K19149

RIKEN rice full-length cDNA overexpressed Arabidopsis lines

Original: K19149

Phenotypes

Morphological phenotypes

Generation Anatomical entity
/structure development stage
Phenotypes
T2 seed (PO:0009010)
  • increased width (PATO:0000600)
    (Seed::Shape::wide)

Invisible phenotypes

Specific phenotypes were NOT observed.

Original: K19149

Determination of introduced cDNA(s)

  • J013093A03 - Rice Full-length cDNAs - Original: J013093A03

    full reading [+] show sequence

    Nucleotide sequence: J013093A03 - full reading
    GTTATTCACT CCACCCACCT CGCCGGAATG CTCGCCGTCG TCTTCTCCTC 
    CGGTCACCGC CTCCTCCCCC TCCCCGTCCT CCCCGGCACA TTCACCACCC
    CTCCTCCTCC TCCTCCTCCT CCTCTCCTAT CCCCTCGCCG TCCTCTGCTC
    GCCCCTCGCC GGCGCCGCTG CCTATGCGGC GGCGGCGGTG GCGGCCTCCT
    CCTCCTTCGC GCCGTCGCCG CGAGGCGCGC GGGCATCGTG ATCGACGTCG
    ACGAGGTGGG CGAGGTCGGC GACCGCGACC TCCCCGTGGA CGTGTCGTTC
    ACCCGGAGGC TGCCGCCGGT GCTCACCCTC GGGGACGGCC TCGCCGCGCT
    GCGGCGGGCC GGGGAGGAGG TGAAGGCCTG CCCGCCTGCC GCCGCCGCGA
    GCGGCGTCAT CCGGTTCGAG GTGCTTGTTC CACCCAGTAC GAAGGCGCTC
    AAATGGCTGT GCACACAGTT TAAGAGATCA TCATTGTTTC CTCAGTTTTA
    TTTGTCGAGG AAGCAAACCA CTGATTCATC AATTCAGCTT GAAATCTCTG
    GCGCTGGCTC TGCAATTTGC TTTCATGGTT CCTCTCGAGT AGATAATGGG
    TTTGATTTGA TATCAAGATA TCTTTCGTTT AATTCACACT TGATTAGAGC
    CTATGGATCA GTAGGTGTTA AATATGACAA GGAACTATTG TCTTTAGAGG
    AGAGAATTGG TTCATTTTAC TTCTTTATTC CTCAGGTTGA GCTGAGTGAA
    TTTGATGGCT ATTCCATGTT ATCGTCAACT ATTGTTTGGG ATGACTCCGT
    GTCTCACACA TTTGAGGATT CTGTTTGTTT ATTTGAATCT TGTTTCAGTC
    AGATATGGAG TAGCTATGAT TCTTCAGCTA CTATCTGTTA TGAAAACATG
    GTAACAAGTT ACATTGGAGA ATCGCGTATG TCAGAGAGCA GGAATACTCA
    GTTGGTATAC TTGGATGCTG AATTTCTCGC TGTAATAGAT GGCAAAGCTG
    TCACGGAAAA GGTATCCTCT TAACCCTGGA GAATTGCCCA ACTTCTGATC
    AGTCATTTGT TCGGTTTTCG CCGCAGTTCT TGTTTTGTGC AAACATGGAT
    TTATGTTTGC AAAGCAACAA AATTGAATCT TTCATTAGGA GATGCTCTAA
    CATTAATTTG GCATGGGCAT CCTTCATAGT TGAAGAATTT GTCAGGCTTG
    GTTTTACGTA CTTCTGTATA GCTCCAGGGT CGAGATCATC CCCACTTGCA
