Elongation-related functions of LEAFY COTYLEDON1 during the development of Arabidopsis thaliana

Junker A, Mönke G, Rutten T, Keilwagen J, Seifert M, Thi TMN, Renou J-P, Balzergue S, Viehöver P, Hähnel U, Ludwig-Müller J, et al. (2012)
The Plant Journal 71(3): 427-442.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
Download
Es wurden keine Dateien hochgeladen. Nur Publikationsnachweis!
Autor*in
Junker, Astrid; Mönke, Gudrun; Rutten, Twan; Keilwagen, Jens; Seifert, Michael; Thi, Tuyet Minh Nguyen; Renou, Jean-Pierre; Balzergue, Sandrine; Viehöver, PriscaUniBi; Hähnel, Urs; Ludwig-Müller, Jutta; Altschmied, Lothar
Alle
Abstract / Bemerkung
The transcription factor LEAFY COTYLEDON1 (LEC1) controls aspects of early embryogenesis and seed maturation in Arabidopsis thaliana. To identify components of the LEC1 regulon, transgenic plants were derived in which LEC1 expression was inducible by dexamethasone treatment. The cotyledon-like leaves and the swollen root tips developed by these plants contained seed storage compounds and resembled the phenotypes produced by the increased auxin levels. Accordingly, LEC1 mediated the up-regulation of the auxin synthesis gene YUCCA10. Auxin was accumulated primarily in the elongation zone at the root-hypocotyl junction (collet). This accumulation correlates with hypocotyl growth which is either inhibited or stimulated in the LEC1-induced long-hypocotyl phenotype resembling etiolated seedlings. Chromatin immuno-precipitation analysis revealed a number of phytohormone- and elongation-related genes among the putative LEC1 target genes. LEC1 seems to be an integrator of different regulatory events, involving the transcription factor itself as well as light and hormone signaling, especially during somatic and early zygotic embryogenesis. Furthermore the data allow speculations about non-embryonic functions for LEC1 during post-germinative etiolation. © 2012 The Authors. The Plant Journal © 2012 Blackwell Publishing Ltd.
Erscheinungsjahr
2012
Zeitschriftentitel
The Plant Journal
Band
71
Ausgabe
3
Seite(n)
427-442
ISSN
0960-7412
Page URI
https://pub.uni-bielefeld.de/record/2486155

Zitieren

Junker A, Mönke G, Rutten T, et al. Elongation-related functions of LEAFY COTYLEDON1 during the development of Arabidopsis thaliana. The Plant Journal. 2012;71(3):427-442.
Junker, A., Mönke, G., Rutten, T., Keilwagen, J., Seifert, M., Thi, T. M. N., Renou, J. - P., et al. (2012). Elongation-related functions of LEAFY COTYLEDON1 during the development of Arabidopsis thaliana. The Plant Journal, 71(3), 427-442. doi:10.1111/j.1365-313X.2012.04999.x
Junker, Astrid, Mönke, Gudrun, Rutten, Twan, Keilwagen, Jens, Seifert, Michael, Thi, Tuyet Minh Nguyen, Renou, Jean-Pierre, et al. 2012. “Elongation-related functions of LEAFY COTYLEDON1 during the development of Arabidopsis thaliana”. The Plant Journal 71 (3): 427-442.
Junker, A., Mönke, G., Rutten, T., Keilwagen, J., Seifert, M., Thi, T. M. N., Renou, J. - P., Balzergue, S., Viehöver, P., Hähnel, U., et al. (2012). Elongation-related functions of LEAFY COTYLEDON1 during the development of Arabidopsis thaliana. The Plant Journal 71, 427-442.
Junker, A., et al., 2012. Elongation-related functions of LEAFY COTYLEDON1 during the development of Arabidopsis thaliana. The Plant Journal, 71(3), p 427-442.
A. Junker, et al., “Elongation-related functions of LEAFY COTYLEDON1 during the development of Arabidopsis thaliana”, The Plant Journal, vol. 71, 2012, pp. 427-442.
Junker, A., Mönke, G., Rutten, T., Keilwagen, J., Seifert, M., Thi, T.M.N., Renou, J.-P., Balzergue, S., Viehöver, P., Hähnel, U., Ludwig-Müller, J., Altschmied, L., Conrad, U., Weisshaar, B., Bäumlein, H.: Elongation-related functions of LEAFY COTYLEDON1 during the development of Arabidopsis thaliana. The Plant Journal. 71, 427-442 (2012).
Junker, Astrid, Mönke, Gudrun, Rutten, Twan, Keilwagen, Jens, Seifert, Michael, Thi, Tuyet Minh Nguyen, Renou, Jean-Pierre, Balzergue, Sandrine, Viehöver, Prisca, Hähnel, Urs, Ludwig-Müller, Jutta, Altschmied, Lothar, Conrad, Udo, Weisshaar, Bernd, and Bäumlein, Helmut. “Elongation-related functions of LEAFY COTYLEDON1 during the development of Arabidopsis thaliana”. The Plant Journal 71.3 (2012): 427-442.

