Signature Domain? help Back to Top |
|
No. |
Domain |
Score |
E-value |
Start |
End |
HMM Start |
HMM End |
1 | B3 | 46.3 | 7.9e-15 | 1 | 87 | 16 | 99 |
EE--HHH.HTT..---..--SEEEEEETTS.-EEEEEE....EEETTEEEE-TTHHHHHHHHT--TT-EEEEEE-SS.SEE..EEEEE-S CS
B3 16 lvlpkkfaeeh..ggkkeesktltledesg.rsWevkliy..rkksgryvltkGWkeFvkangLkegDfvvFkldgr.sefelvvkvfrk 99
+vlpkk ae++ ++++e+++l + d++g W++k+++ +++s++yvl+ ++ +Fv+ +gL+ gD+++++ ++ ++ ++v++++++
Vradi04g04870.1 1 MVLPKKSAESFlpALDSKEGIMLNMDDKDGtHAWNFKYRFwpNNNSRMYVLE-NTGDFVRTHGLRFGDTIMIY--QHiENDNYVIQARKA 87
79***********7778899**********99******9989999999***9.*******************9..555777788888765 PP
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Publications
? help Back to Top |
- Yang C, et al.
VAL- and AtBMI1-mediated H2Aub initiate the switch from embryonic to postgerminative growth in Arabidopsis. Curr. Biol., 2013. 23(14): p. 1324-9 [PMID:23810531] - Jia H,McCarty DR,Suzuki M
Distinct roles of LAFL network genes in promoting the embryonic seedling fate in the absence of VAL repression. Plant Physiol., 2013. 163(3): p. 1293-305 [PMID:24043445] - Kim HU, et al.
Ectopic overexpression of castor bean LEAFY COTYLEDON2 (LEC2) in Arabidopsis triggers the expression of genes that encode regulators of seed maturation and oil body proteins in vegetative tissues. FEBS Open Bio, 2013. 4: p. 25-32 [PMID:24363987] - Rikiishi K,Maekawa M
Seed maturation regulators are related to the control of seed dormancy in wheat (Triticum aestivum L.). PLoS ONE, 2014. 9(9): p. e107618 [PMID:25211528] - Yamamoto A, et al.
Cell-by-cell developmental transition from embryo to post-germination phase revealed by heterochronic gene expression and ER-body formation in Arabidopsis leafy cotyledon mutants. Plant Cell Physiol., 2014. 55(12): p. 2112-25 [PMID:25282558] - Shen Y,Devic M,Lepiniec L,Zhou DX
Chromodomain, Helicase and DNA-binding CHD1 protein, CHR5, are involved in establishing active chromatin state of seed maturation genes. Plant Biotechnol. J., 2015. 13(6): p. 811-20 [PMID:25581843] - Chen M, et al.
TRANSPARENT TESTA GLABRA1 Regulates the Accumulation of Seed Storage Reserves in Arabidopsis. Plant Physiol., 2015. 169(1): p. 391-402 [PMID:26152712] - Schneider A, et al.
Potential targets of VIVIPAROUS1/ABI3-LIKE1 (VAL1) repression in developing Arabidopsis thaliana embryos. Plant J., 2016. 85(2): p. 305-19 [PMID:26678037] - Baud S, et al.
Deciphering the Molecular Mechanisms Underpinning the Transcriptional Control of Gene Expression by Master Transcriptional Regulators in Arabidopsis Seed. Plant Physiol., 2016. 171(2): p. 1099-112 [PMID:27208266] - Zhang M,Cao X,Jia Q,Ohlrogge J
FUSCA3 activates triacylglycerol accumulation in Arabidopsis seedlings and tobacco BY2 cells. Plant J., 2016. 88(1): p. 95-107 [PMID:27288837] - Fatihi A, et al.
Deciphering and modifying LAFL transcriptional regulatory network in seed for improving yield and quality of storage compounds. Plant Sci., 2016. 250: p. 198-204 [PMID:27457996] - Chiu RS,Pan S,Zhao R,Gazzarrini S
ABA-dependent inhibition of the ubiquitin proteasome system during germination at high temperature in Arabidopsis. Plant J., 2016. 88(5): p. 749-761 [PMID:27496613] - Tang LP, et al.
FUSCA3 interacting with LEAFY COTYLEDON2 controls lateral root formation through regulating YUCCA4 gene expression in Arabidopsis thaliana. New Phytol., 2017. 213(4): p. 1740-1754 [PMID:27878992] - Duong S,Vonapartis E,Li CY,Patel S,Gazzarrini S
The E3 ligase ABI3-INTERACTING PROTEIN2 negatively regulates FUSCA3 and plays a role in cotyledon development in Arabidopsis thaliana. J. Exp. Bot., 2017. 68(7): p. 1555-1567 [PMID:28369580] - Han JD, et al.
Evolutionary Analysis of the LAFL Genes Involved in the Land Plant Seed Maturation Program. Front Plant Sci, 2017. 8: p. 439 [PMID:28421087] - Sun F, et al.
Functional Characterization of TaFUSCA3, a B3-Superfamily Transcription Factor Gene in the Wheat. Front Plant Sci, 2017. 8: p. 1133 [PMID:28702045] - Horstman A, et al.
The BABY BOOM Transcription Factor Activates the LEC1-ABI3-FUS3-LEC2 Network to Induce Somatic Embryogenesis. Plant Physiol., 2017. 175(2): p. 848-857 [PMID:28830937] - Chan A, et al.
SnRK1 phosphorylation of FUSCA3 positively regulates embryogenesis, seed yield, and plant growth at high temperature in Arabidopsis. J. Exp. Bot., 2017. 68(15): p. 4219-4231 [PMID:28922765] - Geilen K,Heilmann M,Hillmer S,Böhmer M
WRKY43 regulates polyunsaturated fatty acid content and seed germination under unfavourable growth conditions. Sci Rep, 2017. 7(1): p. 14235 [PMID:29079824] - Hanano A,Almousally I,Shaban M,Murphy DJ
Arabidopsis plants exposed to dioxin result in a WRINKLED seed phenotype due to 20S proteasomal degradation of WRI1. J. Exp. Bot., 2018. 69(7): p. 1781-1794 [PMID:29394403] - Chen N,Veerappan V,Abdelmageed H,Kang M,Allen RD
HSI2/VAL1 Silences AGL15 to Regulate the Developmental Transition from Seed Maturation to Vegetative Growth in Arabidopsis. Plant Cell, 2018. 30(3): p. 600-619 [PMID:29475938]
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