    CTTTCTGCTT CAGTCCATCC TTTGACAACC TGCATATCAT GTTATGATGA
    GCGTTCACTT GGATTTCATG CTCTTGGCTA TGGGAGAGGT TCTCGGAAGC
    CTGCAATAGT AATTACATCA TCAGGAACTG CTGTATCAAA TCTCCTTCCT
    TCAGTGGTGG AGGCAAGTCA AGATTTCGTA CCACTTATTT TACTCACAGC
    TGATCGTCCT CCTGAGCTGC AGGATGTAGG AGCCAACCAA GCCATCAATC
    AGTTGATTCA GCAGCCTACT ATGCCATGCA AGCACCACAA GGGCCAGTGC
    ATATAAACTG TGCTTTTAGA GAACCACTAG ACTACGGATA TCAAGATTGG
    AGTGTTGACT GTTTGAAAGG GTTGGACAAA TGGTTTATAA ATAGAGAACC
    ATACACTAGA TACCTAGGAA TGAAAATGGT TTCTGCATTA GGTAACTATT
    CTTGTTCAGT AAGGGAGGTT CTGGAGATTG TAAAGAACGC AAACCAGGGG
    CTTTTATTAG TTGGTGCTAT TCACACAGAA GATGATATCT GGGCTGTGAC
    TTTACTAGCT AGACACCTTT CCTGGCCGAT TGCTGCTGAT GTTCTGTCTG
    GATTGCGAAT GAGGAAAGTA CAGAAATCAA TTCCAGGACT AGATAAGAGC
    ATTTGTTTTA TAGACCACAT AGATCAAATT CTACTGTCTG AATCTGTTAA
    AAGCTGGAAA ACTCCAGATG TTATTGTCCA GATTGGAAGC CGGATCACTA
    GCAAACGAGT GGGAACATAT CCTGAGTCCT GCTCCCCGTC TTCTTACATC
    TTAATTGATG CACACCCATG CCGCCATGAT CCTTCACATG TTGTCACTCA
    CAGAATCCAG GCTACTATAA CTGAATTTGC TGCTAGTCTG TGCCAGTGTA
    ATTTCCAAAC AAAGACAAGC AGATGGTCAG ATATTTTAAT GGTTCTGAAT
    TCAGCGGTTT CACAGGAGAT AATGTTTCAG GTGCATTCAG AATGTTCACT
    TACAGAACCA TATGTTGCTC ATGTAATTGG AGAAGCACTT TATGGCGATG
    CTACTATGTT TATTGGGAAT AGCATGGTCA TTCGAGACTT GGATATGTTT
    GGCAAGGGCT GGATTGACCA TAGTACAAAT GCAAATAATG CTATGATGCA
    CCATTTTCCA GGCTTTCTTG GTGCACCAGT AGCTGGGAAC AGGGGAGCAA
    GTGGTATTGA TGGTTTGCTT AGTACATCAA TTGGATTTGC CATTGGATCA
    AACAAGCATG TATTCTGTGT GATTGGTGAC ATATCTTTTC TTCATGATAC
    CAATGGATTG TCACTTCTGA ACCAAAGGTT TACAGTTTGA ATCTATTCTA
    TGCTATCCAC CACCGTTTGT TTTTCTGCGA GTCATTGGCT CATTGTCATT
    TCCTTAATTT ATTTTTCATT GACCCAAGCA TTTGTTTTTG CATTACTACT
    TAGTCAAAGA AATAAAAAGA ACTACAGATA TTCTCTCTGT AAAGCTATTG
    TATAACCATC TACTTAAATG AATATTTATT TCTGATAAAG TGATAATGCA
    TCTCACATTC CTGAAGGACG CAGAGGAAAC CCATGACAGT AATTGTCATT
    AACAACCATG GTGGTGCAAT CTTCAGCCTT CTACCAGTTG CAAAAACAGC
    TTCACTCCAA ATTTTGGAGA AATTTTTCTA CACCTTGCAT GACATATCGA
    TTTCCAAACT CTGTGCTGCA CACAGGTAAA AGCGATTGTT GTATTCTGGT