47 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Arabidopsis LEC1 and LEC2 Orthologous Genes Are Key Regulators of Somatic Embryogenesis in Cassava.
Brand A, Quimbaya M, Tohme J, Chavarriaga-Aguirre P., Front Plant Sci 10(), 2019
PMID: 31191582
Ectopic expression of the Coffea canephora SERK1 homolog-induced differential transcription of genes involved in auxin metabolism and in the developmental control of embryogenesis.
Pérez-Pascual D, Jiménez-Guillen D, Villanueva-Alonzo H, Souza-Perera R, Godoy-Hernández G, Zúñiga-Aguilar JJ., Physiol Plant 163(4), 2018
PMID: 29607503
Gibberellins play an essential role in late embryogenesis of Arabidopsis.
Hu Y, Zhou L, Huang M, He X, Yang Y, Liu X, Li Y, Hou X., Nat Plants 4(5), 2018
PMID: 29725104
Molecular and epigenetic regulations and functions of the LAFL transcriptional regulators that control seed development.
Lepiniec L, Devic M, Roscoe TJ, Bouyer D, Zhou DX, Boulard C, Baud S, Dubreucq B., Plant Reprod 31(3), 2018
PMID: 29797091
Trichostatin A Triggers an Embryogenic Transition in Arabidopsis Explants via an Auxin-Related Pathway.
Wójcikowska B, Botor M, Morończyk J, Wójcik AM, Nodzyński T, Karcz J, Gaj MD., Front Plant Sci 9(), 2018
PMID: 30271420
Evolutionary Analysis of the LAFL Genes Involved in the Land Plant Seed Maturation Program.
Han JD, Li X, Jiang CK, Wong GK, Rothfels CJ, Rao GY., Front Plant Sci 8(), 2017
PMID: 28421087
LEC1 sequentially regulates the transcription of genes involved in diverse developmental processes during seed development.
Pelletier JM, Kwong RW, Park S, Le BH, Baden R, Cagliari A, Hashimoto M, Munoz MD, Fischer RL, Goldberg RB, Harada JJ., Proc Natl Acad Sci U S A 114(32), 2017
PMID: 28739919
A transcriptional view on somatic embryogenesis.
Horstman A, Bemer M, Boutilier K., Regeneration (Oxf) 4(4), 2017
PMID: 29299323
The BABY BOOM Transcription Factor Activates the LEC1-ABI3-FUS3-LEC2 Network to Induce Somatic Embryogenesis.
Horstman A, Li M, Heidmann I, Weemen M, Chen B, Muino JM, Angenent GC, Boutilier K., Plant Physiol 175(2), 2017
PMID: 28830937
Potential targets of VIVIPAROUS1/ABI3-LIKE1 (VAL1) repression in developing Arabidopsis thaliana embryos.
Schneider A, Aghamirzaie D, Elmarakeby H, Poudel AN, Koo AJ, Heath LS, Grene R, Collakova E., Plant J 85(2), 2016
PMID: 26678037
The Arabidopsis thaliana Nuclear Factor Y Transcription Factors.
Zhao H, Wu D, Kong F, Lin K, Zhang H, Li G., Front Plant Sci 7(), 2016
PMID: 28119722
Plant regeneration: cellular origins and molecular mechanisms.
Ikeuchi M, Ogawa Y, Iwase A, Sugimoto K., Development 143(9), 2016
PMID: 27143753
Deciphering and modifying LAFL transcriptional regulatory network in seed for improving yield and quality of storage compounds.
Fatihi A, Boulard C, Bouyer D, Baud S, Dubreucq B, Lepiniec L., Plant Sci 250(), 2016
PMID: 27457996
Application of Somatic Embryogenesis in Woody Plants.
