Gene Details:

Functional Descriptions:

  • The GmSTF1/2–GmBBX4 negative feedback loop acts downstream of blue-light photoreceptors to regulate isoflavonoid biosynthesis in soybean.
  • GmSTF1/2 and GmBBX4 form a negative feedback loop that acts downstream of photoreceptors in the regulation of isoflavonoid biosynthesis.
  • GmSTF1 and GmSTF2 promote isoflavonoid biosynthesis in soybean.

Literature:

Gene Resources:

Sequences:

cDNA Sequence
  • >Glyma.18G117100.1
    AGAGAGAAAGAGAAGTGTGTAGTTGGTGAAGTTTTTGAGAAGAATATGGAACGAAGTGGCGGAATGGTAACGGGGTCGCATGAAAGGAACGAACTTGTTAGAGTTAGACACGGTTCTGACAGTGGGTCTAAACCCTTGAAGAATTTAAATGGTCAGATTTGTCAAATATGTGGTGACACCATTGGATTAACGGCTACTGGTGACCTCTTTGTTGCTTGTCATGAGTGTGGCTTCCCACTTTGTCATTCTTGTTACGAGTATGAGCTGAAAAATGTGAGCCAATCTTGTCCCCAGTGCAAGACTACATTCACAAGTCGCCAAGAGGGTGCTGAAGTGGAGGGAGATGATGATGACGAAGACGATGCTGATGATCTAGATAATGGGATCAACTATGGCCAAGGAAACAATTCCAAGTCGGGGATGCTGTGGGAAGAAGATGCTGACCTCTCTTCATCTTCTGGACATGATTCTCATATACCAAACCCCCATCTAGTAAACGGGCAACCGATGTCTGGTGAGTTTCCATGTGCTACTTCTGATGCTCAATCTATGCAAACTACATCAGATCCTATGGGTCAATCCGAAAAGGTTCACTCACTTCCATATGCTGATCCAAAGCAACCAGGTCCTGAGAGTGATGAAGAGATAAGAAGAGTGCCGGAGATTGGAGGTGAAAGCGCTGGAACTTCAGCCTCTCGGCCAGATGCCGGTTCAAATGCTGGTACAGAACGTGCTCAGGGGACAGGGGACAGCCAGAAGAAGAGAGGGAGAAGCCCAGCTGATAAAGAAAGCAAGCGGCTAAAGAGGCTACTGAGGAATAGAGTTTCGGCTCAGCAAGCAAGGGAGAGGAAGAAGGCATATTTGATTGATTTGGAAACAAGAGTCAAAGACTTAGAGAAGAAGAACTCAGAGCTCAAAGAAAGACTTTCCACTTTGCAGAATGAAAACCAAATGCTTAGACAAATATTGAAGAACACAACAGCAAGCAGGAGAGGGAGCAATAGTGGTACCAATAATGCTGAGTAAACTTATAGATGGAGTAGATATAGAGAGAGAGAAAGAGAAAAAAATTAAACATTAGTTGATGATTCTTTCTAGGTGTGCGTTTGGAATACAATGAAGTAAAGGATGAACCTTAAGACATGCTTTGTCCTAAAATAGTGTGATCTGATGTACCATTGTTGATGAGTAATGTAATTATCATACACAGTTTTTTACAGTCTCATTTTAATTAATAATTATCAAACTACTTGATTACTTATGGTTAAC
  • >Glyma.18G117100.3
    AGAGAGAAAGAGAAGTGTGTAGTTGGTGAAGTTTTTGAGAAGAATATGGAACGAAGTGGCGGAATGGTAACGGGGTCGCATGAAAGGAACGAACTTGTTAGAGTTAGACACGGTTCTGACAGTGGGTCTAAACCCTTGAAGAATTTAAATGGTCAGATTTGTCAAATATGTGGTGACACCATTGGATTAACGGCTACTGGTGACCTCTTTGTTGCTTGTCATGAGTGTGGCTTCCCACTTTGTCATTCTTGTTACGAGTATGAGCTGAAAAATGTGAGCCAATCTTGTCCCCAGTGCAAGACTACATTCACAAGTCGCCAAGAGGGTGCTGAAGTGGAGGGAGATGATGATGACGAAGACGATGCTGATGATCTAGATAATGGGATCAACTATGGCCAAGGAAACAATTCCAAGTCGGGGATGCTGTGGGAAGAAGATGCTGACCTCTCTTCATCTTCTGGACATGATTCTCATATACCAAACCCCCATCTAGTAAACGGGCAACCGATGTCTGGTGAGTTTCCATGTGCTACTTCTGATGCTCAATCTATGCAAACTACATCAGATCCTATGGGTCAATCCGAAAAGGTTCACTCACTTCCATATGCTGATCCAAAGCAACCAGGTCCTGAGAGTGATGAAGAGATAAGAAGAGTGCCGGAGATTGGAGGTGAAAGCGCTGGAACTTCAGCCTCTCGGCCAGATGCCGGTTCAAATGCTGGTACAGAACGTGCTCAGGGGACAGGGGACAGCCAGAAGAAGAGAGGGAGAAGCCCAGCTGATAAAGAAAGCAAGCGGCTAAAGAGGCTACTGAGGAATAGAGTTTCGGCTCAGCAAGCAAGGGAGAGGAAGAAGGCATATTTGATTGATTTGGAAACAAGAGTCAAAGACTTAGAGAAGAAGAACTCAGAGCTCAAAGAAAGACTTTCCACTTTGCAGAATGAAAACCAAATGCTTAGACAAATATTGAAGAACACAACAGCAAGCAGGAGAGGGAGCAATAGTGGTACCAATAATGCTGAGTAAACTTATAGATGGAGTAGATATAGAGAGAGAGAAAGAGAAAAAAATTAAACATTAGTTGATGATTCTTTCTAGGTGTGCGTTTGGAATACAATGAAGTAAAGGATGAACCTTAAGACATGCTTTGTCCTAAAATAGTGTGATCTGATGTACCATTGTTGATGAGTAATGTAATTATCATACACAGTTTTTTACAGTCTCATTTTAATTAATAATTATCAAACTACTTGATTACTTATGGTTAAC
CDS Sequence
  • >Glyma.18G117100.1
    ATGGAACGAAGTGGCGGAATGGTAACGGGGTCGCATGAAAGGAACGAACTTGTTAGAGTTAGACACGGTTCTGACAGTGGGTCTAAACCCTTGAAGAATTTAAATGGTCAGATTTGTCAAATATGTGGTGACACCATTGGATTAACGGCTACTGGTGACCTCTTTGTTGCTTGTCATGAGTGTGGCTTCCCACTTTGTCATTCTTGTTACGAGTATGAGCTGAAAAATGTGAGCCAATCTTGTCCCCAGTGCAAGACTACATTCACAAGTCGCCAAGAGGGTGCTGAAGTGGAGGGAGATGATGATGACGAAGACGATGCTGATGATCTAGATAATGGGATCAACTATGGCCAAGGAAACAATTCCAAGTCGGGGATGCTGTGGGAAGAAGATGCTGACCTCTCTTCATCTTCTGGACATGATTCTCATATACCAAACCCCCATCTAGTAAACGGGCAACCGATGTCTGGTGAGTTTCCATGTGCTACTTCTGATGCTCAATCTATGCAAACTACATCAGATCCTATGGGTCAATCCGAAAAGGTTCACTCACTTCCATATGCTGATCCAAAGCAACCAGGTCCTGAGAGTGATGAAGAGATAAGAAGAGTGCCGGAGATTGGAGGTGAAAGCGCTGGAACTTCAGCCTCTCGGCCAGATGCCGGTTCAAATGCTGGTACAGAACGTGCTCAGGGGACAGGGGACAGCCAGAAGAAGAGAGGGAGAAGCCCAGCTGATAAAGAAAGCAAGCGGCTAAAGAGGCTACTGAGGAATAGAGTTTCGGCTCAGCAAGCAAGGGAGAGGAAGAAGGCATATTTGATTGATTTGGAAACAAGAGTCAAAGACTTAGAGAAGAAGAACTCAGAGCTCAAAGAAAGACTTTCCACTTTGCAGAATGAAAACCAAATGCTTAGACAAATATTGAAGAACACAACAGCAAGCAGGAGAGGGAGCAATAGTGGTACCAATAATGCTGAGTAA
