- Liljegren SJ, et al.
SHATTERPROOF MADS-box genes control seed dispersal in Arabidopsis. Nature, 2000. 404(6779): p. 766-70 [PMID:10783890] - Smyth D
A reverse trend--MADS functions revealed. Trends Plant Sci., 2000. 5(8): p. 315-7 [PMID:10908873] - Riechmann JL, et al.
Arabidopsis transcription factors: genome-wide comparative analysis among eukaryotes. Science, 2000. 290(5499): p. 2105-10 [PMID:11118137] - M
The MADS-box gene DEFH28 from Antirrhinum is involved in the regulation of floral meristem identity and fruit development. Plant J., 2001. 28(2): p. 169-79 [PMID:11722760] - Rajani S,Sundaresan V
The Arabidopsis myc/bHLH gene ALCATRAZ enables cell separation in fruit dehiscence. Curr. Biol., 2001. 11(24): p. 1914-22 [PMID:11747817] - Parenicová L, et al.
Molecular and phylogenetic analyses of the complete MADS-box transcription factor family in Arabidopsis: new openings to the MADS world. Plant Cell, 2003. 15(7): p. 1538-51 [PMID:12837945] - Favaro R, et al.
MADS-box protein complexes control carpel and ovule development in Arabidopsis. Plant Cell, 2003. 15(11): p. 2603-11 [PMID:14555696] - Bao X,Franks RG,Levin JZ,Liu Z
Repression of AGAMOUS by BELLRINGER in floral and inflorescence meristems. Plant Cell, 2004. 16(6): p. 1478-89 [PMID:15155890] - Moore RC,Grant SR,Purugganan MD
Molecular population genetics of redundant floral-regulatory genes in Arabidopsis thaliana. Mol. Biol. Evol., 2005. 22(1): p. 91-103 [PMID:15371526] - Lee JY, et al.
Activation of CRABS CLAW in the Nectaries and Carpels of Arabidopsis. Plant Cell, 2005. 17(1): p. 25-36 [PMID:15598802] - de Folter S, et al.
Comprehensive interaction map of the Arabidopsis MADS Box transcription factors. Plant Cell, 2005. 17(5): p. 1424-33 [PMID:15805477] - Kaufmann K,Anfang N,Saedler H,Theissen G
Mutant analysis, protein-protein interactions and subcellular localization of the Arabidopsis B sister (ABS) protein. Mol. Genet. Genomics, 2005. 274(2): p. 103-18 [PMID:16080001] - Causier B, et al.
Evolution in action: following function in duplicated floral homeotic genes. Curr. Biol., 2005. 15(16): p. 1508-12 [PMID:16111944] - Battaglia R,Brambilla V,Colombo L,Stuitje AR,Kater MM
Functional analysis of MADS-box genes controlling ovule development in Arabidopsis using the ethanol-inducible alc gene-expression system. Mech. Dev., 2006. 123(4): p. 267-76 [PMID:16515858] - Ma H,Yanofsky MF,Meyerowitz EM
AGL1-AGL6, an Arabidopsis gene family with similarity to floral homeotic and transcription factor genes. Genes Dev., 1991. 5(3): p. 484-95 [PMID:1672119] - de Folter S, et al.
A Bsister MADS-box gene involved in ovule and seed development in petunia and Arabidopsis. Plant J., 2006. 47(6): p. 934-46 [PMID:16925602] - Brambilla V, et al.
Genetic and molecular interactions between BELL1 and MADS box factors support ovule development in Arabidopsis. Plant Cell, 2007. 19(8): p. 2544-56 [PMID:17693535] - Mitsuda N,Ohme-Takagi M
NAC transcription factors NST1 and NST3 regulate pod shattering in a partially redundant manner by promoting secondary wall formation after the establishment of tissue identity. Plant J., 2008. 56(5): p. 768-78 [PMID:18657234] - Mummenhoff K,Polster A,M
Lepidium as a model system for studying the evolution of fruit development in Brassicaceae. J. Exp. Bot., 2009. 60(5): p. 1503-13 [PMID:19052256] - Gauffin F, et al.
Expression of PTEN and SHP1, investigated from tissue microarrays in pediatric acute lymphoblastic, leukemia. Pediatr Hematol Oncol, 2009. 26(1): p. 48-56 [PMID:19206008] - Alvarez JP,Goldshmidt A,Efroni I,Bowman JL,Eshed Y
The NGATHA distal organ development genes are essential for style specification in Arabidopsis. Plant Cell, 2009. 21(5): p. 1373-93 [PMID:19435933] - Mitsuda N,Ohme-Takagi M
Functional analysis of transcription factors in Arabidopsis. Plant Cell Physiol., 2009. 50(7): p. 1232-48 [PMID:19478073] - Vrebalov J, et al.