Guan Y, Li SG, Fan XF, Su ZH., Front Plant Sci 7(), 2016
PMID: 27446166
A novel arrangement of zinc finger nuclease system for in vivo targeted genome engineering: the tomato LEC1-LIKE4 gene case.
Hilioti Z, Ganopoulos I, Ajith S, Bossis I, Tsaftaris A., Plant Cell Rep 35(11), 2016
PMID: 27473525
NUCLEAR FACTOR Y, Subunit C (NF-YC) Transcription Factors Are Positive Regulators of Photomorphogenesis in Arabidopsis thaliana.
Myers ZA, Kumimoto RW, Siriwardana CL, Gayler KK, Risinger JR, Pezzetta D, Holt Iii BF., PLoS Genet 12(9), 2016
PMID: 27685091
Somatic embryogenesis - Stress-induced remodeling of plant cell fate.
Fehér A., Biochim Biophys Acta 1849(4), 2015
PMID: 25038583
Genome-wide expression analysis of soybean NF-Y genes reveals potential function in development and drought response.
Quach TN, Nguyen HT, Valliyodan B, Joshi T, Xu D, Nguyen HT., Mol Genet Genomics 290(3), 2015
PMID: 25542200
Inference of Longevity-Related Genes from a Robust Coexpression Network of Seed Maturation Identifies Regulators Linking Seed Storability to Biotic Defense-Related Pathways.
Righetti K, Vu JL, Pelletier S, Vu BL, Glaab E, Lalanne D, Pasha A, Patel RV, Provart NJ, Verdier J, Leprince O, Buitink J., Plant Cell 27(10), 2015
PMID: 26410298
Arabidopsis LEAFY COTYLEDON1 controls cell fate determination during post-embryonic development.
Huang M, Hu Y, Liu X, Li Y, Hou X., Front Plant Sci 6(), 2015
PMID: 26579186
Identification and characterization of NF-Y transcription factor families in Canola (Brassica napus L.).
Liang M, Yin X, Lin Z, Zheng Q, Liu G, Zhao G., Planta 239(1), 2014
PMID: 24097262
Auxin and Cell Wall Invertase Related Signaling during Rice Grain Development.
French SR, Abu-Zaitoon Y, Uddin MM, Bennett K, Nonhebel HM., Plants (Basel) 3(1), 2014
PMID: 27135493
Seed-development programs: a systems biology-based comparison between dicots and monocots.
Sreenivasulu N, Wobus U., Annu Rev Plant Biol 64(), 2013
PMID: 23451786
New insights into somatic embryogenesis: leafy cotyledon1, baby boom1 and WUSCHEL-related homeobox4 are epigenetically regulated in Coffea canephora.
Nic-Can GI, López-Torres A, Barredo-Pool F, Wrobel K, Loyola-Vargas VM, Rojas-Herrera R, De-la-Peña C., PLoS One 8(8), 2013
PMID: 23977240
Toward the identification and regulation of the Arabidopsis thaliana ABI3 regulon.
Mönke G, Seifert M, Keilwagen J, Mohr M, Grosse I, Hähnel U, Junker A, Weisshaar B, Conrad U, Bäumlein H, Altschmied L., Nucleic Acids Res 40(17), 2012
PMID: 22730287
Multifunctionality of the LEC1 transcription factor during plant development.
Junker A, Bäumlein H., Plant Signal Behav 7(12), 2012
PMID: 23073004
The promiscuous life of plant NUCLEAR FACTOR Y transcription factors.
Petroni K, Kumimoto RW, Gnesutta N, Calvenzani V, Fornari M, Tonelli C, Holt BF, Mantovani R., Plant Cell 24(12), 2012
PMID: 23275578

