Gene Details:
- Gene ID: AT2G45190
- Gene Symbol: AFO, FIL, YAB1
- Gene Name: ABNORMAL FLORAL ORGANS, FILAMENTOUS FLOWER, YABBY1
- Description: Plant-specific transcription factor YABBY family protein;(source:Araport11)
- TAIR Accession:
- Genome: Araport11_genome_release
- Species: Arabidopsis thaliana
Transcripts:
Plant Ontology Annotations:
- PO:0000037 — shoot axis apex — ápice del epiblasto (epiblastema) (Spanish, exact), シュート頂、茎頂 (Japanese, exact)
- PO:0008019 — leaf lamina base — base de la lámina de la hoja (Spanish, exact), 葉身基部 (Japanese, exact)
- PO:0009006 — shoot system — sistema de epiblasto (epiblastema) (Spanish, exact), シュート系、苗条系 (Japanese, exact), Poaceae crown (related), shoot (related), thalli (related), thallus (related), tree crown (narrow)
- PO:0009009 — plant embryo — embrión (Spanish, exact), 植物胚 (Japanese, exact), germ (related), embryo (broad)
- PO:0009025 — vascular leaf — foliage leaf (exact), hoja vascular (Spanish, exact), leaf, vascular (exact), vascular leaves (exact, plural), 維管束のある葉, または維管束植物の葉 (Japanese, exact), crozier (related), macrophyll (related), megaphyll (related), ascidia (narrow), ascidium (narrow), fiddlehead (narrow), frond (narrow), needle-like leaf (narrow), pitcher (narrow), pitcher blade (narrow), pitcher-blade (narrow), scale-like leaf (narrow), sterile frond (narrow), trophophyll (narrow)
- PO:0009031 — sepal — sépalo (Spanish, exact), がく片 (Japanese, exact)
- PO:0009046 — flower — flor (Spanish, exact), 花 (Japanese, exact), floret (related), Asteraceae floret (narrow), basal flower (narrow), double flower (narrow), hermaphrodite flower (narrow), monoclinous flower (narrow), perfect flower (narrow)
- PO:0009052 — inflorescence flower pedicel — 小花柄 (Japanese, related), pedicelo (Spanish, broad)
- PO:0020030 — cotyledon — cotiledón (Spanish, exact), seed leaf (exact), 子葉 (Japanese, exact)
- PO:0020038 — petiole — pecíolo (Spanish, exact), 葉柄 (Japanese, exact)
- PO:0025022 — collective leaf structure — estructura colectiva de hoja (Spanish, exact), leaf series (exact), 葉が集まった構造 (Japanese, exact), leaf whorl (narrow), rosette (narrow), cycle (broad), verticil (broad)
- PO:0006019 — leaf abaxial epidermis — epidermis abaxial de la hoja (Spanish, exact), 葉背軸側表皮 (Japanese, exact), lower epidermis (related)
Germplasm Phenotype:
- CS6377 — Floral primordia have reduced capacity to form flowers, giving rise to a variety of structures including: clusters of numerous flowerless pedicels (filament-like structures), stalked curled sepals, flowers with pedicel organs and long pedicels; altered floral organ number, organ position, organ identity and organ development during flower development; these defects become stronger at more acropetal positions; partially male sterile; intermediate allele.
- CS6378 — Floral primordia have reduced capacity to form flowers, giving rise to a variety of structures including: clusters of numerous flowerless pedicels (filament-like structures), stalked curled sepals, flowers with pedicel organs and long pedicels; altered floral organ number, organ position, organ identity and organ development during flower development; these defects become stronger at more acropetal positions; partially male sterile; weak allele.
- CS6379 — Floral primordia have reduced capacity to form flowers, giving rise to a variety of structures including: clusters of numerous flowerless pedicels (filament-like structures), stalked curled sepals, flowers with pedicel organs and long pedicels; altered floral organ number, organ position, organ identity and organ development during flower development; these defects become stronger at more acropetal positions; partially male sterile; strong allele.
- CS6380 — Floral primordia have reduced capacity to form flowers, giving rise to a variety of structures including: clusters of numerous flowerless pedicels (filament-like structures), stalked curled sepals, flowers with pedicel organs and long pedicels; altered floral organ number, organ position, organ identity and organ development during flower development; these defects become stronger at more acropetal positions; partially male sterile; strong allele.
