Information report for AT4G28140
Gene Details
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Functional Descriptions
- 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:0009029 — stamen — estambre (Spanish, exact), 雄蕊 (Japanese, exact), Poaceae stamen (narrow), Zea stamen (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: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:0000026 — primary root tip — punta de la raíz primaria (Spanish, exact), 一次根端 (Japanese, exact)
- PO:0000272 — protoxylem — portion of protoxylem tissue (exact), protoxilema (Spanish, exact), 原生木(質)部 (Japanese, exact)
- PO:0000372 — metaxylem — metaxilema (Spanish, exact), portion of metaxylem tissue (exact), 後生木部 (Japanese, exact)
- PO:0003015 — primary root differentiation zone — zona de diferenciación de la raíz primary (Spanish, exact), 一次根分化帯(層) (Japanese, exact)
- PO:0020124 — root stele — estela de la raíz (Spanish, exact), 根中心柱 (Japanese, exact), root vascular cylinder (related)
- PO:0025257 — primary root elongation zone — zona de elongación de la raíz primaria (Spanish, exact), 一次根伸長帯(層) (Japanese, exact)
- GO:0000976 — enables — transcription cis-regulatory region binding
- GO:0005634 — is active in — nucleus
- GO:0006355 — involved in — regulation of DNA-templated transcription
- GO:0005634 — located in — nucleus
- GO:0009408 — acts upstream of or within — response to heat
- GO:0003700 — enables — DNA-binding transcription factor activity
Functional Keywords
Literature and News
- Arabidopsis transcription factors: genome-wide comparative analysis among eukaryotes. DOI: 10.1126/science.290.5499.2105 ; PMID: 11118137
- Comparative genomics in salt tolerance between Arabidopsis and aRabidopsis-related halophyte salt cress using Arabidopsis microarray. DOI: 10.1104/pp.104.039909 ; PMID: 15247402
- Type III effectors orchestrate a complex interplay between transcriptional networks to modify basal defence responses during pathogenesis and resistance. DOI: 10.1111/j.1365-313X.2006.02672.x ; PMID: 16553893
- Transcriptional and posttranscriptional regulation of transcription factor expression in Arabidopsis roots. DOI: 10.1073/pnas.0510607103 ; PMID: 16581911
- Quantification of transcription factor expression from Arabidopsis images. DOI: 10.1093/bioinformatics/btl228 ; PMID: 16873489
- Identification of 118 Arabidopsis transcription factor and 30 ubiquitin-ligase genes responding to chitin, a plant-defense elicitor. DOI: 10.1094/MPMI-20-8-0900 ; PMID: 17722694
- Light has a specific role in modulating Arabidopsis gene expression at low temperature. DOI: 10.1186/1471-2229-8-13 ; PMID: 18230142
- and extracellular-sourced ROS on high light-responsive gene expression in Arabidopsis. DOI: 10.1093/jxb/erm289 ; PMID: 18212028
- Four distinct types of dehydration stress memory genes in Arabidopsis thaliana. DOI: 10.1186/1471-2229-13-229 ; PMID: 24377444
- An Arabidopsis gene regulatory network for secondary cell wall synthesis. DOI: 10.1038/nature14099 ; PMID: 25533953
- Establishment of Expression in the SHORTROOT-SCARECROW Transcriptional Cascade through Opposing Activities of Both Activators and Repressors. DOI: 10.1016/j.devcel.2016.09.031 ; PMID: 27923776