93 References

Daten bereitgestellt von Europe PubMed Central.

CHD3 proteins and polycomb group proteins antagonistically determine cell identity in Arabidopsis.
Aichinger E, Villar CB, Farrona S, Reyes JC, Hennig L, Kohler C., PLoS Genet. 5(8), 2009
PMID: 19680533
Characterization of leafy cotyledon1-like during embryogenesis in Theobroma cacao L.
Alemanno L, Devic M, Niemenak N, Sanier C, Guilleminot J, Rio M, Verdeil JL, Montoro P., Planta 227(4), 2007
PMID: 18094994
TT2, TT8, and TTG1 synergistically specify the expression of BANYULS and proanthocyanidin biosynthesis in Arabidopsis thaliana.
Baudry A, Heim MA, Dubreucq B, Caboche M, Weisshaar B, Lepiniec L., Plant J. 39(3), 2004
PMID: 15255866
Abscisic acid represses growth of the Arabidopsis embryonic axis after germination by enhancing auxin signaling.
Belin C, Megies C, Hauserova E, Lopez-Molina L., Plant Cell 21(8), 2009
PMID: 19666738
Genome-scale Arabidopsis promoter array identifies targets of the histone acetyltransferase GCN5.
Benhamed M, Martin-Magniette ML, Taconnat L, Bitton F, Servet C, De Clercq R, De Meyer B, Buysschaert C, Rombauts S, Villarroel R, Aubourg S, Beynon J, Bhalerao RP, Coupland G, Gruissem W, Menke FL, Weisshaar B, Renou JP, Zhou DX, Hilson P., Plant J. 56(3), 2008
PMID: 18644002

