Gene Details:

Functional Descriptions:

  • Transcription factors GmERF1 and GmWRKY6 synergistically regulate low phosphorus tolerance in soybean
  • GmERF1 and GmWRKY6 synergistically regulate LP tolerance in soybean and provide an elite haplotype for the molecular breeding of P-efficient soybean.
  • GmERF1 directly interacted with GmWRKY6 to inhibit transcription of GmPT5 (phosphate transporter 5), GmPT7, and GmPT8, which affects plant P uptake and use efficiency under LP stress.
  • These results demonstrated that GmERF1 could form heterodimers with GmWRKY6 to cope with LP stress.
  • GmERF1 directly interacts with GmWRKY6 to enhance GmWRKY6-mediated suppression of GmPHT1.

Literature:

Gene Resources:

Sequences:

cDNA Sequence
  • >Glyma.15G110300.1
    ATACGTAAATATTTCAAAGGAAAAAGAGGGAATCCGGGGCGGGTAAGTGGGTAACCCAACGACCCAAGTGCAGAAGTGTGAACTGCGAGGTGGACCAAGTATGAATAACTTAACGGTGTGGGCGGGTTTGTGTGTGGCAGCATTTAGACATTGTCCATGCTGACGCACCATCTGGCGCAATAATTTATGCATTTTTCACAAATGTCCAATTTTCATTTCCATTTGGTCCACGCTCCTTCAATCCCCCCAACTCTTTTTATACCCCAACCCATTGCTCCGGAGAAAGACTTCATCTCCCAATAGCATCCATTCACCCATTTATCTCTCTCAGATTTCATTTTTCTTCTTCTTCTTCTCTCTCTTCTTTGTGCTTATTGTATTTTATGGACAAAGGATGGGGACTCACCCTTGATACCTCTTCCTCTCAATCTCTTCCATTATTCCCTTCCAACGATAATAAGATGTTTCCTCTCCTCGGATTCCCCGTCAACCTCAGCCGCGCCTCCAAGGAAGACGATGAAAACCGCAAAGTTGTCGGTGAAGTTGACTTCTTCTCTGATAGAAACAAACCTACACCTCCACCCTCTCACGACCACAACGTTAAACCCAACATCGTCAAGAAGGAAATCGATGAAACACCTCTTCACATTAATACTGGTTTACAACTCCTTACTGCTAACACCGGGAGTGACCAATCTACCGTGGATGACGGGGTTTCATCTGATGCAGAAAATAAGCGAGCCAAAACCACTGAGCTTGCACAGTTGCAGGTGGAGCTTCAACGCATGAACTCTGAGAACAAGAAGCTGAAAGAGATGCTCAGCCATGTGACCGGTAACTACACCGCCTTGCAGATGCATCTTGTCACATTAATGCAACAGAACCAGCAGCGAACAGGAAGCACGGAAAATGAGGTTGTTCAGGGAAAGGTAGAGGATAAAAACGTTGGTGTTGGTGGAGGGAAGGTACCAAGACAGTTCCTTGATATAGGTCCCAGTGGCACAGCAGAAGTAGATGATCAAGTTTCGGATTCTTCTTCTGATGAAAGAACACGATCGAGCACACCTCAGAACCATAACATTGAAGCTGGAGCTAGAGATGGTGCGAGAAATAACAATGGTAAAAGCCAGTTGGGTAGGGAAGAGAGTCCAGACTCAGAATCACAAGGTTGGAGTCCCAATAAGCTTCAGAAAATGAACCCTTCCAACCCTATGGATCAATCCACTGCAGAAGCCACAATGAGAAAAGCTCGTGTATCAGTTCGTGCCCGATCAGAAGCTCCCATGATCAGTGATGGATGCCAATGGAGAAAATATGGACAAAAAATGGCCAAGGGGAATCCATGCCCTCGAGCATACTACAGATGCACTATGGCAGTTGGTTGCCCAGTTCGCAAACAAGTTCAACGTTGTGCTGATGATAGAACCATTTTGGTTACAACATATGAAGGCACGCATAACCATCCACTGCCACCTGCTGCTATGGCCATGGCATCAACCACTACAGCTGCTGCTAGCATGTTGCTTTCTGGATCAATGTCCAGTGCAGATGGAATAATGAACCCAAATTTGCTAGCTAGAGCAATTCTTCCTTGCTCTACAAGCATGGCAACACTCTCAGCTTCAGCACCATTCCCCACTGTGACTTTGGACCTCACACACAACCCTAACCCATTGCAATTTCAAAGGCCTGGTGCCCCATTCCAAGTACCCTTCCTTCAAGCACAGCCTCAGAACTTTGGGTCAGGAGCCGCCCCAATTGCACAAGCACAAGCACTTTATAATCAATCAAAATTCTCTGGTCTTCAGTTGTCTCAGGATGTAGGATCTTCTCAATTAGCACCACAAGCTCCTAGACCACCCTTACAACCAAGCCAACAGCCCTCACTTGCTGACACAGTCAGCGCCGCCGCCTCCGCCATCACCGCCGATCCAAACTTCACCGCCGTGCTCGCCGCCGCCATCTCCTCCATCATAGGCAGTGCTCATAATTCAAACAACAACAACAGCAACAACAACACAAGCCGGACTACCATTAGCAGCTTTTCAGGAAACTGAACATTTTCTTTTTGGGTTCAATTTTTTGGTTAATATTGTTATTATTCCTTAAACTTTTTATTTTTGTACATGGGTACTATAAGGGAAAATGAAACCATAAATGTTCATATTCTTTTTAGTCCATGTCTTGGGAGGGATATATATGATATATTAGAT
