Spg013745 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AGAGTATTTGGTGATAACTGATAAAGAAAAAAAAAAGAAAAATAAACGACAAAATTTTGCAGCATATTCTTCGTCTGGCGCACGCGATCCTTCTCTTCTCTGGCCCCCTTGATCTTCTTCTTCCTCCTCTCAAAATTTCAGCAAAAATCTTCCATTGGAATCACATTGGCGAGTTCTTCTTCCTGCCCAGTGGATCCGATTAGGGCTTTTGGATGGACCGAGTGCAGTCCATACAAAGCCGACTCGAGTCGTGGATTAAAGATCAGCGCGACAAGGTCCTCAAGGTCTCCTGGGGCCCTCTGCAATGGAAAATGAGGTGGCCCTTCTGGAACTCCAACTACAGGGAGCAGCGGAAGAAGATTCACCAGGAGTACGAGCGCCGGAGGCAGCAACTCCATGACCTCTGCCTTGCTCTTAAGGCCGAGTCTGTTGCCGACCTCCAGGAGATTCTCTGTTGCATGGTCCTTTCCGAATGCGTTTACAAGGTGTGGCCAATCTAAAATCTCTTGTTTCTTCATTTGTTTGCGTTTTAGTGATTCGGGAAGTTTGGGAGAATTGAAGGGAATTCAGTCTTTTGATTTTTCTAAAACGGTGTGTTCGTGATGTTAATGGGAATTGTGATGGTTTATACTGATAAGAGTGTCACTGGTCACTGGTGTTTGGCTTCGCGAGCTACTTGTTGAAGTTGGTGTGAGGAAGTGTAAATCGTGAAATGGATATAGCTATTAGTTGATTTGGCCTGTATTCATAAGAGAATTTGGTTCTTTCCTTGATGATTGAACTTTCCCATGAGTGGACGAGTACCGTACGAGCCTAGGAGGTTAATTTGAATTATCGACGTGTTTTCTTTTCCTTCATTCTTTTTCTAATTAGGAATCTTTCTTTATAACAAAAAGATGTTAAACGAGGAGAATCGAGGGGACGATAAATCCTCCACTTGTCATATTATAATAATCCTCTTGCATTGACATTAAACAAGAAAAGGGGAACAATTCTGAACTCATGAGCTGAGTCAGTCTACAGGGTAAGAAGCCACTTAATTTAAAATTGTTTAATGGGGCTCTCTCTCAATTTGTCAACAGAAATTATTTGGTTTCTTTCAAACTACAAATTCCAACAAAGATTCATGTTTGCATTGATGCAGAAGATTTTAGATCTTTACAAATAAAAAAGGATTTGCCAATTGTCAACACTCGATCTTTTGTTGTTCTTGTTATATGGTTAGGTATTCCTCATTTGAAAAAAAGGAGAAAAGAATGTCTCTCCTAGGCCTGTTGTCATCACTCTACAAATCCTTCTAAACTATTAATGACCATTTGTGGGTTGTTCGGGAAACAATTTTTTTTCCCCGAAGATTATTTTAGTAGTCGTTTTGGGTAGTATGTCAATGAGTTCATAACTATCAACTTGACATAAGTTTCCATTGGACTTCAATTGAAAAGTGATAGAGGTCTGGATGATTGCATTCTGTTAGTCTTTTGTAGCTTTCTTTCTGCTGCTTCTTTCTTTGTGTATGTCACAATTATCTCCGATTTCTTCCATTTGTTAACTGATCTAAGAGCATCTTGTCCTTGCATAAAATGCGTCAAATGAATGAACATTATAGAGACCTGCAAGTGAGTTAGTTCGAGCTGTGAATAAATTCAAGGCTGACTTTGGAGGACAAGTTGTTTCTCTGGAGCGTGTGCAGCCATCTTCAGATCATGTTCCACACAGGTTTTCTTTCTTTTATTGAATTTGTTTTAGAAATTTTCACTTCTGCTCCTGACAATTATTCCTGTCATACACTTTGAACTCCCCTCCTATCACCTATGCATGGGTTGCTTCTAATTTCGCTTGTCAATATGGATTTGTACTATGGTTTTTCCTCTAAATTAACAATAATGTTAAAAAAATTGAGAAAAAGTGATTTTAATGATCCTGCGCTTACAGTGAGTCTTAACTCATCTAAACTTCTCTTATTTTAAATTTGGATTGCTTACCAACAGATGGAAATGAATGAAGCTGACGTGATTTTCTTGTTACATGCTGTTGTGTGATCTTCTCTTTTTATGGTCCCATCTTTTTAGTTAAGTTGTTGGCTTGTAGGTGGTTGAATGCATATACTTTTGTTGGGGTACTTATCAGGTTATATTGTTATTCTTAGGTATTTGCTGGCAGAAGCTGGCGATACGTTGTTTGCTTCATTTATTGGAACAAAGCAATACAAGTAAGTTTGGAAATAGTTGATTCTCTTGCTGCTTGAGTCTACTATAGTATTCATTATGTGGGAGCTTTTTTCTTCTCTCTTTCTCTCTCTCCCCTACTCCTTTCTCTTTGTAACATTTTGTTTCACATAAAATAAGGGATGTAATGGCTGATGTGAATATACTACAAGGAGCTATATTCCATGAAGATATAGTGGATGGTGTTGATGGGACCAAAATTTTGAGTTCTGATGAAGATGAGAATCGGAAGGGAAAATCAGAGAACTCATGGAATCCCCTCGAGTCAAAGGCTAAGCAGCTAAAGGATAAATCCAAACCTGCTGCCCATCGGGTAACTAATTTAGTTGGAGTTCTCCCTTTTTACCCCATCTGATTTTAGAACCTAATTAGGAACTGTAGGACTTCTTCTTCTTTTTTTTTCTTTTTTTTTTTTTAATGTTTATGTATTTAGAATTTTTGGGTTTTTATGATTCCCCCCTCTCCATGTAACACTTTATTTTGAGAAACAAGTTCATCATCAATAAAAATGATCTACAAAAGAAAAGAGAGGAAAATATATCCTCCAAAATTCCCTAGCCATAACAACAAACTCGTCCAACTTTCATTTGATTAGGAGAGTAATTGCAAAGGCTCTTAGTCGGCGCTTTTATGAGGAAGTAATAAAACAAAGAAGATTCCAAAATCATCCAAAAGTTTTTTTTGATATCCATCAATGTTTGGATCAGCTTGCGTGCACCTTGACTAATCTCACAGAACAACCGCTTGACCTTACTATATTTAGTTGTCAAAGAAACACGTAGGATATTGTACATTTTAGATAAGTTAAATTCTTTTGTTTACTTTTGTGATTTGTATAGTTCACAACCTCTACTTGGAGTAGCCAACACAAACTTTTTTGTAATTACATTACTTCCAATATCAACTCAGATTGGAAGGTTTTCATTTACCCCTTCTTTTAGGGGAGAGGATACCTTGTCCCTTTGCCTGGTAGGTTGTTTTGCCAGCTTTTTTGTAATGAAGTGTGTGTTATTTCTTATCCCAAAAGAAAGATACCTAGGATATTAAATCCTTGGTAGGTGACTACTATGATTCTCTCTAAGCCCTTTATTATTCTCATGGCCCTTATTGACCAATGACCACTAAGCCACACCAAGATGGTTCTTGTACTTCTCTTTAACTAAATTTTCTAAAGAGTAGTTTTGAGCACAATGCTTCAAAGAATTCTAGCTGTCTTTGAATGGACAGCTTGGACCAAAAAGAGGTTGATATTATTTGGAGCAACAAAATAGAACCAGAACATTGTTGACACCATCCTAATCTGTTGAGTAAAAGCGCAATAAATGATAAGGTGGTTAGCATCTTCCTCACTGCTGCACTGGGAGGCCATGGCAAGATTCCTTTCTTTTTTTTTTTAAAAAAATTAATTTGAACTTGTAGTTTAGATTTAAAATCTTAAATTAAATTAAATTAAAATAAACTAATAAATTTCAAATTTCTGGTCACTGGTACCAATTCTGCGCATAAACAAAGTGCAAATAATGTTTTTAAAAACCTTTGTGGTTTTTTTTTCCTCCAACTATGTTTGCAAAACATCTTATCCTTCACGTCATATCAATCCTCAGGGTTTCTTGGCTCGTGCCAAGGGGATACCTGCTTTGGAATTATACAGGCTTGCTCAAAAGAAGAAACAGAAACTTGTGTTATGTGGACATTCACTTGGTGGAGCTGTAAGCCTGGTTCTTATTTAGTTTTAGCAGTTGATTTCATGTAGTAAACTGCATAGCGTTAACTCTTGTTGCTGTCCTTAGGTTGCAGTTTTAGCTACTCTTGCCATTCTCAGGGGTATTGCTGCCTCTTCTTCTCTAAAGGAGAGTGAGAAATTTCAAGTAAAATGTATTACTTTTTCACAGCCTCCAGTTGGAAATGCAGCTTTGAGAGAGTATGTCTTCATATATGATATCTCAGTTACCTTTTTTTTTTTAAATGATTTTTTTATAAAATTTTTGTCACCTCAATATTTCCCTTCAGTTACGTCAATAGTAAAGGCTGGCAGCAGCATTTTAAGAGTTACTGCATTCCAGAAGATTTGGTCCCGCGTTTATTGTCTCCTGCATATTTTCATCATTATAATGCACAGCCTCTTAATGTGTCACCTGAGACTCGAGGTACGAATTTACTGACAAAAAAACGTGAGGAAGGGGCCGAGAAGCCAAAAGAGAAGGATGGGGAGCAGTTGGTTTTAGGTCTGGGCCCTGTACAGACTTCCTTCTGGAGACTTTCAAAGCTCGTTCCTTTGGAGAGTGTTAGAAGGCAAGTTAACAAGTACAGAGAAAAATATAAGGCTACTGTTGGGACATTTTCAGCATCAGATTCTGTTTCAACAGCCTTACTTGAAGATGATGTAGTTGAACCTCAATCTCTTGAAATTGAGGAGGGTTTGGATGGTATATCTCTGAAGCCAATTTCTGACTCCGATAGTTGTCCACCTGCAAATGTCAAATCTGCTAAAAAGAATGGGGTTGGTAGGAACTGGCGTAGAGTGCCTTATTTACCTTCATACGTTCCTTTTGGGCAAGTATGTTTTCTTATTTGTACATATTTATTTATCTATTTTCCTTGCTTCCCTCTTTTCTTTTCTCTTCTTCTATGTACACTTTTCTATTTCCTTATTGAAAGTTTTCTTTATAAAAAAATGCTGTACATTCAAACACAATTATTCTTATATTGTAGCTTTATCTCTTGGGGAATTCTACAGTTGAGTCACTCTCTGGAGCTGAATATTCAAAGCTGACTTCGGTATGAGTTTCTTATGCTTCATCTGATTCTTTTTCATATCAAAACTTCTATAGATTATTGATTCTTTACTGGCAGTTAGTTTGAAAAATTATTGGAATATCATCTTGGTTCTATTTTGGAATCTCTCATATTGTTTGCTTTCTTCTGGCAAAGGTATTTTCAGGTAAGTTCTGTAATTGCAGAACTACGGGAACGGTTCCAATCACACTCAATGAAATCATATAGGTCTCGATTCCAGAGGTAGTCAATCACTCTCTATTTGAAGCTTAGTTTGTATCATGTATTAATTCAAATTCGTGAACTGATCTTAATTAAATGAAATTCTTTGTTTAGACTACTATTTTGATTCATCTATTTTTATAGTGGATTTATGTATACATTTTCTATGATAATAAAATGCGGCTTTACGGTATATAAAGGGAGACTAATTTATTTACATACCAGGGAGGCTAATTTATTTACATACTTTGTGGTTCTTTTATTATGTGATTTTTGATTTGTATTACATTTGCTTTCTCAACAGAATTTTGTTAACCATCTGAAATCTCTTCCACTGTCTACTAGATTTTTAAATTTGTTATGAATCTGAACAGAAGGCAATTTCATTTGCATGTTTAAACTTTTTCAACATTAGGCAGTGGTATTATTAGTTAATGATGTTGAGAAGTTCTTCAGTCTCTTCTCATTTTTTAATGTCTTTTGATGTTTTTGGAGAAATTATTTTCTTATTCAACAAAGGACACCCAAAAATGGATAAATACAAATTATACAATACAATATAAATTTCAACTCAGGAAATAAATTATAAAAGAAAAGGATATGGAATAACAATTAAAAATAAAGAAGACTAATATTTAATCTGAACGTAATTATACTATATAAAAATCTACATCTTTCTCAATGTTTCTTAATAAAAAAAAAGAGAGAGAAGTCGTTCAGTCTTGATGGCATCTATGGCCCAGCTTTCAATCCTGAAGCATGTGGTAAGGTAACATATAACTGATTATTTTTCTGAACTTACTTGCATCAAGCAGTGTTTCTGGTGATCAAAAAAAAAAAAAAAAAAAAAGCAGTGTTTCTGATTTTGGACTTCATCTGCCTCTGTAAAACCCAGAATGTGCTGAGAATGTATAATATAGTTTTCCTTTTCTTTTTATCTCTCCTTCCATTTTTTTTTTTTGGACTTTTAAGAGAATGAATGTGGCATTTTCAATATGACATTCTTTTATATTGTGAGAAACTGGTCTCCATGCAGAATCTATGAATTATGTATGAAAGATGATGCCTCATCTATCATGGGGGTGGAGCAAATGCAACAATTTCCACATCTTCAGCAGTGGCTTGGACTTGCCGTTGCAGGTACTGTCAAGCTTGCACAAATAGTGGAGTCTCCAGTTATTCGGACAGCAACTTCTGTTGTTCCTCTTGGATGGAGTGGTGTACCCGGTCAGAAAAGCTGTGAACCCTTAAAAGTTGATATTACTGGATTTGGGTTGCATCTTTGTACTCTCGTGCATGCTCAAGTAAATGGTAACTGGTATAGCTCTACGCCTCCTAACCTTTTTTTTTAATTGTTAATTTTTTTTCTGTTGTCTCATGATTCGCATGATCAACTAGGGATATGTATAAATATTTGATAAGGAAACACATGTTTCATTGATGTAGTGAAAAGTTGGAGCAGAGTGATCTCGACATAAGAAGTAAAACACACAACTCAAAAAACTCAGAAATCACACTGATAAAAAGTCTCTGAAATCTTGGAATCAGGAAATTTGAGATACGAAGATTAAGAAATGGGAAATTTTAAATAGACTGAAATTCTTGGCTGGGTTGGAGGAGGTTGGTTCCATGTGTGACGATCTTAGGGAGGAGAGAGTCCTAAAGGTTAACTTCGAGGAGTTGGTTAGAAGTGAGGTTATGAGTTGGAGGCAAAAGCTAAGGTGAATTTTTGGGAAAAGGAACATATTTGATTTTTAGGGAGAGAAGAAGTATTATTTTCGTTATGGGCCTCGGTTTCTAAGGCTTTTTGTAATTATACGTTAGGTATTATTTTGATCGACTGGAAACCCTTCCTATAGTTGGGTTTCATTTTTGGGGCTTGGTTTTTTTGGATGCCCTTGTATTCTTTCATTTATTCTCAAAGAAAGCTTGGTTTTTCATCCAAAAAGAGAGAGAGAGAGAGAGAAGAGGTATGGTTAGAAGAGAGATGAAAATTAAATAAAGATAAACATTTTAGAGGTAGAAAAAAGTAGAGATGGAAATTTTGGAGAGAGATAATTTTTTAGAAAGAAATAATAAAAAATTATATCGAGATGAAAATTGTAAAGAGAGAAATTTAGAGAGAAAAGAAGTTAGAAAAGGAATTTGTTGGAGAGATATATCAAGGAGGAAAAAGATGAGCATTAGAAGAAAATCGAGTTTTTGAAAAACAGAATTATGTTTAAAAGAAAAAACTTATTTTTTTTTTAATTTTTAGTTTTTGAAATTTGTTTCTAATTTCAAAAACATTTTTTGAAAACAGAAAACAAAAATAGAATTGATTATCGAACAACTCTGTTTTTAAAAAATGTAAAACAAAAACAGAAACCAGGAAAGCCTCTTTAGCTTCTTAACTATTGTTATATCTAAATTGGCAGTAGACGACACATTTCAAATGGACAATTAAATATTGAAGGTCTTACTGATCATTTATTCAGGTGTTCAACGAGGGTGGAGTCGTTTCCTCCGGTTCCAACCATCTCTTCAGGTCATGGAGCCCCTGAACTTCAAAAAATGCGAGTTGTAGTCGGAACACCTCTAAAACGGCCACCAAACCATCAGACAGTTGCTGATTCAGCAACTCCGTTGTTCCCAGTGACTAATTCATCTGTTGATGATTCTAGTGCAGAACATAGATTACCCTTTAATATAGAGAAATACATCCGTCCTGAAGGCTTGTGTGATTTTTTCATATTCTGTACCAGTGATTTTGCAACAATCATGAAAGAGGTACATGTCAGAACTCGTAGGGTGCGGCTACTTGGCCTTGAGGTATGCTCAACACCCCCCACCCCGGCCCTTTCTTTCTCTCTCTATCTCGTATGATGAAAGTAACTCATGGGATGTATAGGGTTCAGGCAAAACTTCACTTTTCAAGGCAATAGTTAGTCAGGATAGGATGACCCCCATTCCACACATTGAGCATCTGCTTCCGGCAATGGGAGCCGAAGAAGCCATTGCTGGTGGCATTTGCTATTGTGACTCGCCAGGAGTAAATCTGCAGGTTTGTCTTTAAATCATCAAGAATCCATCAATTCTCAGTCTTCACTATATGGTCATATGACGTATTTTGTTTTGGTATTAGGAGTCTTGCATAACAATCCTATGAGTTCTTTTTCTCCATGCTTCCACTGGGCTGTCCCTTTATGGTTTTAATTGTGCAAATGAAAACTCTGAACTACTATACTGTCTTTTGTATATATGCATCTATTTCTTCTATTTATATTTCGAGTTTCTGTTCTTACTGTGTTTTATTTATTTATTTATTTTTTTGTGTAGGAACTTAAGATGGAGGCTTCCAGTTTCAGGGATGAATTATGGATGGGGATTCGTGACCTCAGTCGGAAAACAGATTTGCTGGTTCTTGTTCATAATCTGTCACATAAAGTACCTTTATGCGTGCAATCAAATGGATCACAGCCGAAGCCAGCACTATCTCTGCTTTTGGATGAGGCTAAATCTCTTGGTATTCCTTGGGTCCTTGCCATAACAAACAAGTTTTCTGTAAGTGCGCATCAACAGAAAGCTGCAATCGAAGCCGTTTTGCAAGCTTATCAAGCATCTCCATCCACCACTGGAATAATCAATTCCAGTCCTTACGTTTTTATTCCTGGTGCCGTTACTGCTTCTTTGTCCACCAGTGCAATTATTGGAGACTCGGATGTGAAAATGGCTGCTCAAAAGCTTTTTCTTGCTCCAATCAACCTTGTTAGGAGGCCTTTCCAGAGGAAAGAAACTGTTCTACCGGTGGACGGTGTCAACTCTCTCTGCCAGCTTATCCATCGTGTACTTCGTAGTCATGAAGAGACTTCATTTCAGGTTTAACATCGTTGAACACATGATCCTCTCTCCCTTTTCCCCCCTCTATCAGTTTCTGAGAAAGTTTGTAGGAAGAGTTCTGTTAAAAAAGATTAAAGTCTCCGTTTGTCTCCTAATATTATTTTCTTCTTCTTGGTGATTCATTTGTCTAATATGTTTTTAGTTTTTACGCCCTTGTATTTCAATTAACGTCTATGAAACCATCTCTCAGCTCTTTTGATTATGGTCTACGCCTTTGAAGTTTAAACTCACAATGACTCCCATTTTTGAACTGAAGGAGCTGGCTAGAGAGAGACTTTTCATGGAATTGGAATACGAACGTGCAATGTCCATGGATGCAACTCGAGATGCAAAAGCCAAGGAAAATTCATTAACATCTGCAGCAGTTGGCGCTTCCCTTGGCGCTGGCCTTGGCATTGTTTTGGCAGTCGTTATGGGAGCAGCCTCTGCATTGAGAAAACCTTGA