Lsi08G002400 (gene) Bottle gourd (USVL1VR-Ls) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGAACATGCCAGGTTCACATGAGGAGGAAGATGATCACGGTGAGGTCTTCCTTGATGAAGCTGACATAATCAATGAAATACCGCTTGATGAGGAAGGTCTGTCTTTCCTCCTGTTGATATTGTCTATAGGTTTTTGTGAAGTTTGCTTTACTAATTATTGCGTTTAATTCTGTTGATTTAAGATCTTCCTGATGCTGTTGATGAAGGCGGCTCTGATGATGAATATTTTGGTATGAGATGCTATATTCCAGTAATCTTGCTTGCTTAAAGCTTCATGTTCTCGAAGAACATTTCTATTGTATTGGTTTTTCACTTTCTAAATTATGTTTTAAGGTTTCAGAAATATATCTGAGTATTCTGCTCTATAAGTTGTTGCATTTATTAAATTGGTTGGTTTTCAGATGAGGCTGATGATTCAGTTCATACTTTTACTGGCCATACTGGTAAGAGTCTATTTTAGTTGTCTTTAATTTCTGTGTGCCAATTAGTTATATATATATATATTGCTTTCTTTTCCTCGTTTTACTGTCTTTGTAAGGTTCATATATTAAGTTGATGAATCAACTGATGACTATAGTAACTTAACTCATGTCATGAACGTTGAATCAAAATGTAGTAAGATCTCTAAGAAATTTTCCTAATGGAAGTGAAGCTTATCCTTGTTCATCTTATGAGTGCAGGTGTCTTTTCATGCATATGTCAAAGTTAATTTGAATCTTTAAACCTGTCTCTTCATGTTAATGGAAGTTTATATTGGGGTATCCTTTTTCAGGTGAGGTTTACACAGTGGTCTGTAATCCAATAGATGCTACATTAGTTGCAACAGGTGGTGGAGATGACAAAGGATTTATGTGGAAGATTGGCCGAGGAGATTTTGCACAGGAGCTTAGTGGTGTGTGCATGATACTGCAAATAGTTATATATATTCTTTGTTATTCTTAAATAGTTATATATATTCTTTGTTTTACTTTTCACTTCCAAAACCAAAAGTGTTATATTGTGTTTCCTATGTACCAATTCCACCTTCTTTGCCTTGGCTAAATCTTTGAATTAGCATATTAGATCTTATATATGTTTTTCTTTTTCTAGCTGATTTAAGCAAAACTATTGCAGGTCACAAGGATTCTGTGTCTAGCTTAGCATTTAGTGCAGATGGACAACTACTTGCATCAGGGAGTTTTGATGGACTTATCCAAATTTGGGATACTTCATCCGGGAATCTTAAATGCACACTTGAAGGCCCTGGAGGGGGAATTGAGGTAAAGCGGTATTTATTTTTTTATAAAACTAATAATTTAACCAAGCCATTCAGTCTTTAGGATATCATGGTTTAGATTCATGAATAATAAGCATTTGGGAGGCGATTGGAAAGCCAGTGAACATTGGGAGTTTAGAACTAGGGAATTTAAAGGCTAGGAACAAAGTCTTTTTGGCTAAATAGTTGTGAATTTCTCCTTTGAGCCACTACCCTATGATATAGGATTATAACAAGAAAGTACGATCCTCATCCGTTGACTGGGTCCAAGGAAAGAAATTTCTAATGAGCTCCCTTCTTTCTCTCATCTGGTCTATTGTTTTGTGGAGATGAGAAGGAAACATAATTGTAGGGGACAGACCCCTTTGCGTTATGTTTTCTTGTTTATACCACCTGAGTTTTATGAAAAATCGCTTGATGGTTAATGCTGTTGTTCGTTCAAGGAGTAGCTCTTTATCGCTTGGGTTCAGTTGTCATTTGTTTGATAGGGAAACAATGGATATCATGGCTCTCTTATCTTTGATTGAGGAGATTGAGTTTAGATGGTGGAGAAGAGGTTTTTGTCTTTGGACCTTTGACCCCACTAGGGGCTTTTCTTGTAGCTCTTTGTTCTTTTATTTGTTGAACCTTTCTTTGTCTAGTGAGTTGACCTTGTCCTCTCTAGATGGTGAAAATCGCAAAGAAGGTTAAGTTCTTTGTTTGGTAGGCTATGCAGGGAAAAGTTAATATTCCTAATAGGCTTTCGAGGAAGTTTTCCTCATTGATAGGGCCATTTTGTTGTATCCTTTGTCGGAAAGTAGAGGAAGATCTGGATCATAGCATTTGGAGCTGTGAGTTTGCTCAATCTGTTTGGACTTACTTTGTTGCTATATTTGTTGTACTTGTACCAGACTGCCGACACAGATTACGGGGAGATGATCAAGGAGTTCCTCTGTTACCCTCCTTTTTGAGATAAAGGGAGGTTTTCATTTGGCAAGCTGGGTATGTGCTATTTTGTGGGGCCCTTTGGGGGAAAAGAAACAATAGAATCTTTCGAGGTTTAGAGAGGCGTCCTTGTGATGTTTGGTCTCTTGCTAGGTTCTATGTTTCTCTCTAGGCATCTATGATGAAATCTTTTTGTAATTATACGTTAGGTCTTATTGTTCTTGATTGGAATCCCTTCCGTTAGTGGACTTTCTTTTTGTGGAAGGGGTTTTTTTGGATACTTTTGTATACTTTCATTCTTTCTCCGTGATATTTTGGTTCTTTATGAAATAAATAATAGCATTGTATATTTCAGTGGGTAAGGTGGCATCCAAGAGGACATCTGGTTTTGGCTGGTTCTGAAGATTCCACCGCTTGGATGTGGAATGCTGATAGAGGTGTCTATCTTAATATATTTTCTGGTCATGGTGCTAGTGTTACCTGCGGTGATTTTACTCCGGATGGTATTGAACTAATTTTCTTCTTTTATTTCTTACTATCCCATGTAATTAATTACTAGATTCTGTGATGTGTTACCATATTCTAAATACTTCTGCTACGAAAATTACTTATAAAGAAAGATATTCAATTATAAATGAAAAGGTTTTCCTTTGGATTCATCGTTATGATTTAGCTCGGTTGAAGCTTGAAGATTTCTTCTTGGTGCTTCTTGTCTTAGTCATGCGTGAGTTTTTTTTAGCAGCATATTTGCTTCAATTGTAATACTTTATACATCACTCTTAGATTTCTATCGTCTTTATTTGATCCTGTTGTGGTTATTGTACTTTGTTTCTTTTTCTTATTTCTTATGTTTTCTTTTCTTCACTCCCTTGTGGAGTTTGTATCTTTGAGCATTAGTCTCTTTTCATTAAATCAATGAAAAATTTTGTTTCTTGTTTAAATAATAATAATAATAAAAATAATAAATGAAAAGGATTAATATCTAATCTAAACTCAATAAGACTGTACAAATCAACACTCTTCCTGGATTGTGTATGGAGTACAATCCAAGCTTGGAGTTGAATTCATGCATCTTTTTTCCTTCTAATTAGTAATGATCATGATGTTATTAAGACCTTTTGTTGCTCCAGGTAAAATGATATGCACGGGTTCCGATGATGCAACGATGAGGATATGGAATCCGAGAAGTGGTGAAAATATTCATGTCGTGAGGGGTATGTTAGAAACTTGTGTGTACGATCCATTTTTAAATTTGTCCTATAAGTCATGAACTTGTTGAAATTTTGTACGCACGAGATATTAAATTTGAAATCCTTACACTGATTTTGGAACTTGATCGTCAATCTTTTGTAGTTCACTATTTGGGAAGTGAATTTTCAGTTGTCAGATGATGTATTGGTTAGGTGGTGACGAGAATTTAGTTTTCAATAATTGTCTATTTGTGAAAGTTTGGTGCGGCCTTATTCCAACTCCTCCTGAATATATAAGCTTATGAAGAGCTCTTATAAGCATAAAGGATGAATTTGCTGTTATGAGAGATTGAACTGCAAGAGATTATGATATAGACTTACTTGATCTTGAAAGTGAATCCTGCTTTCGAATTTTACAAGAAATGATACCTTAAAAAAGTAGGGGGAAAAAGCTTTGCAGGGCCTGTGGAGTTCGAGGGATGTAGGTTGTGTCTTGATTCTGGGTCATCCAGTGGAAATGTGGAATCCTTTTTACTCATTTCATATTTTATTTTTATTGAAGATATTTTTTAAGGGGGCTTACTCCTTTCGGTTGAAGAGCTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTAAGGAAACGATGCTTTTCNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTTTTTTTTTTTTTTTTTTTAATTTTTATTTTAAGGAAACGATGCTTTTCATTGATATAATGAAAAGAGTCTAAATATCCCTTAATTCCTTCCTCAGTTCCTTCTAAATTTAATTACTTAATTGAGGTGTGTGGTTTACAGATGATTGAAATCAGGCCGCAATCACCTCAAATTAAGGTGTAACTGAGGATTTGGGTTATGAATTTAAGTTGACCGGTTATTCATCTTCAACTTTTTGAAGTCTTTTAGAGTCTTTTAGTGGGTGTTGTTTCACCTTTCTTCATTTTCAGTGGGTTTCCAGAAGCTTGTTTAAGGCCAATAGTTTCCAGTTTGATTGGGCTTTTTAGAAGTTTTTCCTCAGTTATTTTGTTCACTTGTGGAGTTTGTTTTCATTGAGGAGTTTCTCTTTGGATGAATTCTTTGAACCTTTCAACTTTAGTTGCTTTTTTGGTTTTAGTTTGAGATCGATTAGAGTATTGTCTTCTCTTATTGGGTGTATTTGGTTGTATTGTTGGCAATTGCTATATTTTGTTTTATTTTGTTTCATCGTATTTTGAGCGTTGGTCTCTTTTCATTTTATTAATGAAAAGTCTTGTTTCCTTTTCAAAAAAAAAAAAATGGTCTAATGCTAAAAAATACAAGATACCAAATAACAATAAAAAATGCAAAGCTACATAAATGAACTGAAGAAAGGAAAACATTCTAATTTAAACAAATGTCATGAATGGAATAATCAGCAAAAACTTTGGATTGAGAACACCATGAAGAGGCGAGAAGACGAGCTAAGCCCAACTGATCTGACCAATCGACTTGTCATGAAAACCCCTTTGATTACGCTTGAACCAAATCTCTGCTAACAAAGCCTTGATTGCATTGGACCATAGTAACTGATATTTAGAGGATAATAATGGACCAACCAAGACTTGAGAAATATCCAACGAAAAATCAAAAAGCAAGTGCTGCAAATCTTTGCTATTTGCCAAACATAATGAACAAATAAAGGGTGAGAGGTTGTGCGCCTGGAGTTTAAGTTGTGAAGTAGTCGAGTGATTTAGTGAGCCAAAAATCAACATCCATACCATACTCTTATATTAAATCGTTTAGGAGTTTGTCTGCATGCGTTGATTTGGAAAGACCACTATCCTAAGAAGATTAAAATTTTTCTTTGGGAGTTTAGTTGGGGCGCCATTAACACTGCGGATCGTTTGCAGCGACAATATCCTTATGTGTATTTCTCCCTCTTGGTGCATCATGTGTCGAAATCATGCTGAATCCCCAATTCACTTGTTCCTGCAATGTCCATTTGCTGCCAATTTTTGGGATCTTTTTTTGTCCACTTTTGGGTGATCCTACATCTGTCCTAATTCCATAACTGATGCTCTGGCTTCTTTATTGGTGGGTCATCCTTTTGGTGGTACAAAAGCGATCGTTTGGTTGGCTCTTGTGCGTGCTTTCTTCTGGAGGTTGTGGGGCGAACGAAACAGTCGGCTTTTCAACGACTCCTTTACCCCCTTCAATCGTTATGGAATCTGTTTTGTTTACTGCTTTTTCTTGGTGTAAAATTAAACACCCTTTTATTCATTTCAGCTTATCTTTTTTAGTCAGTAATTGGCATTCTTTGATGTAATCACCTCTTGGTGCTTGGGATTTCCCCCCTCTTTCATTGATCAATAAAATTGTTTCTTTTACCAAAAAAAAAATCGTTTAGGGGTCTTTGATTTCCACAAAGCCTGAAAAATCTCCTTATCAATCAAGAGGGGATGATGCAATCAAGTGCTTGGATAATGACTTAACTGAAAATTTTCCGATTACCCATGGCTAGAATCAGGTGAATGAGATAAACTTTTGCCAACCAAGCTACTTGTCAGCTGCTGTAAATCTGAAATTTCTTCATTTTTAGCTGTCTTCAAAAGAGGAAATTCTAAGAACAAGTTTCTGGATCTCAATGATCACATATACTACCATTTGGTAGTGAAGCAATATGAAAAAGTCGAGGGAAACACAATTTAAATGGAGAGTCAAGGCACCAAACATCAAGCCAAAAGTAAATATTCCTCCCATTTCCTACTTTTAAAACAGCAAAGTGAATCAAACTTACTCCAAACCTTTGAGATGCTAATCCATGGACTTCTCAAGCTCAAACCATACTTTCCTGAGGTGTGCCATTGATGAGGGTTCCTTAAGTGTGCCTTATTTCATTAATCAATGAAAAATTTCTTTTATTAAAAAAAAAAGTAATAACCCCATGGCTCAACATGGTTAGGTTTAAGATGCCAAACACATCCAAACCCAAAACCCCAAAACAACCCCTTAGAGCTATTTGTGGGGAAGAGTGATTAGAATATAATGCTTGATGCTTCATCAGACATATGAAATATGGTCTTAAGTCATCTTTAAAGCAATGAAACTTAATCTTAACCAATGTTTTAAAAGGCTAAAGGCGACCTTGAGGCTTTTCCTCTTCAAGAGGCGAGGCGTAAACTTCAAGGCGGTATGAGGCGTATGCCTCAAATAGTGAATTAAAAACATTTTACAAAACCTAAATTGGTATGACCAGGTACTGCTGAACATGATAGGCATAAAAAAGTGTAAAAAGAAACTTCACCCCACAATTTTCACTTAATAAAAAATTCTAAAAGAACATTATCATCATCACTACTACTACTATTATCATTTTTTTTTGAAATGGAAATAAGACTACTAGTATTATCATTAATAGGATTGATTTATACTATAAATGTTTACCTTCAACGTTCTTAAGGTCACAACAGTAAAAATAGTCCTAGTTCAAATTTTCACAACTCACACATTAATATTTTTGAAGAATTAGGCAATCACTATAATTTTTCTAATCCCTAGGTGAGGCATAGAGATTTTAAGTCTTAGTGCGTTTTCACAAAGGTGCAAGCCTCTTTTGTGAGAGGCGTAAGCCTCTTATGGTTCAACAAAGGCGTAAGTCTCGAGGCTAAAACTTAGAGCCTTGCCTTGAGGCTCACCTCAAGGCGTAAGCCTCGATAGCTTTTCAAAACGATAACTATTGTAGTTTTATCATCTTTTCCTATTGACCAACATTCTTGAAACTCCATCCTACACCTCTTTCCAATATTGAGTATGCATTGAATACATTACTTGGTCTTTTTTATTCTTAAATATTTTCTATATTGGGCACTGCTGGTCTATATTTTGGGTGAGAGTGCCATGTGGAATTAGCTTGCAAATTCTGATTAGAAAAATAACGATGAAGAAATTAGTGGTTTGTTTATCTTGCCTTCTGCTTTTTCCTTGCTTTTAGTCTTTAAGTGCTCATGATTTTATCTTTTTGTATTATTTAGGTCATCCCTATCATACTGAAGGATTGACTTCTCTAGCACTCACTTCTGATTCAACCCTTGCTCTTACTGGTTCAAAAGATGGTTCTGTTCATATTGTGAACATAGCAACTGGAAAGGTTATTTCTACGATTTATTTAGATGACCTTCTTCTGTTTATTTAGAGGTCATGTTATGTGAAGGGGGTTGTTGGGGACGTTCTTCCTTCCCAATGAATATAACCCACCCTTTATCTTTCTTGTCTCAAGTTGACTGCATTTGAATGAACAATTTATGCCACATTTCGAATTTCTGTTTGTTTGAAATACTTTGATTGAGCAACTAGCCTGTATATTACACAACCTTTGAGAAGAATTAAAGTTTAGTCGAGTGCAGCTTGTACATAGTTAATGGTTAGGGTGAAAGACATAAAGTGGAGGGGTTTTATATGTTTTGGCTTATTGGAAATTAGTTTTTATACGAGCAGAAGAGACCAAGTGTCATGATTCTTTAAAGCACAGAAATTGTATCTTCTTGAAAGCATTGCACCGATTTGTAAGAACTTTCTTGGACTTCTAGTTCATCTTCTGTGTGTTCTTTTTCTTTTTCTTTTCCCAATATTGAAGGGCAATGCATATGACTCAGCTAGATCGAGAACTTAGGACAAATCTTGTGCCCTTTACCGGACTTCATTTGGTTATTTGTTGACAATGTCGTACTAGATATCAGATATTTTAGATTTGTCTTATTGTTGCGGAGTCGGGCCAGAATTGTTTGATAAATGCACAGCAGTTGCAACCCTGATGATTAGCCTTGCAACAAAGTTCAGATCCTTACTTTCCAACTTCCAAGCATTGACCATTGTGGGTTGGCCTATTGCAATTGCTTGTAATGCTAAATATTGTAGGGTCAACGACAGTTGTTCTATAGGACTACTTTAGGTCTGGACATTCACAATTATTAGGAAAAGAAAACTTAATACTGTTTTCTACCATGGATGCAAATTTCTGATGTTCGATGTACTTGATGATGCAATGGATAGATTGAAATGAAGACACTTATTATTAGGGATTGAAGGCGCTTTTTGTATAGTTAGTTGCTTGGATCATGTGGTGTGGGCTGTGTTTTTTTATGGCCGTGGACTTTTGTTTTGTATTCTGGTTTCTCATAAAAAAATGAAGACACTTGCTGCTTTTGACAGGTGGTGAATTCTCTGGTTTCCCATTCAGATTCAATTGAATGCATCAGTTTAGCACCAAGGTATTGTGATTTGTTTTTATATCATTTACTACTACAATGTAGAGTTTTCAAAGAAGAAATTATGATTTATGAAAACATATACACTGTAAATGAATAACCAAGACGCCACGGAATTTGACGTGTCACACTAAATTATTAAGAATGTCCAATTTAGTGCAAAATGTTATAGACACTTCCTTTTATATAGCCTAATGAATGTTCTGATTTTTGAAATCTTGAACTGCAGCTCCCCTTGGGCTGCAACTGGAGGAATGGATCAGAAGCTCATCATTTGGGATCTTCGACAATCAACGCCACGCAGTACATGCGAGCACGAGGTCTATTGACTACTGATTTATGTATTCAAGTCCATAACATAGTATCTAGTTTATCACTGATCTTCATAATCCTTCATTAGTGTTGACTGTAAGTAGATTTGACTAGTTGGGTTTGACTTGTTTAAGGATAAACATACCTTCCTTACACTTTGGACAGGATGGAGTAACATGTCTTACTTGGATTGGCATGTCGAGATACCTTGCAACCGGTTGTGTCGATGGTCGAGTACGAATATGGGATAGCCTCTCTGGAGAATGTGTAAGAGCCTTCACCGGGCACTCCGATGCCATCCAATCTCTCGCGGTGTCTGCCAACCATGAGTACCTTGTTTCTGTTGCTCTTGATAATACAGCTCGGATTTTTGAGATTGCAGAGTATCATTGAGCAAGTAGGATCCTCATATTTGAATGTCACAAGTTTTGATTCCTGATTATACAAGTTTATACCATTGTATGAGTTTGTCTATACAAGCAATTGTATGTTTATTCGTCGGTGTGGTTGTGTATTTTTTTTTTCCTTTGGATTTTTAGTCTTTTAAGTTAAAGAACTTAGGATTTCTTAAGCAATGGATAATGTAAAATTTTGAATAAAAATATTTAAAATTATTAAGTATGAGATTTTGTGCCATAAATCTCAACAATCTCTCACTTGCACTACAACTAGTGAGACGAGGGCACTTCACGATG ATGAACATGCCAGGTTCACATGAGGAGGAAGATGATCACGGTGAGGTCTTCCTTGATGAAGCTGACATAATCAATGAAATACCGCTTGATGAGGAAGATCTTCCTGATGCTGTTGATGAAGGCGGCTCTGATGATGAATATTTTGATGAGGCTGATGATTCAGTTCATACTTTTACTGGCCATACTGGTGAGGTTTACACAGTGGTCTGTAATCCAATAGATGCTACATTAGTTGCAACAGGTGGTGGAGATGACAAAGGATTTATGTGGAAGATTGGCCGAGGAGATTTTGCACAGGAGCTTAGTGCTGATTTAAGCAAAACTATTGCAGGTCACAAGGATTCTGTGTCTAGCTTAGCATTTAGTGCAGATGGACAACTACTTGCATCAGGGAGTTTTGATGGACTTATCCAAATTTGGGATACTTCATCCGGGAATCTTAAATGCACACTTGAAGGCCCTGGAGGGGGAATTGAGGTAAAGCGAGGTGTCTATCTTAATATATTTTCTGGTCATGGTGCTAGTGTTACCTGCGGTGATTTTACTCCGGATGGTAAAATGATATGCACGGGTTCCGATGATGCAACGATGAGGATATGGAATCCGAGAAGTGGTGAAAATATTCATGTCGTGAGGGGTCATCCCTATCATACTGAAGGATTGACTTCTCTAGCACTCACTTCTGATTCAACCCTTGCTCTTACTGGTTCAAAAGATGGTTCTGTTCATATTGTGAACATAGCAACTGGAAAGGTGGTGAATTCTCTGGTTTCCCATTCAGATTCAATTGAATGCATCAGTTTAGCACCAAGCTCCCCTTGGGCTGCAACTGGAGGAATGGATCAGAAGCTCATCATTTGGGATCTTCGACAATCAACGCCACGCAGTACATGCGAGCACGAGGATGGAGTAACATGTCTTACTTGGATTGGCATGTCGAGATACCTTGCAACCGGTTGTGTCGATGGTCGAGTACGAATATGGGATAGCCTCTCTGGAGAATGTGTAAGAGCCTTCACCGGGCACTCCGATGCCATCCAATCTCTCGCGGTGTCTGCCAACCATGAGTACCTTGTTTCTGTTGCTCTTGATAATACAGCTCGGATTTTTGAGATTGCAGAGTATCATTGAGCAAGTAGGATCCTCATATTTGAATGTCACAAGTTTTGATTCCTGATTATACAAGTTTATACCATTGTATGAGTTTGTCTATACAAGCAATTGTATGTTTATTCGTCGGTGTGGTTGTGTATTTTTTTTTTCCTTTGGATTTTTAGTCTTTTAAGTTAAAGAACTTAGGATTTCTTAAGCAATGGATAATGTAAAATTTTGAATAAAAATATTTAAAATTATTAAGTATGAGATTTTGTGCCATAAATCTCAACAATCTCTCACTTGCACTACAACTAGTGAGACGAGGGCACTTCACGATG