    GCTTACATAC CTCGGCCTTG CTTATAGAAA TACAATTTTA ACAATATGCC
    TGCCTGATGC TAACGTAGCA TCGCTGTTAC TGATTCTGGG ATTTATTAGA
    TGTTTTCTGC TGAGACTTCT GCCTGTTACA TTATTGGTTA TGGAGTCAGC
    TGTGGATACA ACAAATAACT TTCTGGTGGC AATTTTGCAT CCCCAGCATT
    CTCATGAGTT GTATTTCAGG ATAAAACATA TTCTAGTTCA GACAAAAGCT
    GAACTTCATG ATGCCTTAGT GAAGTCCCAT GAGGGGCATG TTGATTGTGT
    TGTCGAAGTG GAGAATCGCA TTGTTGATAA TGCCAACTTT CATAGGTTTT
    ATATTCAAAC TAGTTCTTTT GATTATTTTG GTCTACATCG CGTTTATATG
    CTCATTCTCA TTCTGCAGAA TTATAAGCAT GTTCACAGAC CATAGTGCAA
    CCATGCATCT GGCATATCTT CTGGGAGGTC CATATTGTAA GGATGGGGTA
    AATGGCTTTT CTGTTGGTAG AATACATGCA GCAGAATACA TGTTTTACAG
    GATCCAACTT GCTGCACCAC GTACATCTGG GATATCAGAA AGCAGCTTCT
    TTCATGAAGG TTTCATACTA AAGTTATGTG TGGGTGACAG CATTGTGGGA
    TTCGGCGAGG TTGCACCAAT TGAAATTCAT GAGGAGGATC TGTTGGATGT
    TGAAGAACAG CTTAGGTTTC TCTTTCACAG AATGAAAGAT GCTGAGCTAG
    ATGTTGTTCC TTTGTTGAGA GGATCCTTCT CCAATTGGAT ATGGACAACC
    CTTGGGATTC CTCCTTCTTC AGTATTCCCT AGTGTTAAGT GTGGTCTAGA
    GATGGCTATT CTTAATTTGC TGGAGTCACA ACGAATAGAT AGATCCTATG
    GTATTTTTAC TGGCTCCAAT GTGGTCGAAT ATAATCAGAG CAGCACTGCA
    AACATACAGA TATGTGCACT CGTAGACTCC TGTGGCACTC CAATGGATGT
    AACACTTGCT GTTGTCAAAC TTGTTGCTGA AGGTTTCACC ACCGTTAAAC
    TGAAGGTTGG GCGTCGCGAA AATCCCGCTG AAGATGCAGC TGTTATTCAA
    AAAGTAAGGG AAATTGTAGG ATACAAGATC AATATCCGTG CTGACGCAAA
    TAGGAAATGG ACATATGAAC AGGCAATTGA TTTTGGATCC AGGGTAAAAG
    GCTTATGTTT GCAATACATC GAGTTCTTCC TTGAGAGTCT TCATTTGTTT
    TAACCACAGG AACCAGTGGA CTCTGTAAAT GACATCATCA AGTTCTGTGA
    AAATAGTGGC TTGCCTGTTG CACTAGACGA GACTATCGAC AACCTTACAG
    GGGATGTAAT CCCTAAGCTA CATCAATTTT CACATCCAGG AATAGTTGCT
    CTTGTTATAA AACCCAGTGT TGTTGGTGGC TTTGAGACTG CAGCTTATAT
    AGCAAAATGG GCTCACATGC ATGATAAGAT GGCTGTCATA GTAGCACCTA
    TGAGAGTTCT GTAGGTTTGG CAACCTATAT ACAGTTTGCA CATTATGTTG
    ACAGACAAAA TGACATAACA TCCAGAATAA AGAACAGAGG TTCTTGTGGA
    AATGTGGCAC ATGGACTTGG AACATACCAA TGGTTAAGAG AAGATGTTTC
    AGATCAAAAG TTAAAAATCC ATGCGCCACC ACTTGGTGAT GGAATCAGAG
    CTTCGGC