ATGGACCGAGTGCAGTCCATACAAAGCCGACTCGAGTCGTGGATTAAAGATCAGCGCGACAAGGTCCTCAAGGTCTCCTGGGGCCCTCTGCAATGGAAAATGAGGTGGCCCTTCTGGAACTCCAACTACAGGGAGCAGCGGAAGAAGATTCACCAGGAGTACGAGCGCCGGAGGCAGCAACTCCATGACCTCTGCCTTGCTCTTAAGGCCGAGTCTGTTGCCGACCTCCAGGAGATTCTCTGTTGCATGGTCCTTTCCGAATGCGTTTACAAGAGACCTGCAAGTGAGTTAGTTCGAGCTGTGAATAAATTCAAGGCTGACTTTGGAGGACAAGTTGTTTCTCTGGAGCGTGTGCAGCCATCTTCAGATCATGTTCCACACAGGTATTTGCTGGCAGAAGCTGGCGATACGTTGTTTGCTTCATTTATTGGAACAAAGCAATACAAGGATGTAATGGCTGATGTGAATATACTACAAGGAGCTATATTCCATGAAGATATAGTGGATGGTGTTGATGGGACCAAAATTTTGAGTTCTGATGAAGATGAGAATCGGAAGGGAAAATCAGAGAACTCATGGAATCCCCTCGAGTCAAAGGCTAAGCAGCTAAAGGATAAATCCAAACCTGCTGCCCATCGGGGTTTCTTGGCTCGTGCCAAGGGGATACCTGCTTTGGAATTATACAGGCTTGCTCAAAAGAAGAAACAGAAACTTGTGTTATGTGGACATTCACTTGGTGGAGCTGTTGCAGTTTTAGCTACTCTTGCCATTCTCAGGGGTATTGCTGCCTCTTCTTCTCTAAAGGAGAGTGAGAAATTTCAAGTAAAATGTATTACTTTTTCACAGCCTCCAGTTGGAAATGCAGCTTTGAGAGATTACGTCAATAGTAAAGGCTGGCAGCAGCATTTTAAGAGTTACTGCATTCCAGAAGATTTGGTCCCGCGTTTATTGTCTCCTGCATATTTTCATCATTATAATGCACAGCCTCTTAATGTGTCACCTGAGACTCGAGGTACGAATTTACTGACAAAAAAACGTGAGGAAGGGGCCGAGAAGCCAAAAGAGAAGGATGGGGAGCAGTTGGTTTTAGGTCTGGGCCCTGTACAGACTTCCTTCTGGAGACTTTCAAAGCTCGTTCCTTTGGAGAGTGTTAGAAGGCAAGTTAACAAGTACAGAGAAAAATATAAGGCTACTGTTGGGACATTTTCAGCATCAGATTCTGTTTCAACAGCCTTACTTGAAGATGATGTAGTTGAACCTCAATCTCTTGAAATTGAGGAGGGTTTGGATGGTATATCTCTGAAGCCAATTTCTGACTCCGATAGTTGTCCACCTGCAAATGTCAAATCTGCTAAAAAGAATGGGGTTGGTAGGAACTGGCGTAGAGTGCCTTATTTACCTTCATACGTTCCTTTTGGGCAACTTTATCTCTTGGGGAATTCTACAGTTGAGTCACTCTCTGGAGCTGAATATTCAAAGCTGACTTCGGTAAGTTCTGTAATTGCAGAACTACGGGAACGGTTCCAATCACACTCAATGAAATCATATAGGTCTCGATTCCAGAGAATCTATGAATTATGTATGAAAGATGATGCCTCATCTATCATGGGGGTGGAGCAAATGCAACAATTTCCACATCTTCAGCAGTGGCTTGGACTTGCCGTTGCAGGTACTGTCAAGCTTGCACAAATAGTGGAGTCTCCAGTTATTCGGACAGCAACTTCTGTTGTTCCTCTTGGATGGAGTGGTGTACCCGGTCAGAAAAGCTGTGAACCCTTAAAAGTTGATATTACTGGATTTGGGTTGCATCTTTGTACTCTCGTGCATGCTCAAGTAAATGGTAACTGA ATGGACCGAGTGCAGTCCATACAAAGCCGACTCGAGTCGTGGATTAAAGATCAGCGCGACAAGGTCCTCAAGGTCTCCTGGGGCCCTCTGCAATGGAAAATGAGGTGGCCCTTCTGGAACTCCAACTACAGGGAGCAGCGGAAGAAGATTCACCAGGAGTACGAGCGCCGGAGGCAGCAACTCCATGACCTCTGCCTTGCTCTTAAGGCCGAGTCTGTTGCCGACCTCCAGGAGATTCTCTGTTGCATGGTCCTTTCCGAATGCGTTTACAAGAGACCTGCAAGTGAGTTAGTTCGAGCTGTGAATAAATTCAAGGCTGACTTTGGAGGACAAGTTGTTTCTCTGGAGCGTGTGCAGCCATCTTCAGATCATGTTCCACACAGGTATTTGCTGGCAGAAGCTGGCGATACGTTGTTTGCTTCATTTATTGGAACAAAGCAATACAAGGATGTAATGGCTGATGTGAATATACTACAAGGAGCTATATTCCATGAAGATATAGTGGATGGTGTTGATGGGACCAAAATTTTGAGTTCTGATGAAGATGAGAATCGGAAGGGAAAATCAGAGAACTCATGGAATCCCCTCGAGTCAAAGGCTAAGCAGCTAAAGGATAAATCCAAACCTGCTGCCCATCGGGGTTTCTTGGCTCGTGCCAAGGGGATACCTGCTTTGGAATTATACAGGCTTGCTCAAAAGAAGAAACAGAAACTTGTGTTATGTGGACATTCACTTGGTGGAGCTGTTGCAGTTTTAGCTACTCTTGCCATTCTCAGGGGTATTGCTGCCTCTTCTTCTCTAAAGGAGAGTGAGAAATTTCAAGTAAAATGTATTACTTTTTCACAGCCTCCAGTTGGAAATGCAGCTTTGAGAGATTACGTCAATAGTAAAGGCTGGCAGCAGCATTTTAAGAGTTACTGCATTCCAGAAGATTTGGTCCCGCGTTTATTGTCTCCTGCATATTTTCATCATTATAATGCACAGCCTCTTAATGTGTCACCTGAGACTCGAGGTACGAATTTACTGACAAAAAAACGTGAGGAAGGGGCCGAGAAGCCAAAAGAGAAGGATGGGGAGCAGTTGGTTTTAGGTCTGGGCCCTGTACAGACTTCCTTCTGGAGACTTTCAAAGCTCGTTCCTTTGGAGAGTGTTAGAAGGCAAGTTAACAAGTACAGAGAAAAATATAAGGCTACTGTTGGGACATTTTCAGCATCAGATTCTGTTTCAACAGCCTTACTTGAAGATGATGTAGTTGAACCTCAATCTCTTGAAATTGAGGAGGGTTTGGATGGTATATCTCTGAAGCCAATTTCTGACTCCGATAGTTGTCCACCTGCAAATGTCAAATCTGCTAAAAAGAATGGGGTTGGTAGGAACTGGCGTAGAGTGCCTTATTTACCTTCATACGTTCCTTTTGGGCAACTTTATCTCTTGGGGAATTCTACAGTTGAGTCACTCTCTGGAGCTGAATATTCAAAGCTGACTTCGGTAAGTTCTGTAATTGCAGAACTACGGGAACGGTTCCAATCACACTCAATGAAATCATATAGGTCTCGATTCCAGAGAATCTATGAATTATGTATGAAAGATGATGCCTCATCTATCATGGGGGTGGAGCAAATGCAACAATTTCCACATCTTCAGCAGTGGCTTGGACTTGCCGTTGCAGGTACTGTCAAGCTTGCACAAATAGTGGAGTCTCCAGTTATTCGGACAGCAACTTCTGTTGTTCCTCTTGGATGGAGTGGTGTACCCGGTCAGAAAAGCTGTGAACCCTTAAAAGTTGATATTACTGGATTTGGGTTGCATCTTTGTACTCTCGTGCATGCTCAAGTAAATGGTAACTGA MDRVQSIQSRLESWIKDQRDKVLKVSWGPLQWKMRWPFWNSNYREQRKKIHQEYERRRQQLHDLCLALKAESVADLQEILCCMVLSECVYKRPASELVRAVNKFKADFGGQVVSLERVQPSSDHVPHRYLLAEAGDTLFASFIGTKQYKDVMADVNILQGAIFHEDIVDGVDGTKILSSDEDENRKGKSENSWNPLESKAKQLKDKSKPAAHRGFLARAKGIPALELYRLAQKKKQKLVLCGHSLGGAVAVLATLAILRGIAASSSLKESEKFQVKCITFSQPPVGNAALRDYVNSKGWQQHFKSYCIPEDLVPRLLSPAYFHHYNAQPLNVSPETRGTNLLTKKREEGAEKPKEKDGEQLVLGLGPVQTSFWRLSKLVPLESVRRQVNKYREKYKATVGTFSASDSVSTALLEDDVVEPQSLEIEEGLDGISLKPISDSDSCPPANVKSAKKNGVGRNWRRVPYLPSYVPFGQLYLLGNSTVESLSGAEYSKLTSVSSVIAELRERFQSHSMKSYRSRFQRIYELCMKDDASSIMGVEQMQQFPHLQQWLGLAVAGTVKLAQIVESPVIRTATSVVPLGWSGVPGQKSCEPLKVDITGFGLHLCTLVHAQVNGN Homology
BLAST of Spg013745 vs. NCBI nr
Match: XP_038900211.1 (uncharacterized protein LOC120087314 isoform X1 [Benincasa hispida]) HSP 1 Score: 1174.1 bits (3036), Expect = 0.0e+00 Identity = 592/615 (96.26%), Postives = 602/615 (97.89%), Query Frame = 0
BLAST of Spg013745 vs. NCBI nr