Fleshy fruit expansion and ripening are regulated by the Tomato SHATTERPROOF gene TAGL1. Plant Cell, 2009. 21(10): p. 3041-62 [PMID:19880793] - Colombo M, et al.
A new role for the SHATTERPROOF genes during Arabidopsis gynoecium development. Dev. Biol., 2010. 337(2): p. 294-302 [PMID:19900437] - Losa A,Colombo M,Brambilla V,Colombo L
Genetic interaction between AINTEGUMENTA (ANT) and the ovule identity genes SEEDSTICK (STK), SHATTERPROOF1 (SHP1) and SHATTERPROOF2 (SHP2). Sex. Plant Reprod., 2010. 23(2): p. 115-21 [PMID:20041269] - Padilla-Chac
Heterologous expression of yeast Hxt2 in Arabidopsis thaliana alters sugar uptake, carbon metabolism and gene expression leading to glucose tolerance of germinating seedlings. Plant Mol. Biol., 2010. 72(6): p. 631-41 [PMID:20101436] - Irish VF
The flowering of Arabidopsis flower development. Plant J., 2010. 61(6): p. 1014-28 [PMID:20409275] - Matias-Hernandez L, et al.
VERDANDI is a direct target of the MADS domain ovule identity complex and affects embryo sac differentiation in Arabidopsis. Plant Cell, 2010. 22(6): p. 1702-15 [PMID:20581305] - Gim
Functional analysis of the Arlequin mutant corroborates the essential role of the Arlequin/TAGL1 gene during reproductive development of tomato. PLoS ONE, 2010. 5(12): p. e14427 [PMID:21203447] - Gomez MD,Urbez C,Perez-Amador MA,Carbonell J
Characterization of constricted fruit (ctf) mutant uncovers a role for AtMYB117/LOF1 in ovule and fruit development in Arabidopsis thaliana. PLoS ONE, 2011. 6(4): p. e18760 [PMID:21533201] - Nanni L, et al.
Nucleotide diversity of a genomic sequence similar to SHATTERPROOF (PvSHP1) in domesticated and wild common bean (Phaseolus vulgaris L.). Theor. Appl. Genet., 2011. 123(8): p. 1341-57 [PMID:21830108] - Smaczniak C, et al.
Characterization of MADS-domain transcription factor complexes in Arabidopsis flower development. Proc. Natl. Acad. Sci. U.S.A., 2012. 109(5): p. 1560-5 [PMID:22238427] - Severing EI, et al.
Predicting the impact of alternative splicing on plant MADS domain protein function. PLoS ONE, 2012. 7(1): p. e30524 [PMID:22295091] - Kim DY,Scalf M,Smith LM,Vierstra RD
Advanced proteomic analyses yield a deep catalog of ubiquitylation targets in Arabidopsis. Plant Cell, 2013. 25(5): p. 1523-40 [PMID:23667124] - Jin J, et al.
An Arabidopsis Transcriptional Regulatory Map Reveals Distinct Functional and Evolutionary Features of Novel Transcription Factors. Mol. Biol. Evol., 2015. 32(7): p. 1767-73 [PMID:25750178] - Matalon O, et al.
Dephosphorylation of the adaptor LAT and phospholipase C-γ by SHP-1 inhibits natural killer cell cytotoxicity. Sci Signal, 2016. 9(429): p. ra54 [PMID:27221712] - Ehlers K, et al.
The MADS Box Genes ABS, SHP1, and SHP2 Are Essential for the Coordination of Cell Divisions in Ovule and Seed Coat Development and for Endosperm Formation in Arabidopsis thaliana. PLoS ONE, 2016. 11(10): p. e0165075 [PMID:27776173] - Huang H, et al.
DNA binding properties of two Arabidopsis MADS domain proteins: binding consensus and dimer formation. Plant Cell, 1996. 8(1): p. 81-94 [PMID:8597661] - Flanagan CA,Hu Y,Ma H
Specific expression of the AGL1 MADS-box gene suggests regulatory functions in Arabidopsis gynoecium and ovule development. Plant J., 1996. 10(2): p. 343-53 [PMID:8771788]
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