Gene Details:
- Gene ID: AT1G01120
- Gene Symbol: KCS1
- Gene Name: 3-ketoacyl-CoA synthase 1
- Description: 3-ketoacyl-CoA synthase 1;(source:Araport11)
- TAIR Accession: locus:2200955
- Genome: Araport11_genome_release
- Species: Arabidopsis thaliana
Transcripts:
Plant Ontology Annotations:
- PO:0000013 — cauline leaf — hoja caulinar (Spanish, exact), 茎生葉、茎葉 (Japanese, exact)
- PO:0000230 — inflorescence meristem — meristema de la inflorescencia (Spanish, exact), 花序分裂組織 (Japanese, exact)
- PO:0009010 — seed — semilla (Spanish, exact), 種子 (Japanese, exact), pyrene (narrow), diaspore (broad)
- PO:0009030 — carpel — carpelo (Spanish, exact), 心皮 (Japanese, exact), Poaceae carpel (narrow), Zea carpel (narrow), pistil (broad)
- PO:0009032 — petal — pétalo (Spanish, exact), 花弁 (Japanese, exact)
- PO:0009047 — stem — caña (Spanish, exact), culm (exact), eje primario (Spanish, exact), primary axis (exact), primary stem (exact), tallo (Spanish, exact), tronco (Spanish, exact), 茎 (Japanese, exact), bole (narrow), cane (narrow), caudex (narrow), caudices (narrow), core (narrow), primocane (narrow), scape (narrow), stalk (narrow), trunk (narrow)
- PO:0025281 — pollen — polen (Spanish, exact), pollen grain (exact), 花粉 (Japanese, exact)
- PO:0000014 — rosette leaf — hoja en roseta (Spanish, exact), ロゼット葉 (Japanese, exact)
- PO:0000112 — shoot axis epidermis — epidermis del eje del tallo (Spanish, exact), シュート軸表皮 (Japanese, exact), branch epidermis (narrow)
- PO:0006504 — leaf trichome — tricoma de hoja (Spanish, exact), 葉毛(毛茸、糸状体) (Japanese, exact), phyllid trichome (narrow)
- PO:0009001 — fruit — frucht (exact, German), fruto (exact, Spanish), 果実 (exact, Japanese), coenocarp (narrow), syncarp (narrow), aggregate fruit (broad), compound fruit (broad), dehiscent fruit (broad), diaspore (broad), indehiscent fruit (broad), multiple fruit (broad), propagule (broad)
- PO:0009005 — root — raíz (Spanish, exact), radices (exact, plural), radix (exact), 根 (Japanese, exact), aerial root (narrow), climbing root (narrow)
- 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:0009067 — filament — filamento (Spanish, exact), 花糸 (Japanese, exact), Poaceae filament (narrow), Zea filament (narrow)
- PO:0009073 — stigma — estigma (Spanish, exact), stigmas (exact, plural), stigmata (exact, plural), 柱頭 (Japanese, exact), Poaceae stigma (narrow), Zea stigma (narrow)
- PO:0020030 — cotyledon — cotiledón (Spanish, exact), seed leaf (exact), 子葉 (Japanese, exact)
- PO:0020148 — shoot apical meristem — SAM (exact), meristema apical del epiblasto (epiblastema) (Spanish, exact), 茎頂分裂組織 (Japanese, exact), primary shoot meristem (related), promeristem (broad)