AUTHOR UNKNOWN, 1993
Hormone cross-talk in seed dormancy
Brady, J. Plant Growth Regul. 22(), 2003
Minimum information about a microarray experiment (MIAME)-toward standards for microarray data.
Brazma A, Hingamp P, Quackenbush J, Sherlock G, Spellman P, Stoeckert C, Aach J, Ansorge W, Ball CA, Causton HC, Gaasterland T, Glenisson P, Holstege FC, Kim IF, Markowitz V, Matese JC, Parkinson H, Robinson A, Sarkans U, Schulze-Kremer S, Stewart J, Taylor R, Vilo J, Vingron M., Nat. Genet. 29(4), 2001
PMID: 11726920
Regulatory networks in seeds integrating developmental, abscisic acid, sugar, and light signaling.
Brocard-Gifford IM, Lynch TJ, Finkelstein RR., Plant Physiol. 131(1), 2003
PMID: 12529517
The auxin conjugate hydrolase family of Medicago truncatula and their expression during the interaction with two symbionts
Campanella, J. Plant Growth Regul. 27(), 2008
AmiGO: online access to ontology and annotation data.
Carbon S, Ireland A, Mungall CJ, Shu S, Marshall B, Lewis S; AmiGO Hub; Web Presence Working Group, Ireland A, Lomax J, Carbon S, Mungall C, Hitz B, Balakrishnan R, Dolan M, Wood V, Hong E, Gaudet P., Bioinformatics 25(2), 2008
PMID: 19033274
A Rapid and Simple Procedure for Purification of Indole-3-Acetic Acid Prior to GC-SIM-MS Analysis.
Chen KH, Miller AN, Patterson GW, Cohen JD., Plant Physiol. 86(3), 1988
PMID: 16665995
Ectopic expression of LEAFY COTYLEDON1-LIKE gene and localized auxin accumulation mark embryogenic competence in epiphyllous plants of Helianthus annuus x H. tuberosus.
Chiappetta A, Fambrini M, Petrarulo M, Rapparini F, Michelotti V, Bruno L, Greco M, Baraldi R, Salvini M, Pugliesi C, Bitonti MB., Ann. Bot. 103(5), 2009
PMID: 19151043
The DWF4 gene of Arabidopsis encodes a cytochrome P450 that mediates multiple 22alpha-hydroxylation steps in brassinosteroid biosynthesis.
Choe S, Dilkes BP, Fujioka S, Takatsuto S, Sakurai A, Feldmann KA., Plant Cell 10(2), 1998
PMID: 9490746
Auxin stimulates DWARF4 expression and brassinosteroid biosynthesis in Arabidopsis.
Chung Y, Maharjan PM, Lee O, Fujioka S, Jang S, Kim B, Takatsuto S, Tsujimoto M, Kim H, Cho S, Park T, Cho H, Hwang I, Choe S., Plant J. 66(4), 2011
PMID: 21284753
Convenient apparatus for the generation of small amounts of diazomethane
Cohen, J. Chromatogr. 303(), 1984
CATMA: a complete Arabidopsis GST database.
Crowe ML, Serizet C, Thareau V, Aubourg S, Rouze P, Hilson P, Beynon J, Weisbeek P, van Hummelen P, Reymond P, Paz-Ares J, Nietfeld W, Trick M., Nucleic Acids Res. 31(1), 2003
PMID: 12519971
Characterization of LEAFY COTYLEDON1-LIKE gene in Helianthus annuus and its relationship with zygotic and somatic embryogenesis.
Fambrini M, Durante C, Cionini G, Geri C, Giorgetti L, Michelotti V, Salvini M, Pugliesi C., Dev. Genes Evol. 216(5), 2006
PMID: 16450129
CATdb: a public access to Arabidopsis transcriptome data from the URGV-CATMA platform.
Gagnot S, Tamby JP, Martin-Magniette ML, Bitton F, Taconnat L, Balzergue S, Aubourg S, Renou JP, Lecharny A, Brunaud V., Nucleic Acids Res. 36(Database issue), 2007
PMID: 17940091
Factors influencing somatic embryogenesis induction and plant regeneration with particular reference to Arabidopsis thaliana (L.) Heynh
Gaj, Plant Growth Regul. 43(), 2004
Leafy cotyledon genes are essential for induction of somatic embryogenesis of Arabidopsis.
Gaj MD, Zhang S, Harada JJ, Lemaux PG., Planta 222(6), 2005
PMID: 16034595
Repression of seed maturation genes by a trihelix transcriptional repressor in Arabidopsis seedlings.
Gao MJ, Lydiate DJ, Li X, Lui H, Gjetvaj B, Hegedus DD, Rozwadowski K., Plant Cell 21(1), 2009