Match: KAA0026085.1 (Lipase, class 3 [Cucumis melo var. makuwa]) HSP 1 Score: 1172.5 bits (3032), Expect = 0.0e+00 Identity = 587/615 (95.45%), Postives = 603/615 (98.05%), Query Frame = 0
BLAST of Spg013745 vs. NCBI nr
Match: TYJ96327.1 (Lipase, class 3 [Cucumis melo var. makuwa]) HSP 1 Score: 1172.5 bits (3032), Expect = 0.0e+00 Identity = 587/615 (95.45%), Postives = 603/615 (98.05%), Query Frame = 0
BLAST of Spg013745 vs. NCBI nr
Match: KAG6576015.1 (Protein EDS1B, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1171.4 bits (3029), Expect = 0.0e+00 Identity = 585/615 (95.12%), Postives = 601/615 (97.72%), Query Frame = 0
BLAST of Spg013745 vs. NCBI nr
Match: XP_008458083.1 (PREDICTED: uncharacterized protein LOC103497620 [Cucumis melo]) HSP 1 Score: 1169.1 bits (3023), Expect = 0.0e+00 Identity = 586/615 (95.28%), Postives = 602/615 (97.89%), Query Frame = 0
BLAST of Spg013745 vs. ExPASy Swiss-Prot
Match: Q9SU71 (Protein EDS1B OS=Arabidopsis thaliana OX=3702 GN=EDS1B PE=1 SV=1) HSP 1 Score: 54.3 bits (129), Expect = 5.7e-06 Identity = 28/87 (32.18%), Postives = 46/87 (52.87%), Query Frame = 0
BLAST of Spg013745 vs. ExPASy Swiss-Prot
Match: Q9SU72 (Protein EDS1 OS=Arabidopsis thaliana OX=3702 GN=EDS1 PE=1 SV=1) HSP 1 Score: 49.7 bits (117), Expect = 1.4e-04 Identity = 25/88 (28.41%), Postives = 48/88 (54.55%), Query Frame = 0
BLAST of Spg013745 vs. ExPASy Swiss-Prot
Match: Q9XF23 (Protein EDS1L OS=Arabidopsis thaliana OX=3702 GN=EDS1 PE=1 SV=1) HSP 1 Score: 49.3 bits (116), Expect = 1.8e-04 Identity = 25/87 (28.74%), Postives = 47/87 (54.02%), Query Frame = 0
BLAST of Spg013745 vs. ExPASy Swiss-Prot
Match: P61870 (Mono- and diacylglycerol lipase OS=Penicillium camembertii OX=5075 GN=mdlA PE=1 SV=1) HSP 1 Score: 47.8 bits (112), Expect = 5.3e-04 Identity = 40/106 (37.74%), Postives = 50/106 (47.17%), Query Frame = 0
BLAST of Spg013745 vs. ExPASy Swiss-Prot
Match: P61869 (Mono- and diacylglycerol lipase OS=Penicillium cyclopium OX=60167 GN=mdlA PE=1 SV=1) HSP 1 Score: 47.8 bits (112), Expect = 5.3e-04 Identity = 40/106 (37.74%), Postives = 50/106 (47.17%), Query Frame = 0
BLAST of Spg013745 vs. ExPASy TrEMBL
Match: A0A5A7SNR2 (Lipase, class 3 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold19G00170 PE=4 SV=1) HSP 1 Score: 1172.5 bits (3032), Expect = 0.0e+00 Identity = 587/615 (95.45%), Postives = 603/615 (98.05%), Query Frame = 0
