Gene Details:
- Gene ID: AT5G40740
- Gene Symbol: AUG6, GEM3
- Gene Name: augmin subunit 6, GEMINI POLLEN 3
- Description: HAUS augmin-like complex subunit;(source:Araport11)
- TAIR Accession:
- Genome: Araport11_genome_release
- Species: Arabidopsis thaliana
Transcripts:
Plant Ontology Annotations:
- PO:0009005 — root — raíz (Spanish, exact), radices (exact, plural), radix (exact), 根 (Japanese, exact), aerial root (narrow), climbing root (narrow)
Function-related keywords:
Literature:
- AtNAC2, a transcription factor downstream of ethylene and auxin signaling pathways, is involved in salt stress response and lateral root development. DOI: 10.1111/j.1365-313X.2005.02575.x ; PMID: 16359384
- Characterization of the Arabidopsis augmin complex uncovers its critical function in the assembly of the acentrosomal spindle and phragmoplast microtubule arrays. DOI: 10.1105/tpc.112.096610 ; PMID: 22505726
- The Mitotic Function of Augmin Is Dependent on Its Microtubule-Associated Protein Subunit EDE1 in Arabidopsis thaliana. DOI: 10.1016/j.cub.2017.11.030 ; PMID: 29225022
Sequences:
cDNA Sequence
- >AT5G40740.1
AAAAAGTCGCCGGAAACAACAAAATTCGATCGAGATTCAATTAAAAGGGGAAAAAAATCGAAAAGGAAACAAAAAAACCATTGAAGAAGATCGGAGGCGACGACGGTGATGACGATGGACAGAGAAAAGGAGAGAGAACTTGAGCTCGAGAGTGCAATGTACACAAACTGTTTGCTTTTAGGTTTGGATCCGAATGTGATCGGACTCGGAGCCTCCAATGGCACGCCTCGGGTCGGGTTATTTCGCCATTCGAATCCAAAGCTCGGTGAACAGCTTCTCTACTTCATCCTCTCTTCTCTTCGTGGCCCTGCTCAGTCTTCAAAGGATTTTGATAAGGTTTGGCCAATTTTCGATTCGGCTCAATCTCGCGATTTTCGTAAGGTTGTTCAAGCGATTATAAGCGAGCTTGAATCACAAGGGGCATTACCAAGGAGTAATTCGAGGGTTTCATCACTAGCCACTTGCTGTGGACCAAGATTTGTGGAGCTCTTGTGGCAACTTTCACTGCATGCGTTAAGAGAAGTTCATAGGCGGACATTTCCTGCTGATGTAGCTTCCAATCCTCTACCTTCTTCTCTAACTGACGTTTCTTTCTCACATGCAGCTACTTTGCTTCCTGTAACCAAGGCCCGGATAGTGCTTGAGCGCCGTCGGTTTCTTAAAAATGCAGAGACTGCGGTACAAAGACAGGCCATGTGGTCTAATTTAGCCCATGAGATGACTGCAGAGTTCCGTGGTCTCTGTGCTGAAGAGGCTTACCTTCAACAGGAACTAGAGAAACTTAACGATTTGAGAAACAAAGTGAAGCAGGAAGGAGAAGTGTGGGATGACCTTGTGTCTAGCTCCAGTCAGAATTCTCATCTAGTTTCAAAGGCAACTAGGTTATGGGATTCTATAATGGCTCGTAAAGGTCAGCATGAAGTTCTTGCGTCAGGTCCCATTGAGGACTTGATAGCTCACAGGGAGCATAGATACCGGATTTCAGGATCGGCCCTACTTGCAGCGATGGATCAGAGTTCTCAAGTTCCTCGAGCAGAATTACTCTCTGCCCACTCAGATGATTCAGCTTCACTTGCGGATGACAAAGAACTAAGTGATGGATCGTACACAAACATGCATGACCACTCTTTAGTAGATAGTTTTGAAACAGCCAGCTCACAAGCAAGTGATGAAACACTTTCTCGAGTAGATGATAGAGGTGGAAAGATCAATCAGACAGTCGATGTAGCGGAAGTCATAAGGCGCTGGACACATGCATTACAGCGTATTCATAAACAGTCTCTTCTTCTGGCTAAAGCAAATGATGGGGATGGTCCAGATATTTTGCGGACTGCGAGTGATGGTGGTACAAGTGGGCATGTTGAATCATTGGCTGCAACTTTGACTGAACATCAACAACATTTAGCTAGCTTTCAGGTTCTTATCAACCAATTAAAGGAAGTTTCTCCAGCCATACAAAAGTCCATATCGGAATGTACTGAGATGGTTAATAGTCTTCCCCCAACCTTGCCTCCAGTTACGAGAAGTAATGGACAAGCATCTTCACTTCTACAATCTCAGGGCAGTGGGAGAATTATGGAAGGTGTATCAAATGATGTTGCTGAGCTGACCTCGACAATGTCTAATGTTCAGCTCGAGAAAGTCTCAGCTAGTCCTACATTAAAGCTTCCACAGTTATTTAGTTCCACTCCTACTTCTTCTGGTAAAGGAGGAAATGGACAAAAGCGACAGACAATGGCTTCCCAGGTCAATAAAATGGAAAGCTTGTCTGAGAAGAACTCTACAGACCAAGCACTATCAAATGCTCGACCAGACAACTTACCGACTGATACAAGCAGTTCTTTTGTCCATAACCTGAAGAAATCTGTGAGGGAAGCGGCTTTATTGATTCCTTCTTCAGCAGGCTCATCACGGGATAGTCAATCCGATGAGGGCTCCGAGCATTATTTTGTACCTCTTTCAGCAACTGGCTTTTCCCGTTTTCCATCAGAAACCAAAGCCCTGCCTCTCAGAGGGTCGAGAGCACTTACCTCTCTGAGCGAGCCTTCGTTTCTTGAACCCAATGTTCCCGATAGCTTTGCACCAAGCAAGTACAGCGATATACCTGACACGTATGATGATCTTGATTCATTCAAAGATTACGATAATGGGAACGGGTTTCTGTCGGTTGCTGGATCAAACAGTGTAGCTTCTGATGCACAACAATCATTTTACGATATTGATGATCAAGTATTTTCCCCACCTTTACTAATGGACTCATCCCTATTATCAGATGCCTATGAAGACTTGTTAGCTCCTCTTTCAGAAACCGAAGCCGCTTTAATGGAGCATTAGGAAGAAGCCTTGAATCATTATAACACTTGTGTTTCTTCAACAATTGTTCTTGGGGGAATTTGAAGCCTGTGATCGATCTCTCGGTCTCACACAGGTGTATCAATTATTTACCATTTAACAAGGCTTTCGTAATTTATCTTGGATTTGTTGGTAATGGGACTGACTCTTGATGAATGATTCATGATATCACTATTTGTTTGTGTTGTGTCAAGTGTGTGTGTAAAAAGAAACTCGAGCTTAGGTAGAAGCATTGCTCACTAATATTTGGTTTTCCTAAAAGTACCAGATTTGATTATTTTGTTATAATTTCTAAGATGTAAAAAAAAACTATAGAAGAAGAAGAGTTTGATTTTTTTTTCCTTCTTTCTAAACCACTTGCGTTT
CDS Sequence
Protein Sequence