PMID: 19155348
Evolution of asexual reproduction in leaves of the genus Kalanchoe.
Garces HM, Champagne CE, Townsley BT, Park S, Malho R, Pedroso MC, Harada JJ, Sinha NR., Proc. Natl. Acad. Sci. U.S.A. 104(39), 2007
PMID: 17893341
Comprehensive comparison of auxin-regulated and brassinosteroid-regulated genes in Arabidopsis.
Goda H, Sawa S, Asami T, Fujioka S, Shimada Y, Yoshida S., Plant Physiol. 134(4), 2004
PMID: 15047898
Role of Arabidopsis LEAFY COTYLEDON genes in seed development
Harada, J. Plant Physiol. 158(), 2001
Phytohormone collaboration: zooming in on auxin-brassinosteroid interactions.
Hardtke CS, Dorcey E, Osmont KS, Sibout R., Trends Cell Biol. 17(10), 2007
PMID: 17904848
PICKLE acts throughout the plant to repress expression of embryonic traits and may play a role in gibberellin-dependent responses.
Henderson JT, Li HC, Rider SD, Mordhorst AP, Romero-Severson J, Cheng JC, Robey J, Sung ZR, de Vries SC, Ogas J., Plant Physiol. 134(3), 2004
PMID: 14963244
Versatile gene-specific sequence tags for Arabidopsis functional genomics: transcript profiling and reverse genetics applications.
Hilson P, Allemeersch J, Altmann T, Aubourg S, Avon A, Beynon J, Bhalerao RP, Bitton F, Caboche M, Cannoot B, Chardakov V, Cognet-Holliger C, Colot V, Crowe M, Darimont C, Durinck S, Eickhoff H, de Longevialle AF, Farmer EE, Grant M, Kuiper MT, Lehrach H, Leon C, Leyva A, Lundeberg J, Lurin C, Moreau Y, Nietfeld W, Paz-Ares J, Reymond P, Rouze P, Sandberg G, Segura MD, Serizet C, Tabrett A, Taconnat L, Thareau V, Van Hummelen P, Vercruysse S, Vuylsteke M, Weingartner M, Weisbeek PJ, Wirta V, Wittink FR, Zabeau M, Small I., Genome Res. 14(10B), 2004
PMID: 15489341
bZIP transcription factors in Arabidopsis.
Jakoby M, Weisshaar B, Droge-Laser W, Vicente-Carbajosa J, Tiedemann J, Kroj T, Parcy F; bZIP Research Group., Trends Plant Sci. 7(3), 2002
PMID: 11906833
VANTED: a system for advanced data analysis and visualization in the context of biological networks.
Junker BH, Klukas C, Schreiber F., BMC Bioinformatics 7(), 2006
PMID: 16519817
An engineer's view on regulation of seed development.
Junker A, Hartmann A, Schreiber F, Baumlein H., Trends Plant Sci. 15(6), 2010
PMID: 20400355
A fatty acid desaturase modulates the activation of defense signaling pathways in plants.
Kachroo P, Shanklin J, Shah J, Whittle EJ, Klessig DF., Proc. Natl. Acad. Sci. U.S.A. 98(16), 2001
PMID: 11481500
LEAFY COTYLEDON1 controls seed storage protein genes through its regulation of FUSCA3 and ABSCISIC ACID INSENSITIVE3.
Kagaya Y, Toyoshima R, Okuda R, Usui H, Yamamoto A, Hattori T., Plant Cell Physiol. 46(3), 2005
PMID: 15695450
Members of the RKD transcription factor family induce an egg cell-like gene expression program.
Koszegi D, Johnston AJ, Rutten T, Czihal A, Altschmied L, Kumlehn J, Wust SE, Kirioukhova O, Gheyselinck J, Grossniklaus U, Baumlein H., Plant J. 67(2), 2011
PMID: 21457369
LEAFY COTYLEDON1-LIKE defines a class of regulators essential for embryo development.
Kwong RW, Bui AQ, Lee H, Kwong LW, Fischer RL, Goldberg RB, Harada JJ., Plant Cell 15(1), 2003
PMID: 12509518
Global analysis of gene activity during Arabidopsis seed development and identification of seed-specific transcription factors.
Le BH, Cheng C, Bui AQ, Wagmaister JA, Henry KF, Pelletier J, Kwong L, Belmonte M, Kirkbride R, Horvath S, Drews GN, Fischer RL, Okamuro JK, Harada JJ, Goldberg RB., Proc. Natl. Acad. Sci. U.S.A. 107(18), 2010
PMID: 20385809
Analysis of transcription factor HY5 genomic binding sites revealed its hierarchical role in light regulation of development.
Lee J, He K, Stolc V, Lee H, Figueroa P, Gao Y, Tongprasit W, Zhao H, Lee I, Deng XW., Plant Cell 19(3), 2007
PMID: 17337630
Arabidopsis LEAFY COTYLEDON1 is sufficient to induce embryo development in vegetative cells.
Lotan T, Ohto M, Yee KM, West MA, Lo R, Kwong RW, Yamagishi K, Fischer RL, Goldberg RB, Harada JJ., Cell 93(7), 1998
PMID: 9657152
Genome-wide analysis of Arabidopsis pentatricopeptide repeat proteins reveals their essential role in organelle biogenesis.
Lurin C, Andres C, Aubourg S, Bellaoui M, Bitton F, Bruyere C, Caboche M, Debast C, Gualberto J, Hoffmann B, Lecharny A, Le Ret M, Martin-Magniette ML, Mireau H, Peeters N, Renou JP, Szurek B, Taconnat L, Small I., Plant Cell 16(8), 2004
PMID: 15269332
Crosstalk and abscisic acid: the roles of terpenoid hormones in coordinating development
McCourt, Physiol. Plant. 123(), 2005
Leafy Cotyledon Mutants of Arabidopsis.
Meinke DW, Franzmann LH, Nickle TC, Yeung EC., Plant Cell 6(8), 1994
PMID: 12244265
LEAFY COTYLEDON1 is a key regulator of fatty acid biosynthesis in Arabidopsis.
Mu J, Tan H, Zheng Q, Fu F, Liang Y, Zhang J, Yang X, Wang T, Chong K, Wang XJ, Zuo J., Plant Physiol. 148(2), 2008
PMID: 18689444
Brassinolide induces IAA5, IAA19, and DR5, a synthetic auxin response element in Arabidopsis, implying a cross talk point of brassinosteroid and auxin signaling.
Nakamura A, Higuchi K, Goda H, Fujiwara MT, Sawa S, Koshiba T, Shimada Y, Yoshida S., Plant Physiol. 133(4), 2003
PMID: 14605219
Interdependency of brassinosteroid and auxin signaling in Arabidopsis
Nemhauser, PLoS Biol. 2(), 2004
Cellular differentiation regulated by gibberellin in the Arabidopsis thaliana pickle mutant.
Ogas J, Cheng JC, Sung ZR, Somerville C., Science 277(5322), 1997
PMID: 9204906
PICKLE is a CHD3 chromatin-remodeling factor that regulates the transition from embryonic to vegetative development in Arabidopsis.
Ogas J, Kaufmann S, Henderson J, Somerville C., Proc. Natl. Acad. Sci. U.S.A. 96(24), 1999
PMID: 10570159
Genome-wide analysis of genes targeted by PHYTOCHROME INTERACTING FACTOR 3-LIKE5 during seed germination in Arabidopsis.
Oh E, Kang H, Yamaguchi S, Park J, Lee D, Kamiya Y, Choi G., Plant Cell 21(2), 2009
PMID: 19244139
The UGT73C5 of Arabidopsis thaliana glucosylates brassinosteroids.
Poppenberger B, Fujioka S, Soeno K, George GL, Vaistij FE, Hiranuma S, Seto H, Takatsuto S, Adam G, Yoshida S, Bowles D., Proc. Natl. Acad. Sci. U.S.A. 102(42), 2005
PMID: 16214889
Coordinate repression of regulators of embryonic identity by PICKLE during germination in Arabidopsis.
Dean Rider S Jr, Henderson JT, Jerome RE, Edenberg HJ, Romero-Severson J, Ogas J., Plant J. 35(1), 2003
PMID: 12834400
Metabolic profiling of the Arabidopsis pkl mutant reveals selective derepression of embryonic traits.
Rider SD Jr, Hemm MR, Hostetler HA, Li HC, Chapple C, Ogas J., Planta 219(3), 2004
PMID: 15085429
Arabidopsis transcription factors: genome-wide comparative analysis among eukaryotes.
Riechmann JL, Heard J, Martin G, Reuber L, Jiang C, Keddie J, Adam L, Pineda O, Ratcliffe OJ, Samaha RR, Creelman R, Pilgrim M, Broun P, Zhang JZ, Ghandehari D, Sherman BK, Yu G., Science 290(5499), 2000
PMID: 11118137
The expansin superfamily
Sampedro, Genome Biol. 6((12)), 2005
Deciphering gene regulatory networks that control seed development and maturation in Arabidopsis.
Santos-Mendoza M, Dubreucq B, Baud S, Parcy F, Caboche M, Lepiniec L., Plant J. 54(4), 2008
PMID: 18476867
CATMA, a comprehensive genome-scale resource for silencing and transcript profiling of Arabidopsis genes.