ATGAACATGCCAGGTTCACATGAGGAGGAAGATGATCACGGTGAGGTCTTCCTTGATGAAGCTGACATAATCAATGAAATACCGCTTGATGAGGAAGATCTTCCTGATGCTGTTGATGAAGGCGGCTCTGATGATGAATATTTTGATGAGGCTGATGATTCAGTTCATACTTTTACTGGCCATACTGGTGAGGTTTACACAGTGGTCTGTAATCCAATAGATGCTACATTAGTTGCAACAGGTGGTGGAGATGACAAAGGATTTATGTGGAAGATTGGCCGAGGAGATTTTGCACAGGAGCTTAGTGCTGATTTAAGCAAAACTATTGCAGGTCACAAGGATTCTGTGTCTAGCTTAGCATTTAGTGCAGATGGACAACTACTTGCATCAGGGAGTTTTGATGGACTTATCCAAATTTGGGATACTTCATCCGGGAATCTTAAATGCACACTTGAAGGCCCTGGAGGGGGAATTGAGGTAAAGCGAGGTGTCTATCTTAATATATTTTCTGGTCATGGTGCTAGTGTTACCTGCGGTGATTTTACTCCGGATGGTAAAATGATATGCACGGGTTCCGATGATGCAACGATGAGGATATGGAATCCGAGAAGTGGTGAAAATATTCATGTCGTGAGGGGTCATCCCTATCATACTGAAGGATTGACTTCTCTAGCACTCACTTCTGATTCAACCCTTGCTCTTACTGGTTCAAAAGATGGTTCTGTTCATATTGTGAACATAGCAACTGGAAAGGTGGTGAATTCTCTGGTTTCCCATTCAGATTCAATTGAATGCATCAGTTTAGCACCAAGCTCCCCTTGGGCTGCAACTGGAGGAATGGATCAGAAGCTCATCATTTGGGATCTTCGACAATCAACGCCACGCAGTACATGCGAGCACGAGGATGGAGTAACATGTCTTACTTGGATTGGCATGTCGAGATACCTTGCAACCGGTTGTGTCGATGGTCGAGTACGAATATGGGATAGCCTCTCTGGAGAATGTGTAAGAGCCTTCACCGGGCACTCCGATGCCATCCAATCTCTCGCGGTGTCTGCCAACCATGAGTACCTTGTTTCTGTTGCTCTTGATAATACAGCTCGGATTTTTGAGATTGCAGAGTATCATTGA MNMPGSHEEEDDHGEVFLDEADIINEIPLDEEDLPDAVDEGGSDDEYFDEADDSVHTFTGHTGEVYTVVCNPIDATLVATGGGDDKGFMWKIGRGDFAQELSADLSKTIAGHKDSVSSLAFSADGQLLASGSFDGLIQIWDTSSGNLKCTLEGPGGGIEVKRGVYLNIFSGHGASVTCGDFTPDGKMICTGSDDATMRIWNPRSGENIHVVRGHPYHTEGLTSLALTSDSTLALTGSKDGSVHIVNIATGKVVNSLVSHSDSIECISLAPSSPWAATGGMDQKLIIWDLRQSTPRSTCEHEDGVTCLTWIGMSRYLATGCVDGRVRIWDSLSGECVRAFTGHSDAIQSLAVSANHEYLVSVALDNTARIFEIAEYH Homology
BLAST of Lsi08G002400 vs. ExPASy Swiss-Prot
Match: Q3SZK1 (Angio-associated migratory cell protein OS=Bos taurus OX=9913 GN=AAMP PE=2 SV=1) HSP 1 Score: 184.1 bits (466), Expect = 2.9e-45 Identity = 125/400 (31.25%), Postives = 191/400 (47.75%), Query Frame = 0
BLAST of Lsi08G002400 vs. ExPASy Swiss-Prot
Match: Q7YR70 (Angio-associated migratory cell protein OS=Canis lupus familiaris OX=9615 GN=AAMP PE=3 SV=1) HSP 1 Score: 183.0 bits (463), Expect = 6.4e-45 Identity = 128/416 (30.77%), Postives = 192/416 (46.15%), Query Frame = 0
BLAST of Lsi08G002400 vs. ExPASy Swiss-Prot