- CS6381 — Floral primordia have reduced capacity to form flowers, giving rise to a variety of structures including: clusters of numerous flowerless pedicels (filament-like structures), stalked curled sepals, flowers with pedicel organs and long pedicels; altered floral organ number, organ position, organ identity and organ development during flower development; these defects become stronger at more acropetal positions; partially male sterile; strong allele.
Function-related keywords:
- shoot axis apex , leaf lamina base , shoot system , plant embryo , vascular leaf , sepal , flower , inflorescence flower pedicel , cotyledon , petiole , collective leaf structure , leaf abaxial epidermis
Literature:
- The SPOROCYTELESS gene of Arabidopsis is required for initiation of sporogenesis and encodes a novel nuclear protein. DOI: 10.1101/gad.13.16.2108 ; PMID: 10465788
- Members of the YABBY gene family specify abaxial cell fate in Arabidopsis. DOI: 10.1242/dev.126.18.4117 ; PMID: 10457020
- The Arabidopsis FILAMENTOUS FLOWER gene is required for flower formation. DOI: 10.1242/dev.126.12.2715 ; PMID: 10331982
- FILAMENTOUS FLOWER, a meristem and organ identity gene of Arabidopsis, encodes a protein with a zinc finger and HMG-related domains. DOI: 10.1101/gad.13.9.1079 ; PMID: 10323860
- FILAMENTOUS FLOWER controls the formation and development of arabidopsis inflorescences and floral meristems. DOI: 10.1105/tpc.11.1.69 ; PMID: 9878633
- Arabidopsis transcription factors: genome-wide comparative analysis among eukaryotes. DOI: 10.1126/science.290.5499.2105 ; PMID: 11118137
- Zinc release from the CH2C6 zinc finger domain of FILAMENTOUS FLOWER protein from Arabidopsis thaliana induces self-assembly. DOI: 10.1074/jbc.M009491200 ; PMID: 11092895
- Non-sequence-specific DNA binding by the FILAMENTOUS FLOWER protein from Arabidopsis thaliana is reduced by EDTA. DOI: 10.1074/jbc.M108889200 ; PMID: 11812777
- YABBY polarity genes mediate the repression of KNOX homeobox genes in Arabidopsis. DOI: 10.1105/tpc.004911 ; PMID: 12417699
- Two discrete cis elements control the Abaxial side-specific expression of the FILAMENTOUS FLOWER gene in Arabidopsis. DOI: 10.1105/tpc.015214 ; PMID: 14555697
- Organ polarity in Arabidopsis. NOZZLE physically interacts with members of the YABBY family. DOI: 10.1104/pp.104.040154 ; PMID: 15299139
- Multiple protein regions contribute to differential activities of YABBY proteins in reproductive development. DOI: 10.1104/pp.104.055368 ; PMID: 15665244
- A genetic framework for fruit patterning in Arabidopsis thaliana. DOI: 10.1242/dev.02062 ; PMID: 16192305
- SEUSS and LEUNIG regulate cell proliferation, vascular development and organ polarity in Arabidopsis petals. DOI: 10.1007/s00425-006-0264-6 ; PMID: 16625397
- AINTEGUMENTA contributes to organ polarity and regulates growth of lateral organs in combination with YABBY genes. DOI: 10.1104/pp.106.076604 ; PMID: 16714408