    Gene models with high sequence identity

    1. AT1G68890.1 [+] show detail - magnesium ion binding;thiamin pyrophosphate binding;hydro-lyases;catalytics;2-succinyl-5-enolpyru...
      E-value: 1e-155; Score: 205.00

     

    InterPro Scan Digest

    Program Description E-value
    Gene3D no description 4.5e-24
    Gene3D no description 0.00000000000026
    HMMPanther Mandelate racemase/muconate lactonizing enzyme 0.000000015
    HMMPanther MENAQUINONE BIOSYNTHESIS PROTEIN 5.1e-48
    HMMPanther THIAMINE PYROPHOSPHATE ENZYMES 5.1e-48
    HMMPanther MENAQUINONE BIOSYNTHESIS PROTEIN 0.000024
    HMMPanther THIAMINE PYROPHOSPHATE ENZYMES 0.000024
    superfamily DHS-like NAD/FAD-binding domain 0.00000000000056
    superfamily Thiamin diphosphate-binding fold (THDP-bindin 0.00000011
    superfamily Thiamin diphosphate-binding fold (THDP-bindin 1.1e-20
    superfamily Enolase C-terminal domain-like 1.7e-21
    superfamily Enolase N-terminal domain-like 0.000000021
    superfamily Enolase C-terminal domain-like 0.00000000038
    HMMPfam Thiamine pyrophosphate enzyme, N-terminal TPP-binding domain 4.1e-21
    HMMPfam Mandelate racemase/muconate lactonizing enzyme, C-terminal 0.000000000000019

    See the detailed result >

    AT1G68890.1

    Model type
    Protein coding
    Short Description
    magnesium ion binding;thiamin pyrophosphate binding;hydro-lyases;catalytics;2-succinyl-5-enolpyruvyl-6-hydroxy-3-cyclohexene-1-carboxylic-acid synthases
    Curator Summary
    Homologous to the four eubacterial men genes involved in menanoquinone biosynthesis. Studies of mutants defective in this gene demonstrated its involvement in phylloquinone biosynthesis in Arabidopsis.
    Computational Description
    magnesium ion binding;thiamin pyrophosphate binding;hydro-lyases;catalytics;2-succinyl-5-enolpyruvyl-6-hydroxy-3-cyclohexene-1-carboxylic-acid synthases; FUNCTIONS IN: 2-succinyl-5-enolpyruvyl-6-hydroxy-3-cyclohexene-1-carboxylic-acid synthase activity, hydro-lyase activity, magnesium ion binding, thiamin pyrophosphate binding, catalytic activity; INVOLVED IN: phylloquinone biosynthetic process, photosystem I stabilization; LOCATED IN: chloroplast; EXPRESSED IN: shoot, leaf whorl; CONTAINS InterPro DOMAIN/s: Menaquinone biosynthesis protein MenD (InterPro:IPR004433), Alpha/beta hydrolase fold-1 (InterPro:IPR000073), Mandelate racemase/muconate lactonizing enzyme, C-terminal (InterPro:IPR013342), Thiamine pyrophosphate enzyme, C-terminal TPP-binding (InterPro:IPR011766), Thiamine pyrophosphate enzyme, N-terminal TPP-binding domain (InterPro:IPR012001), O-succinylbenzoic acid (OSB) synthetase, gamma proteobacteria/archaea (InterPro:IPR010196), Mandelate racemase/muconate lactonizing enzyme, conserved site (InterPro:IPR018110); BEST Arabidopsis thaliana protein match is: isochorismate synthase 2 (TAIR:AT1G18870.2); Has 22452 Blast hits to 22188 proteins in 2448 species: Archae - 403; Bacteria - 16894; Metazoa - 237; Fungi - 200; Plants - 484; Viruses - 7; Other Eukaryotes - 4227 (source: NCBI BLink).
    Link
    InterPro Scan - TAIR