- Transcriptional Profiling Reveals a Time-of-Day-Specific Role of REVEILLE 4/8 in Regulating the First Wave of Heat Shock-Induced Gene Expression in Arabidopsis. DOI: 10.1105/tpc.19.00519 ; PMID: 31358650
- Transcriptional regulation of nitrogen-associated metabolism and growth. DOI: 10.1038/s41586-018-0656-3 ; PMID: 30356219
- A PXY-Mediated Transcriptional Network Integrates Signaling Mechanisms to Control Vascular Development in Arabidopsis. DOI: 10.1105/tpc.19.00562 ; PMID: 31806676
- The phytochrome interacting proteins ERF55 and ERF58 repress light-induced seed germination in Arabidopsis thaliana. DOI: 10.1038/s41467-022-29315-3 ; PMID: 35351902
- 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
- Genome-wide analysis of the ERF gene family in Arabidopsis and rice. DOI: 10.1104/pp.105.073783 ; PMID: 16407444
- Transcriptional and posttranscriptional regulation of transcription factor expression in Arabidopsis roots. DOI: 10.1073/pnas.0510607103 ; PMID: 16581911
- Identification of 118 Arabidopsis transcription factor and 30 ubiquitin-ligase genes responding to chitin, a plant-defense elicitor. DOI: 10.1094/MPMI-20-8-0900 ; PMID: 17722694
Gene Resources
- UniProt: A0A654FTZ4
- EMBL: CACRSJ010000109, LR881469
- AlphaFoldDB: A0A654FTZ4
- EnsemblPlants: AT4G28140.1
- Gramene: AT4G28140.1
- KEGG: ath:AT4G28140
- Orthologous matrix: CEEMEWG
- ExpressionAtlas: AT4G28140
- InterPro: IPR001471, IPR016177, IPR036955
- PANTHER: PTHR31657, PTHR31657:SF36
- SUPFAM: SSF54171
- PROSITE: PS51032
- Gene3D: 3.30.730.10
- SWISS-MODEL: A0A654FTZ4
- Conserved Domain Database: cd00018
Sequences
cDNA Sequence
- >AT4G28140.1
TCTCTCTTACCAAATAAGAACAAAACAAGACATAATTTTCTCTGTTTTCCTAGCTCTCTCCTCTCAAATTCTTCCATTGCTCTCTGTTTTGGCAAATCGTGAACTGCCACGTCTTTAAGGCATCAGTGAAGCAAAGATGGACTTTGACGAGGAGCTAAATCTTTGTATTACGAAAGGTAAAAATGTTGATCATTCTTTTGGAGGAGAAGCTTCTTCCACGTCCCCAAGATCTATGAAGAAAATGAAGAGTCCTAGTCGTCCTAAACCCTATTTCCAATCCTCTTCTTCTCCTTATTCGTTAGAGGCTTTCCCTTTTTCTCTCGATCCAACACTTCAGAATCAGCAACAACAACTCGGATCATACGTTCCGGTACTTGAGCAACGACAAGACCCGACAATGCAAGGCCAGAAGCAAATGATCTCCTTTAGTCCTCAACAACAACAACAGCAGCAGCAGTATATGGCCCAGTACTGGAGTGACACATTGAATCTGAGTCCAAGAGGAAGAATGATGATGATGATGAGCCAAGAAGCTGTTCAACCTTACATCGCAACGAAGCTGTACAGAGGAGTGAGACAACGTCAATGGGGAAAATGGGTCGCAGAGATCCGTAAGCCACGAAGCAGGGCACGTCTTTGGCTTGGTACCTTTGATACAGCTGAAGAAGCTGCCATGGCCTACGACCGCCAAGCCTTCAAATTACGAGGCCACAGCGCAACACTGAATTTCCCGGAGCATTTTGTGAATAAGGAAAGCGAGCTGCATGATTCAAACTCGTCGGATCAGAAAGAACCTGAAACGCCACAGCCAAGCGAGGTTAACTTGGAGAGCAAGGAACTACCGGTGATTGATGTTGGGAGAGAGGAAGGTATGGCTGAGGCATGGTACAATGCCATTACATCGGGATGGGGTCCTGAAAGTCCTCTTTGGGATGATTTGGATAGTTCTCATCAGTTTTCATCAGAAAGCTCATCTTCTTCTCCTCTCTCTTGTCCTATGAGGCCTTTCTTTTGAAAAAGTTTATAAACCCACATTGTGTTGTAGGTTATAGTTTAGGGTTATGCTCATTGGCATTTGGATGGAGGCAATTTTTGTGATCTCCCATTCCACCACATATCAGTCATTATATGTGTCTACCTTTTCTCTGTATTTCTATCATTATCATTGTTTTTATTATGTGTCTGTATGTGTTTCCCTATTGCTACATACATAGATGTCCTCTTTGTTCATTGAGTTTGTTATCTGTACTTTTACAACTTGGCAACATCACATAGTCTGCAGAGGTTGTTATAATGACCTCTGCCTATCATGCAAGATCTTTATGCATCTTTGAGTTTCTACGAGAAGTCTCTGGAGAAGTCAAGTGACACTTCCAAAAGAACTAGAGGGTTCGATTTAATAGGCAAGAAGAAAGTCCCAAAAGTCT
CDS Sequence
Protein Sequence