- PO:0000293 — guard cell — célula guardiana (Spanish, exact), occlusive cell (exact), 孔辺細胞 (Japanese, exact)
Gene Ontology:
- GO:0070417 — acts upstream of or within — cellular response to cold
- GO:0010025 — acts upstream of or within — wax biosynthetic process
- GO:0030497 — acts upstream of or within — fatty acid elongation
- GO:0042761 — acts upstream of or within — very long-chain fatty acid biosynthetic process
- GO:0009416 — acts upstream of or within — response to light stimulus
- GO:0009922 — enables — fatty acid elongase activity
- GO:0022626 — located in — cytosolic ribosome
- GO:0000038 — acts upstream of or within — very long-chain fatty acid metabolic process
- GO:0005737 — located in — cytoplasm
- GO:0005515 — enables — protein binding
- GO:0009409 — acts upstream of or within — response to cold
- GO:0016020 — located in — membrane
- GO:0005783 — located in — endoplasmic reticulum
Germplasm Phenotype:
- kcs1 — Thin stems, sensitive to low humidity
Function-related keywords:
- cauline leaf , inflorescence meristem , seed , carpel , petal , stem , pollen , cauline leaf , rosette leaf , shoot axis epidermis , leaf trichome , fruit , root , flower , stem , filament , stigma , cotyledon , shoot apical meristem , guard cell
Literature:
- SHORT-ROOT regulates vascular patterning, but not apical meristematic activity in the Arabidopsis root through cytokinin homeostasis. DOI: 10.4161/psb.19118 ; PMID: 22476466
- In situ detection of mature miRNAs in plants using LNA-modified DNA probes. DOI: 10.1007/978-1-61779-839-9_11 ; PMID: 22589131
- The three-domain model: a new model for the early development of leaves in Arabidopsis thaliana. DOI: 10.4161/psb.21959 ; PMID: 22951404
- A comprehensive expression analysis of the Arabidopsis MICRORNA165/6 gene family during embryogenesis reveals a conserved role in meristem specification and a non-cell-autonomous function. DOI: 10.1093/pcp/pcs188 ; PMID: 23292599
- GUS activity for miR165a/166b, REV, and WUS/CLV3 in in vitro direct Arabidopsis thaliana shoot regeneration. DOI: 10.1007/s00709-013-0503-1 ; PMID: 23645346
- 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
- Virus-based microRNA silencing in plants. DOI: 10.1104/pp.113.231100 ; PMID: 24296072
- ARGONAUTE PIWI domain and microRNA duplex structure regulate small RNA sorting in Arabidopsis. DOI: 10.1038/ncomms6468 ; PMID: 25406978
- Functional plasticity of miR165/166 in plant development revealed by small tandem target mimic. DOI: 10.1016/j.plantsci.2014.12.020 ; PMID: 25711809
- Primary transcripts of microRNAs encode regulatory peptides. DOI: 10.1038/nature14346 ; PMID: 25807486