Match: Q13685 (Angio-associated migratory cell protein OS=Homo sapiens OX=9606 GN=AAMP PE=1 SV=2) HSP 1 Score: 183.0 bits (463), Expect = 6.4e-45 Identity = 125/395 (31.65%), Postives = 187/395 (47.34%), Query Frame = 0
BLAST of Lsi08G002400 vs. ExPASy Swiss-Prot
Match: Q5RCG7 (Angio-associated migratory cell protein OS=Pongo abelii OX=9601 GN=AAMP PE=2 SV=2) HSP 1 Score: 183.0 bits (463), Expect = 6.4e-45 Identity = 125/395 (31.65%), Postives = 187/395 (47.34%), Query Frame = 0
BLAST of Lsi08G002400 vs. ExPASy Swiss-Prot
Match: Q00808 (Vegetative incompatibility protein HET-E-1 OS=Podospora anserina OX=2587412 GN=HET-E1 PE=4 SV=1) HSP 1 Score: 164.1 bits (414), Expect = 3.1e-39 Identity = 104/342 (30.41%), Postives = 160/342 (46.78%), Query Frame = 0
BLAST of Lsi08G002400 vs. ExPASy TrEMBL
Match: A0A1S3CIC4 (angio-associated migratory cell protein isoform X1 OS=Cucumis melo OX=3656 GN=LOC103501304 PE=4 SV=1) HSP 1 Score: 696.0 bits (1795), Expect = 8.4e-197 Identity = 348/400 (87.00%), Postives = 359/400 (89.75%), Query Frame = 0
BLAST of Lsi08G002400 vs. ExPASy TrEMBL
Match: A0A0A0KBX7 (WD_REPEATS_REGION domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_6G016980 PE=4 SV=1) HSP 1 Score: 693.7 bits (1789), Expect = 4.2e-196 Identity = 345/400 (86.25%), Postives = 359/400 (89.75%), Query Frame = 0
BLAST of Lsi08G002400 vs. ExPASy TrEMBL
Match: A0A6J1DN15 (angio-associated migratory cell protein-like isoform X1 OS=Momordica charantia OX=3673 GN=LOC111022602 PE=4 SV=1) HSP 1 Score: 671.4 bits (1731), Expect = 2.2e-189 Identity = 333/400 (83.25%), Postives = 348/400 (87.00%), Query Frame = 0
BLAST of Lsi08G002400 vs. ExPASy TrEMBL
Match: A0A6J1EQW6 (angio-associated migratory cell protein OS=Cucurbita moschata OX=3662 GN=LOC111436976 PE=4 SV=1) HSP 1 Score: 666.0 bits (1717), Expect = 9.3e-188 Identity = 329/400 (82.25%), Postives = 349/400 (87.25%), Query Frame = 0
BLAST of Lsi08G002400 vs. ExPASy TrEMBL
Match: A0A6J1DZJ4 (angio-associated migratory cell protein-like isoform X2 OS=Momordica charantia OX=3673 GN=LOC111024531 PE=4 SV=1) HSP 1 Score: 661.8 bits (1706), Expect = 1.7e-186 Identity = 328/400 (82.00%), Postives = 346/400 (86.50%), Query Frame = 0
BLAST of Lsi08G002400 vs. NCBI nr