Sclep G, Allemeersch J, Liechti R, De Meyer B, Beynon J, Bhalerao R, Moreau Y, Nietfeld W, Renou JP, Reymond P, Kuiper MT, Hilson P., BMC Bioinformatics 8(), 2007
PMID: 17945016
Tissue-specific expression patterns of Arabidopsis NF-Y transcription factors suggest potential for extensive combinatorial complexity.
Siefers N, Dang KK, Kumimoto RW, Bynum WE 4th, Tayrose G, Holt BF 3rd., Plant Physiol. 149(2), 2008
PMID: 19019982
Arabidopsis LEAFY COTYLEDON2 induces maturation traits and auxin activity: Implications for somatic embryogenesis.
Stone SL, Braybrook SA, Paula SL, Kwong LW, Meuser J, Pelletier J, Hsieh TF, Fischer RL, Goldberg RB, Harada JJ., Proc. Natl. Acad. Sci. U.S.A. 105(8), 2008
PMID: 18287041
Two B3 domain transcriptional repressors prevent sugar-inducible expression of seed maturation genes in Arabidopsis seedlings.
Tsukagoshi H, Morikami A, Nakamura K., Proc. Natl. Acad. Sci. U.S.A. 104(7), 2007
PMID: 17267611
Iron assimilation and transcription factor controlled synthesis of riboflavin in plants.
Vorwieger A, Gryczka C, Czihal A, Douchkov D, Tiedemann J, Mock HP, Jakoby M, Weisshaar B, Saalbach I, Baumlein H., Planta 226(1), 2007
PMID: 17260143
Overexpression of PGA37/MYB118 and MYB115 promotes vegetative-to-embryonic transition in Arabidopsis.
Wang X, Niu QW, Teng C, Li C, Mu J, Chua NH, Zuo J., Cell Res. 19(2), 2009
PMID: 18695688
The GCR1, GPA1, PRN1, NF-Y signal chain mediates both blue light and abscisic acid responses in Arabidopsis.
Warpeha KM, Upadhyay S, Yeh J, Adamiak J, Hawkins SI, Lapik YR, Anderson MB, Kaufman LS., Plant Physiol. 143(4), 2007
PMID: 17322342
High-resolution selected ion monitoring in a quadrupole ion trap mass spectrometer
Wells, Annals of chemistry 67(), 1995
LEAFY COTYLEDON1 Is an Essential Regulator of Late Embryogenesis and Cotyledon Identity in Arabidopsis.
West M, Yee KM, Danao J, Zimmerman JL, Fischer RL, Goldberg RB, Harada JJ., Plant Cell 6(12), 1994
PMID: 12244233
Sugars as signal molecules in plant seed development.
Wobus U, Weber H., Biol. Chem. 380(7-8), 1999
PMID: 10494845
Arabidopsis NF-YB subunits LEC1 and LEC1-LIKE activate transcription by interacting with seed-specific ABRE-binding factors.
Yamamoto A, Kagaya Y, Toyoshima R, Kagaya M, Takeda S, Hattori T., Plant J. 58(5), 2009
PMID: 19207209
Induction of abscisic acid-regulated gene expression by diacylglycerol pyrophosphate involves Ca2+ and anion currents in Arabidopsis suspension cells.
Zalejski C, Paradis S, Maldiney R, Habricot Y, Miginiac E, Rona JP, Jeannette E., Plant Physiol. 141(4), 2006
PMID: 16766676
The CHD3 remodeler PICKLE promotes trimethylation of histone H3 lysine 27.
Zhang H, Rider SD Jr, Henderson JT, Fountain M, Chuang K, Kandachar V, Simons A, Edenberg HJ, Romero-Severson J, Muir WM, Ogas J., J. Biol. Chem. 283(33), 2008
PMID: 18539592
A role for flavin monooxygenase-like enzymes in auxin biosynthesis.
Zhao Y, Christensen SK, Fankhauser C, Cashman JR, Cohen JD, Weigel D, Chory J., Science 291(5502), 2001
PMID: 11209081
Global identification of targets of the Arabidopsis MADS domain protein AGAMOUS-Like15.
Zheng Y, Ren N, Wang H, Stromberg AJ, Perry SE., Plant Cell 21(9), 2009
PMID: 19767455
GENEVESTIGATOR. Arabidopsis microarray database and analysis toolbox.
Zimmermann P, Hirsch-Hoffmann M, Hennig L, Gruissem W., Plant Physiol. 136(1), 2004
PMID: 15375207
Export

Markieren/ Markierung löschen
Markierte Publikationen

Open Data PUB

Web of Science

Dieser Datensatz im Web of Science®
Quellen

PMID: 22429691
PubMed | Europe PMC

Suchen in

Google Scholar