- Genetic interaction between the AS1-AS2 and RDR6-SGS3-AGO7 pathways for leaf morphogenesis. DOI: 10.1093/pcp/pcj057 ; PMID: 16699177
- Specification of leaf polarity in Arabidopsis via the trans-acting siRNA pathway. DOI: 10.1016/j.cub.2006.03.064 ; PMID: 16682355
- The proteolytic function of the Arabidopsis 26S proteasome is required for specifying leaf adaxial identity. DOI: 10.1105/tpc.106.045013 ; PMID: 17028202
- A WUSCHEL-LIKE HOMEOBOX gene represses a YABBY gene expression required for rice leaf development. DOI: 10.1104/pp.107.095737 ; PMID: 17351053
- Genetic interactions between leaf polarity-controlling genes and ASYMMETRIC LEAVES1 and 2 in Arabidopsis leaf patterning. DOI: 10.1093/pcp/pcm040 ; PMID: 17395603
- BLADE-ON-PETIOLE 1 and 2 control Arabidopsis lateral organ fate through regulation of LOB domain and adaxial-abaxial polarity genes. DOI: 10.1105/tpc.107.051938 ; PMID: 17601823
- Pattern formation during de novo assembly of the Arabidopsis shoot meristem. DOI: 10.1242/dev.010298 ; PMID: 17827180
- Global analysis of Arabidopsis gene expression uncovers a complex array of changes impacting pathogen response and cell cycle during geminivirus infection. DOI: 10.1104/pp.108.121038 ; PMID: 18650403
- Meristematic sculpting in fruit development. DOI: 10.1093/jxb/erp031 ; PMID: 19246597
- The NGATHA distal organ development genes are essential for style specification in Arabidopsis. DOI: 10.1105/tpc.109.065482 ; PMID: 19435933
- YABBYs and the transcriptional corepressors LEUNIG and LEUNIG_HOMOLOG maintain leaf polarity and meristem activity in Arabidopsis. DOI: 10.1105/tpc.109.070458 ; PMID: 19837869
- A new role for the SHATTERPROOF genes during Arabidopsis gynoecium development. DOI: 10.1016/j.ydbio.2009.10.043 ; PMID: 19900437
- GRAMINIFOLIA homolog expression in Streptocarpus rexii is associated with the basal meristems in phyllomorphs, a morphological novelty in Gesneriaceae. DOI: 10.1111/j.1525-142X.2009.00391.x ; PMID: 20156283
- A novel allele of FILAMENTOUS FLOWER reveals new insights on the link between inflorescence and floral meristem organization and flower morphogenesis. DOI: 10.1186/1471-2229-10-131 ; PMID: 20584289
- Control of Arabidopsis leaf morphogenesis through regulation of the YABBY and KNOX families of transcription factors. DOI: 10.1534/genetics.110.118703 ; PMID: 20610407
- Ribosomal protein L27a is required for growth and patterning in Arabidopsis thaliana. DOI: 10.1111/j.1365-313X.2010.04422.x ; PMID: 21223391
- Succinic semialdehyde dehydrogenase is involved in the robust patterning of Arabidopsis leaves along the adaxial-abaxial axis. DOI: 10.1093/pcp/pcr079 ; PMID: 21690177
- Involvement of ribosomal protein RPL27a in meristem activity and organ development. DOI: 10.4161/psb.6.5.15070 ; PMID: 21448008
- HYL1 regulates the balance between adaxial and abaxial identity for leaf flattening via miRNA-mediated pathways. DOI: 10.1093/jxb/err167 ; PMID: 21610018
- Evolution of the YABBY gene family with emphasis on the basal eudicot Eschscholzia californica (Papaveraceae). DOI: 10.1111/j.1438-8677.2011.00486.x ; PMID: 21974722