  • >Glyma.18G117100.3
    ATGGAACGAAGTGGCGGAATGGTAACGGGGTCGCATGAAAGGAACGAACTTGTTAGAGTTAGACACGGTTCTGACAGTGGGTCTAAACCCTTGAAGAATTTAAATGGTCAGATTTGTCAAATATGTGGTGACACCATTGGATTAACGGCTACTGGTGACCTCTTTGTTGCTTGTCATGAGTGTGGCTTCCCACTTTGTCATTCTTGTTACGAGTATGAGCTGAAAAATGTGAGCCAATCTTGTCCCCAGTGCAAGACTACATTCACAAGTCGCCAAGAGGGTGCTGAAGTGGAGGGAGATGATGATGACGAAGACGATGCTGATGATCTAGATAATGGGATCAACTATGGCCAAGGAAACAATTCCAAGTCGGGGATGCTGTGGGAAGAAGATGCTGACCTCTCTTCATCTTCTGGACATGATTCTCATATACCAAACCCCCATCTAGTAAACGGGCAACCGATGTCTGGTGAGTTTCCATGTGCTACTTCTGATGCTCAATCTATGCAAACTACATCAGATCCTATGGGTCAATCCGAAAAGGTTCACTCACTTCCATATGCTGATCCAAAGCAACCAGGTCCTGAGAGTGATGAAGAGATAAGAAGAGTGCCGGAGATTGGAGGTGAAAGCGCTGGAACTTCAGCCTCTCGGCCAGATGCCGGTTCAAATGCTGGTACAGAACGTGCTCAGGGGACAGGGGACAGCCAGAAGAAGAGAGGGAGAAGCCCAGCTGATAAAGAAAGCAAGCGGCTAAAGAGGCTACTGAGGAATAGAGTTTCGGCTCAGCAAGCAAGGGAGAGGAAGAAGGCATATTTGATTGATTTGGAAACAAGAGTCAAAGACTTAGAGAAGAAGAACTCAGAGCTCAAAGAAAGACTTTCCACTTTGCAGAATGAAAACCAAATGCTTAGACAAATATTGAAGAACACAACAGCAAGCAGGAGAGGGAGCAATAGTGGTACCAATAATGCTGAGTAA
Protein Sequence
  • >Glyma.18G117100.1
    MERSGGMVTGSHERNELVRVRHGSDSGSKPLKNLNGQICQICGDTIGLTATGDLFVACHECGFPLCHSCYEYELKNVSQSCPQCKTTFTSRQEGAEVEGDDDDEDDADDLDNGINYGQGNNSKSGMLWEEDADLSSSSGHDSHIPNPHLVNGQPMSGEFPCATSDAQSMQTTSDPMGQSEKVHSLPYADPKQPGPESDEEIRRVPEIGGESAGTSASRPDAGSNAGTERAQGTGDSQKKRGRSPADKESKRLKRLLRNRVSAQQARERKKAYLIDLETRVKDLEKKNSELKERLSTLQNENQMLRQILKNTTASRRGSNSGTNNAE*
  • >Glyma.18G117100.3
    MERSGGMVTGSHERNELVRVRHGSDSGSKPLKNLNGQICQICGDTIGLTATGDLFVACHECGFPLCHSCYEYELKNVSQSCPQCKTTFTSRQEGAEVEGDDDDEDDADDLDNGINYGQGNNSKSGMLWEEDADLSSSSGHDSHIPNPHLVNGQPMSGEFPCATSDAQSMQTTSDPMGQSEKVHSLPYADPKQPGPESDEEIRRVPEIGGESAGTSASRPDAGSNAGTERAQGTGDSQKKRGRSPADKESKRLKRLLRNRVSAQQARERKKAYLIDLETRVKDLEKKNSELKERLSTLQNENQMLRQILKNTTASRRGSNSGTNNAE*