- Spatiotemporal sequestration of miR165/166 by Arabidopsis Argonaute10 promotes shoot apical meristem maintenance. DOI: 10.1016/j.celrep.2015.02.047 ; PMID: 25801022
- A molecular mechanism that confines the activity pattern of miR165 in Arabidopsis leaf primordia. DOI: 10.1111/tpj.12834 ; PMID: 25788175
- Requirement of MIR165A primary transcript sequence for its activity pattern in Arabidopsis leaf primordia. DOI: 10.1080/15592324.2015.1055432 ; PMID: 26177565
- An improved cucumber mosaic virus-based vector for efficient decoying of plant microRNAs. DOI: 10.1038/srep13178 ; PMID: 26278008
- The role of HD-ZIP III transcription factors and miR165/166 in vascular development and secondary cell wall formation. DOI: 10.1080/15592324.2015.1078955 ; PMID: 26340415
- The miR165/166 Mediated Regulatory Module Plays Critical Roles in ABA Homeostasis and Response in Arabidopsis thaliana. DOI: 10.1371/journal.pgen.1006416 ; PMID: 27812104
- ARGONAUTE10 promotes the degradation of miR165/6 through the SDN1 and SDN2 exonucleases in Arabidopsis. DOI: 10.1371/journal.pbio.2001272 ; PMID: 28231321
Sequences:
cDNA Sequence
- >AT1G01120.1
TGTTAAGTCATTACTATTATTAATCTTTAAAATATTTTTATCTTTCTTGCACTCTATATATCTCTCCATCCCTACTTGCCCTCATTTCACCAAAATCCTCCTAATTCACCAATTTTAGAATTCCCATTCTCATTTTCTCTCTCTTTCTATTTCTCCAAATTTGCCTAAAGATTTTACATTTTATCTTCAATCCTTCCTTGATTTACGTTTGAAATATTTCGACCCAAAACTATACTGATGGAGAGAACAAACAGCATTGAGATGGATCGAGAGAGATTAACGGCGGAGATGGCGTTTCGAGATTCATCATCGGCCGTTATAAGAATTCGAAGACGTTTGCCGGATTTATTAACGTCCGTTAAGCTCAAATACGTGAAGCTTGGACTTCACAACTCTTGCAACGTGACCACCATTCTCTTCTTCTTAATTATTCTTCCTTTAACCGGAACCGTGCTGGTTCAGCTAACCGGTCTAACGTTCGATACGTTCTCTGAGCTTTGGTCTAACCAGGCGGTTCAACTCGACACGGCGACGAGACTTACCTGCTTGGTTTTCCTCTCCTTCGTTTTGACCCTCTACGTGGCTAACCGGTCTAAACCGGTTTACCTAGTGGATTTCTCCTGCTACAAACCGGAAGACGAGCGTAAAATATCAGTAGATTCGTTCTTGACGATGACTGAGGAAAATGGATCATTCACCGATGACACGGTTCAGTTCCAGCAAAGAATCTCGAACCGGGCCGGTTTGGGAGACGAGACGTATCTGCCACGTGGCATAACTTCAACGCCCCCGAAGCTAAATATGTCAGAGGCACGTGCCGAAGCTGAAGCCGTTATGTTTGGAGCCTTAGATTCCCTCTTCGAGAAAACCGGAATTAAACCGGCCGAAGTCGGAATCTTGATAGTAAACTGCAGCTTATTCAATCCGACGCCGTCTCTATCAGCGATGATCGTGAACCATTACAAGATGAGAGAAGACATCAAAAGTTACAACCTCGGAGGAATGGGTTGCTCCGCCGGATTAATCTCAATCGATCTCGCTAACAATCTCCTCAAAGCAAACCCTAATTCTTACGCTGTCGTGGTAAGCACGGAAAACATAACCCTAAACTGGTACTTCGGAAATGACCGGTCAATGCTCCTCTGCAACTGCATCTTCCGAATGGGCGGAGCTGCGATTCTCCTCTCTAACCGCCGTCAAGACCGGAAGAAGTCAAAGTACTCGCTGGTCAACGTCGTTCGAACACATAAAGGATCAGACGACAAGAACTACAATTGCGTGTACCAGAAGGAAGACGAGAGAGGAACAATCGGTGTCTCTTTAGCTAGAGAGCTCATGTCTGTCGCCGGAGACGCTCTGAAAACAAACATCACGACTTTAGGACCGATGGTTCTTCCATTGTCAGAGCAGTTGATGTTCTTGATTTCCTTGGTCAAAAGGAAGATGTTCAAGTTAAAAGTTAAACCGTATATTCCGGATTTCAAGCTAGCTTTCGAGCATTTCTGTATTCACGCAGGAGGTAGAGCGGTTCTAGACGAAGTGCAGAAGAATCTTGATCTCAAAGATTGGCACATGGAACCTTCTAGAATGACTTTGCACAGATTTGGTAACACTTCGAGTAGCTCGCTTTGGTATGAGATGGCTTATACCGAAGCTAAGGGTCGGGTTAAAGCTGGTGACCGACTTTGGCAGATTGCGTTTGGATCGGGTTTCAAGTGTAATAGTGCGGTTTGGAAAGCGTTACGACCGGTTTCGACGGAGGAGATGACCGGTAATGCTTGGGCTGGTTCGATTGATCAATATCCGGTTAAAGTTGTGCAATGATTGGTTGAACCGGATAATCATATATGTAATTGTGTTCTTCTTGATTTTATTTTTTAATTGTTGATGTAAGTTGTCGATTGAAAATCATATAATTTAATTAATTTATGGATGTGTGTTTGGTATACGTTAGTTGATTATTCATACTTTTGGTAAACCAGAATTTGAAAATTTAACTCAAGTCAAACAAAATTCTAATCCACTATGTCTGCGTTCACACACATGAATGAA
CDS Sequence
- >AT1G01120.1
ATGGAGAGAACAAACAGCATTGAGATGGATCGAGAGAGATTAACGGCGGAGATGGCGTTTCGAGATTCATCATCGGCCGTTATAAGAATTCGAAGACGTTTGCCGGATTTATTAACGTCCGTTAAGCTCAAATACGTGAAGCTTGGACTTCACAACTCTTGCAACGTGACCACCATTCTCTTCTTCTTAATTATTCTTCCTTTAACCGGAACCGTGCTGGTTCAGCTAACCGGTCTAACGTTCGATACGTTCTCTGAGCTTTGGTCTAACCAGGCGGTTCAACTCGACACGGCGACGAGACTTACCTGCTTGGTTTTCCTCTCCTTCGTTTTGACCCTCTACGTGGCTAACCGGTCTAAACCGGTTTACCTAGTGGATTTCTCCTGCTACAAACCGGAAGACGAGCGTAAAATATCAGTAGATTCGTTCTTGACGATGACTGAGGAAAATGGATCATTCACCGATGACACGGTTCAGTTCCAGCAAAGAATCTCGAACCGGGCCGGTTTGGGAGACGAGACGTATCTGCCACGTGGCATAACTTCAACGCCCCCGAAGCTAAATATGTCAGAGGCACGTGCCGAAGCTGAAGCCGTTATGTTTGGAGCCTTAGATTCCCTCTTCGAGAAAACCGGAATTAAACCGGCCGAAGTCGGAATCTTGATAGTAAACTGCAGCTTATTCAATCCGACGCCGTCTCTATCAGCGATGATCGTGAACCATTACAAGATGAGAGAAGACATCAAAAGTTACAACCTCGGAGGAATGGGTTGCTCCGCCGGATTAATCTCAATCGATCTCGCTAACAATCTCCTCAAAGCAAACCCTAATTCTTACGCTGTCGTGGTAAGCACGGAAAACATAACCCTAAACTGGTACTTCGGAAATGACCGGTCAATGCTCCTCTGCAACTGCATCTTCCGAATGGGCGGAGCTGCGATTCTCCTCTCTAACCGCCGTCAAGACCGGAAGAAGTCAAAGTACTCGCTGGTCAACGTCGTTCGAACACATAAAGGATCAGACGACAAGAACTACAATTGCGTGTACCAGAAGGAAGACGAGAGAGGAACAATCGGTGTCTCTTTAGCTAGAGAGCTCATGTCTGTCGCCGGAGACGCTCTGAAAACAAACATCACGACTTTAGGACCGATGGTTCTTCCATTGTCAGAGCAGTTGATGTTCTTGATTTCCTTGGTCAAAAGGAAGATGTTCAAGTTAAAAGTTAAACCGTATATTCCGGATTTCAAGCTAGCTTTCGAGCATTTCTGTATTCACGCAGGAGGTAGAGCGGTTCTAGACGAAGTGCAGAAGAATCTTGATCTCAAAGATTGGCACATGGAACCTTCTAGAATGACTTTGCACAGATTTGGTAACACTTCGAGTAGCTCGCTTTGGTATGAGATGGCTTATACCGAAGCTAAGGGTCGGGTTAAAGCTGGTGACCGACTTTGGCAGATTGCGTTTGGATCGGGTTTCAAGTGTAATAGTGCGGTTTGGAAAGCGTTACGACCGGTTTCGACGGAGGAGATGACCGGTAATGCTTGGGCTGGTTCGATTGATCAATATCCGGTTAAAGTTGTGCAATGA
Protein Sequence
- >AT1G01120.1
MERTNSIEMDRERLTAEMAFRDSSSAVIRIRRRLPDLLTSVKLKYVKLGLHNSCNVTTILFFLIILPLTGTVLVQLTGLTFDTFSELWSNQAVQLDTATRLTCLVFLSFVLTLYVANRSKPVYLVDFSCYKPEDERKISVDSFLTMTEENGSFTDDTVQFQQRISNRAGLGDETYLPRGITSTPPKLNMSEARAEAEAVMFGALDSLFEKTGIKPAEVGILIVNCSLFNPTPSLSAMIVNHYKMREDIKSYNLGGMGCSAGLISIDLANNLLKANPNSYAVVVSTENITLNWYFGNDRSMLLCNCIFRMGGAAILLSNRRQDRKKSKYSLVNVVRTHKGSDDKNYNCVYQKEDERGTIGVSLARELMSVAGDALKTNITTLGPMVLPLSEQLMFLISLVKRKMFKLKVKPYIPDFKLAFEHFCIHAGGRAVLDEVQKNLDLKDWHMEPSRMTLHRFGNTSSSSLWYEMAYTEAKGRVKAGDRLWQIAFGSGFKCNSAVWKALRPVSTEEMTGNAWAGSIDQYPVKVVQ