- A FILAMENTOUS FLOWER orthologue plays a key role in leaf patterning in opium poppy. DOI: 10.1111/j.1365-313X.2012.05112.x ; PMID: 22816617
- FILAMENTOUS FLOWER controls lateral organ development by acting as both an activator and a repressor. DOI: 10.1186/1471-2229-12-176 ; PMID: 23025792
- Antagonistic gene activities determine the formation of pattern elements along the mediolateral axis of the Arabidopsis fruit. DOI: 10.1371/journal.pgen.1003020 ; PMID: 23133401
- Adaxial-abaxial patterning: a novel function of the GABA shunt. DOI: 10.4161/psb.20346 ; PMID: 22751326
- Isolation and characterization of two VpYABBY genes from wild Chinese Vitis pseudoreticulata. DOI: 10.1007/s00709-013-0514-y ; PMID: 23728789
- HYL1 is required for establishment of stamen architecture with four microsporangia in Arabidopsis. DOI: 10.1093/jxb/ert178 ; PMID: 23918970
- Pattern dynamics in adaxial-abaxial specific gene expression are modulated by a plastid retrograde signal during Arabidopsis thaliana leaf development. DOI: 10.1371/journal.pgen.1003655 ; PMID: 23935517
- Ribonuclease J is required for chloroplast and embryo development in Arabidopsis. DOI: 10.1093/jxb/erv010 ; PMID: 25871650
- FILAMENTOUS FLOWER Is a Direct Target of JAZ3 and Modulates Responses to Jasmonate. DOI: 10.1105/tpc.15.00220 ; PMID: 26530088
- Three TOB1-related YABBY genes are required to maintain proper function of the spikelet and branch meristems in rice. DOI: 10.1111/nph.14617 ; PMID: 28556940
- Genetic Interactions Between BOB1 and Multiple 26S Proteasome Subunits Suggest a Role for Proteostasis in Regulating Arabidopsis Development. DOI: 10.1534/g3.118.300496 ; PMID: 29487187
- Nα-Acetyltransferases 10 and 15 are Required for the Correct Initiation of Endosperm Cellularization in Arabidopsis. DOI: 10.1093/pcp/pcy135 ; PMID: 30020502
- A PXY-Mediated Transcriptional Network Integrates Signaling Mechanisms to Control Vascular Development in Arabidopsis. DOI: 10.1105/tpc.19.00562 ; PMID: 31806676
- LFR Physically and Genetically Interacts With SWI/SNF Component SWI3B to Regulate Leaf Blade Development in Arabidopsis. DOI: 10.3389/fpls.2021.717649 ; PMID: 34456957
- Arabidopsis transcription factors: genome-wide comparative analysis among eukaryotes. DOI: 10.1126/science.290.5499.2105 ; PMID: 11118137
- Expression pattern shifts following duplication indicative of subfunctionalization and neofunctionalization in regulatory genes of Arabidopsis. DOI: 10.1093/molbev/msj051 ; PMID: 16280546
- KANADI and class III HD-Zip gene families regulate embryo patterning and modulate auxin flow during embryogenesis in Arabidopsis. DOI: 10.1105/tpc.106.047472 ; PMID: 17307928
Sequences:
cDNA Sequence
- >AT2G45190.2
