, J. M. Moore, J. Orme, U. Grossniklaus, and D. Twell (1998)
Genetics
149, 621-631
| Abstract »
| Full Text »
| PDF »
- Maternal Control of Embryogenesis by MEDEA, a Polycomb Group Gene in Arabidopsis.
- U. Grossniklaus, J. Vielle-Calzada, M. A. Hoeppner, and W. B. Gagliano (1998)
Science
280, 446-450
| Abstract »
| Full Text »
- Functional genomics: Probing plant gene function and expression with transposons.
- R. A. Martienssen (1998)
PNAS
95, 2021-2026
| Abstract »
| Full Text »
| PDF »
- An Embryo-Defective Mutant of Arabidopsis Disrupted in the Final Step of Biotin Synthesis.
- D. A. Patton, A. L. Schetter, L. H. Franzmann, K. Nelson, E. R. Ward, and D. W. Meinke (1998)
Plant Physiology
116, 935-946
| Abstract »
| Full Text »
- Capturing novel mouse genes encoding chromosomal and other nuclear proteins.
- P Tate, M Lee, S Tweedie, W. Skarnes, and W. Bickmore (1998)
J. Cell Sci.
111, 2575-2585
| Abstract »
| PDF »
- The FRUITFULL MADS-box gene mediates cell differentiation during Arabidopsis fruit development.
- Q Gu, C Ferrandiz, M. Yanofsky, and R Martienssen (1998)
Development
125, 1509-1517
| Abstract »
| PDF »
- Genetic Analysis of Female Gametophyte Development and Function.
- G. N. Drews, D. Lee, and C. A. Christensen (1998)
PLANT CELL
10, 5-18
| Abstract »
| Full Text »
- Efficient gene tagging in Arabidopsis thaliana using a gene trap approach.
- E. Babiychuk, M. Fuangthong, M. Van Montagu, D. Inze, and S. Kushnir (1997)
PNAS
94, 12722-12727
| Abstract »
| Full Text »
| PDF »
- Characterization of the transposition pattern of the Ac element in Arabidopsis thaliana using endonuclease I-SceI.
- C. Machida, H. Onouchi, J. Koizumi, S. Hamada, E. Semiarti, S. Torikai, and Y. Machida (1997)
PNAS
94, 8675-8680
| Abstract »
| Full Text »
| PDF »
- In Vivo Interaction of Human MCM Heterohexameric Complexes with Chromatin. POSSIBLE INVOLVEMENT OF ATP.
- M. Fujita, T. Kiyono, Y. Hayashi, and M. Ishibashi (1997)
J. Biol. Chem.
272, 10928-10935
| Abstract »
| Full Text »
| PDF »
- A leucine-rich repeat containing receptor-like kinase marks somatic plant cells competent to form embryos.
- E. Schmidt, F Guzzo, M. Toonen, and S. de Vries (1997)
Development
124, 2049-2062
| Abstract »
| PDF »
- Genetic Characterization of hadad, a Mutant Disrupting Female Gametogenesis in Arabidopsis thaliana.
- J.M. Moore, J.-P. Vielle Calzada, W. Gagliano, and U. Grossniklaus (1997)
Cold Spring Harb Symp Quant Biol
62, 35-47
| Abstract »
| PDF »
- hCDC47, a Human Member of the MCM Family.
- M. Fujita, T. Kiyono, Y. Hayashi, and M. Ishibashi (1996)
J. Biol. Chem.
271, 4349-4354
| Abstract »
| Full Text »
| PDF »
- sidecar pollen, an Arabidopsis thaliana male gametophytic mutant with aberrant cell divisions during pollen development.
- Y. Chen and S McCormick (1996)
Development
122, 3243-3253
| Abstract »
| PDF »
- Physical Map and Organization of Arabidopsis thaliana Chromosome 4.
- R. Schmidt, J. West, K. Love, Z. Lenehan, C. Lister, H. Thompson, D. Bouchez, and C. Dean (1995)
Science
270, 480-483
| Abstract »
| PDF »
- Patterns of gene action in plant development revealed by enhancer trap and gene trap transposable elements..
- V Sundaresan, P Springer, T Volpe, S Haward, J D Jones, C Dean, H Ma, and R Martienssen (1995)
Genes & Dev.
9, 1797-1810
| Abstract »
| PDF »
|
|