CDS Sequence
  • >Glyma.15G110300.1
    ATGGACAAAGGATGGGGACTCACCCTTGATACCTCTTCCTCTCAATCTCTTCCATTATTCCCTTCCAACGATAATAAGATGTTTCCTCTCCTCGGATTCCCCGTCAACCTCAGCCGCGCCTCCAAGGAAGACGATGAAAACCGCAAAGTTGTCGGTGAAGTTGACTTCTTCTCTGATAGAAACAAACCTACACCTCCACCCTCTCACGACCACAACGTTAAACCCAACATCGTCAAGAAGGAAATCGATGAAACACCTCTTCACATTAATACTGGTTTACAACTCCTTACTGCTAACACCGGGAGTGACCAATCTACCGTGGATGACGGGGTTTCATCTGATGCAGAAAATAAGCGAGCCAAAACCACTGAGCTTGCACAGTTGCAGGTGGAGCTTCAACGCATGAACTCTGAGAACAAGAAGCTGAAAGAGATGCTCAGCCATGTGACCGGTAACTACACCGCCTTGCAGATGCATCTTGTCACATTAATGCAACAGAACCAGCAGCGAACAGGAAGCACGGAAAATGAGGTTGTTCAGGGAAAGGTAGAGGATAAAAACGTTGGTGTTGGTGGAGGGAAGGTACCAAGACAGTTCCTTGATATAGGTCCCAGTGGCACAGCAGAAGTAGATGATCAAGTTTCGGATTCTTCTTCTGATGAAAGAACACGATCGAGCACACCTCAGAACCATAACATTGAAGCTGGAGCTAGAGATGGTGCGAGAAATAACAATGGTAAAAGCCAGTTGGGTAGGGAAGAGAGTCCAGACTCAGAATCACAAGGTTGGAGTCCCAATAAGCTTCAGAAAATGAACCCTTCCAACCCTATGGATCAATCCACTGCAGAAGCCACAATGAGAAAAGCTCGTGTATCAGTTCGTGCCCGATCAGAAGCTCCCATGATCAGTGATGGATGCCAATGGAGAAAATATGGACAAAAAATGGCCAAGGGGAATCCATGCCCTCGAGCATACTACAGATGCACTATGGCAGTTGGTTGCCCAGTTCGCAAACAAGTTCAACGTTGTGCTGATGATAGAACCATTTTGGTTACAACATATGAAGGCACGCATAACCATCCACTGCCACCTGCTGCTATGGCCATGGCATCAACCACTACAGCTGCTGCTAGCATGTTGCTTTCTGGATCAATGTCCAGTGCAGATGGAATAATGAACCCAAATTTGCTAGCTAGAGCAATTCTTCCTTGCTCTACAAGCATGGCAACACTCTCAGCTTCAGCACCATTCCCCACTGTGACTTTGGACCTCACACACAACCCTAACCCATTGCAATTTCAAAGGCCTGGTGCCCCATTCCAAGTACCCTTCCTTCAAGCACAGCCTCAGAACTTTGGGTCAGGAGCCGCCCCAATTGCACAAGCACAAGCACTTTATAATCAATCAAAATTCTCTGGTCTTCAGTTGTCTCAGGATGTAGGATCTTCTCAATTAGCACCACAAGCTCCTAGACCACCCTTACAACCAAGCCAACAGCCCTCACTTGCTGACACAGTCAGCGCCGCCGCCTCCGCCATCACCGCCGATCCAAACTTCACCGCCGTGCTCGCCGCCGCCATCTCCTCCATCATAGGCAGTGCTCATAATTCAAACAACAACAACAGCAACAACAACACAAGCCGGACTACCATTAGCAGCTTTTCAGGAAACTGA
Protein Sequence
  • >Glyma.15G110300.1
    MDKGWGLTLDTSSSQSLPLFPSNDNKMFPLLGFPVNLSRASKEDDENRKVVGEVDFFSDRNKPTPPPSHDHNVKPNIVKKEIDETPLHINTGLQLLTANTGSDQSTVDDGVSSDAENKRAKTTELAQLQVELQRMNSENKKLKEMLSHVTGNYTALQMHLVTLMQQNQQRTGSTENEVVQGKVEDKNVGVGGGKVPRQFLDIGPSGTAEVDDQVSDSSSDERTRSSTPQNHNIEAGARDGARNNNGKSQLGREESPDSESQGWSPNKLQKMNPSNPMDQSTAEATMRKARVSVRARSEAPMISDGCQWRKYGQKMAKGNPCPRAYYRCTMAVGCPVRKQVQRCADDRTILVTTYEGTHNHPLPPAAMAMASTTTAAASMLLSGSMSSADGIMNPNLLARAILPCSTSMATLSASAPFPTVTLDLTHNPNPLQFQRPGAPFQVPFLQAQPQNFGSGAAPIAQAQALYNQSKFSGLQLSQDVGSSQLAPQAPRPPLQPSQQPSLADTVSAAASAITADPNFTAVLAAAISSIIGSAHNSNNNNSNNNTSRTTISSFSGN*