ACCTCTCTTCAATACTTTCTCTCTCATTTTTTCTCCTCCAACTTCTCATCTTCTTGATCTATACAAGATTAGGGGTTTTTTAAATTCATTGTTTCTTTTGTGTGCTTATAGGTTAATGTTCCTTACACAAGCTTGTTCAAGACCGTAACTGTCCGATGTGGTTGCTGTACCAATCTCCTTTCGGTGAACATGAGATCATATGTCCTCCCAGCTTCTAACCAGCTCCAGCTCCAGCTCGGTCCTCACTCTTACTTCAATCCCCAGGATATTCTGGAGGAGCTGAGAGATGCACCGTCTAACATGAATATGATGATGATGAATCAACATCCTACTATGAATGACATACCATCTTTCATGGATCTTCATCAACAACATGAGATTCCTAAAGCACCACCCGTTAACCGCCCTCCAGAGAAAAGACAGAGAGTCCCATCCGCATATAACCGATTCATCAAGGAGGAGATCCAACGTATCAAAGCTGGTAATCCTGATATAAGCCACAGAGAAGCCTTTAGTGCTGCTGCCAAGAATTGGGCCCACTTCCCCCACATACACTTCGGGCTCGTGCCAGACAATCAACCCGTGAAGAAAACCAACATGCCCCAACAGGAGGGAGAGGATAACATGGTGATGAAAGAAGGGTTCTACGCTCCTGCAGCTGCTAACGTTGGTGTGACTCCTTATTAAAGAGATAAATATAATCGACTAAGTATTTGAGGAATTGAAATCCAATTTCTTAGGGTTTATCATGTCCAAAAGTTGTGGTTTCTTTTCCTTTCTTGAACTTATTTATATATATTATAAATATGCATGTGTCTTTTTCTGTTGTTGTAATCAAAAATCTTGCTAATTAATGGGGTTTCTTAAGTTAA - >AT2G45190.1
ACCTCTCTTCAATACTTTCTCTCTCATTTTTTCTCCTCCAACTTCTCATCTTCTTGATCTATACAAGATTAGGGGTTTTTTAAATTCATTGTTTCTTTTGTGTGCTTATAGGTTAATGTTCCTTACACAAGCTTGTTCAAGACCGTAACTGTCCGATGTGGTTGCTGTACCAATCTCCTTTCGGTGAACATGAGATCATATGTCCTCCCAGCTTCTAACCAGCTCCAGCTCCAGCTCGGTCCTCACTCTTACTTCAATCCCCAGGATATTCTGGAGGAGCTGAGAGATGCACCGTCTAACATGAATATGATGATGATGAATCAACATCCTACTATGAATGACATACCATCTTTCATGGATCTTCATCAACAACATGAGATTCCTAAAGCACCACCCGTTAACCGCCCTCCAGAGAAAAGACAGAGAGTCCCATCCGCATATAACCGATTCATCAAGGAGGAGATCCAACGTATCAAAGCTGGTAATCCTGATATAAGCCACAGAGAAGCCTTTAGTGCTGCTGCCAAGAATTGGGCCCACTTCCCCCACATACACTTCGGGCTCGTGCCAGACAATCAACCCGTGAAGAAAACCAACATGCCCCAACAGGAGGGAGAGGATAACATGGTGATGAAAGAAGGGTTCTACGCTCCTGCAGCTGCTAACGTTGGTGTGACTCCTTATTAAAGAGATAAATATAATCGACTAAGTATTTGAGGAATTGAAATCCAATTTCTTAGGGTTTATCATGTCCAAAAGTTGTGGTTTCTTTTCCTTTCTTGAACTTATTTATATATATTATAAATATGCATGTGTCTTTTTCTGTTGTTGTAATCAAAAATCTTGCTAATTAATGGGGTTTCTTAAGTTAA
CDS Sequence
- >AT2G45190.2
ATGAGATCATATGTCCTCCCAGCTTCTAACCAGCTCCAGCTCCAGCTCGGTCCTCACTCTTACTTCAATCCCCAGGATATTCTGGAGGAGCTGAGAGATGCACCGTCTAACATGAATATGATGATGATGAATCAACATCCTACTATGAATGACATACCATCTTTCATGGATCTTCATCAACAACATGAGATTCCTAAAGCACCACCCGTTAACCGCCCTCCAGAGAAAAGACAGAGAGTCCCATCCGCATATAACCGATTCATCAAGGAGGAGATCCAACGTATCAAAGCTGGTAATCCTGATATAAGCCACAGAGAAGCCTTTAGTGCTGCTGCCAAGAATTGGGCCCACTTCCCCCACATACACTTCGGGCTCGTGCCAGACAATCAACCCGTGAAGAAAACCAACATGCCCCAACAGGAGGGAGAGGATAACATGGTGATGAAAGAAGGGTTCTACGCTCCTGCAGCTGCTAACGTTGGTGTGACTCCTTATTAA - >AT2G45190.1
ATGAGATCATATGTCCTCCCAGCTTCTAACCAGCTCCAGCTCCAGCTCGGTCCTCACTCTTACTTCAATCCCCAGGATATTCTGGAGGAGCTGAGAGATGCACCGTCTAACATGAATATGATGATGATGAATCAACATCCTACTATGAATGACATACCATCTTTCATGGATCTTCATCAACAACATGAGATTCCTAAAGCACCACCCGTTAACCGCCCTCCAGAGAAAAGACAGAGAGTCCCATCCGCATATAACCGATTCATCAAGGAGGAGATCCAACGTATCAAAGCTGGTAATCCTGATATAAGCCACAGAGAAGCCTTTAGTGCTGCTGCCAAGAATTGGGCCCACTTCCCCCACATACACTTCGGGCTCGTGCCAGACAATCAACCCGTGAAGAAAACCAACATGCCCCAACAGGAGGGAGAGGATAACATGGTGATGAAAGAAGGGTTCTACGCTCCTGCAGCTGCTAACGTTGGTGTGACTCCTTATTAA
Protein Sequence
- >AT2G45190.2
MRSYVLPASNQLQLQLGPHSYFNPQDILEELRDAPSNMNMMMMNQHPTMNDIPSFMDLHQQHEIPKAPPVNRPPEKRQRVPSAYNRFIKEEIQRIKAGNPDISHREAFSAAAKNWAHFPHIHFGLVPDNQPVKKTNMPQQEGEDNMVMKEGFYAPAAANVGVTPY - >AT2G45190.1
MRSYVLPASNQLQLQLGPHSYFNPQDILEELRDAPSNMNMMMMNQHPTMNDIPSFMDLHQQHEIPKAPPVNRPPEKRQRVPSAYNRFIKEEIQRIKAGNPDISHREAFSAAAKNWAHFPHIHFGLVPDNQPVKKTNMPQQEGEDNMVMKEGFYAPAAANVGVTPY