BLAST of Spg013745 vs. ExPASy TrEMBL
Match: A0A5D3BB43 (Lipase, class 3 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1970G00320 PE=4 SV=1) HSP 1 Score: 1172.5 bits (3032), Expect = 0.0e+00 Identity = 587/615 (95.45%), Postives = 603/615 (98.05%), Query Frame = 0
BLAST of Spg013745 vs. ExPASy TrEMBL
Match: A0A1S3C896 (uncharacterized protein LOC103497620 OS=Cucumis melo OX=3656 GN=LOC103497620 PE=4 SV=1) HSP 1 Score: 1169.1 bits (3023), Expect = 0.0e+00 Identity = 586/615 (95.28%), Postives = 602/615 (97.89%), Query Frame = 0
BLAST of Spg013745 vs. ExPASy TrEMBL
Match: A0A6J1GNH8 (uncharacterized protein LOC111456099 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111456099 PE=4 SV=1) HSP 1 Score: 1166.8 bits (3017), Expect = 0.0e+00 Identity = 583/615 (94.80%), Postives = 599/615 (97.40%), Query Frame = 0
BLAST of Spg013745 vs. ExPASy TrEMBL
Match: A0A6J1GNT6 (uncharacterized protein LOC111456099 isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111456099 PE=4 SV=1) HSP 1 Score: 1166.8 bits (3017), Expect = 0.0e+00 Identity = 583/615 (94.80%), Postives = 599/615 (97.40%), Query Frame = 0
BLAST of Spg013745 vs. TAIR 10
Match: AT3G07400.1 (lipase class 3 family protein ) HSP 1 Score: 813.1 bits (2099), Expect = 1.5e-235 Identity = 419/614 (68.24%), Postives = 493/614 (80.29%), Query Frame = 0
BLAST of Spg013745 vs. TAIR 10
Match: AT3G48080.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 54.3 bits (129), Expect = 4.0e-07 Identity = 28/87 (32.18%), Postives = 46/87 (52.87%), Query Frame = 0
BLAST of Spg013745 vs. TAIR 10
Match: AT3G48090.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 49.7 bits (117), Expect = 9.9e-06 Identity = 25/88 (28.41%), Postives = 48/88 (54.55%), Query Frame = 0
BLAST of Spg013745 vs. TAIR 10
Match: AT3G48090.2 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 49.7 bits (117), Expect = 9.9e-06 Identity = 25/88 (28.41%), Postives = 48/88 (54.55%), Query Frame = 0
BLAST of Spg013745 vs. TAIR 10
Match: AT5G67050.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 46.6 bits (109), Expect = 8.4e-05 Identity = 32/89 (35.96%), Postives = 48/89 (53.93%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (cylindrica) v1
Date Performed: 2022-08-01
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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