Match: XP_008463066.1 (PREDICTED: angio-associated migratory cell protein isoform X1 [Cucumis melo]) HSP 1 Score: 696.0 bits (1795), Expect = 1.7e-196 Identity = 348/400 (87.00%), Postives = 359/400 (89.75%), Query Frame = 0
BLAST of Lsi08G002400 vs. NCBI nr
Match: XP_038884723.1 (angio-associated migratory cell protein [Benincasa hispida]) HSP 1 Score: 695.3 bits (1793), Expect = 2.9e-196 Identity = 347/400 (86.75%), Postives = 358/400 (89.50%), Query Frame = 0
BLAST of Lsi08G002400 vs. NCBI nr
Match: XP_004138371.1 (angio-associated migratory cell protein [Cucumis sativus] >KAE8646588.1 hypothetical protein Csa_005442 [Cucumis sativus]) HSP 1 Score: 693.7 bits (1789), Expect = 8.6e-196 Identity = 345/400 (86.25%), Postives = 359/400 (89.75%), Query Frame = 0
BLAST of Lsi08G002400 vs. NCBI nr
Match: XP_023535004.1 (angio-associated migratory cell protein-like [Cucurbita pepo subsp. pepo] >XP_023535005.1 angio-associated migratory cell protein-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 680.6 bits (1755), Expect = 7.5e-192 Identity = 341/400 (85.25%), Postives = 352/400 (88.00%), Query Frame = 0
BLAST of Lsi08G002400 vs. NCBI nr
Match: XP_022155468.1 (angio-associated migratory cell protein-like isoform X1 [Momordica charantia]) HSP 1 Score: 671.4 bits (1731), Expect = 4.6e-189 Identity = 333/400 (83.25%), Postives = 348/400 (87.00%), Query Frame = 0
BLAST of Lsi08G002400 vs. TAIR 10
Match: AT1G71840.1 (transducin family protein / WD-40 repeat family protein ) HSP 1 Score: 497.7 bits (1280), Expect = 8.4e-141 Identity = 243/395 (61.52%), Postives = 300/395 (75.95%), Query Frame = 0
BLAST of Lsi08G002400 vs. TAIR 10
Match: AT2G43770.1 (Transducin/WD40 repeat-like superfamily protein ) HSP 1 Score: 113.2 bits (282), Expect = 4.5e-25 Identity = 83/357 (23.25%), Postives = 152/357 (42.58%), Query Frame = 0
BLAST of Lsi08G002400 vs. TAIR 10
Match: AT5G67320.1 (WD-40 repeat family protein ) HSP 1 Score: 107.8 bits (268), Expect = 1.9e-23 Identity = 103/393 (26.21%), Postives = 170/393 (43.26%), Query Frame = 0
BLAST of Lsi08G002400 vs. TAIR 10
Match: AT5G08390.1 (Transducin/WD40 repeat-like superfamily protein ) HSP 1 Score: 102.4 bits (254), Expect = 7.9e-22 Identity = 70/253 (27.67%), Postives = 112/253 (44.27%), Query Frame = 0
BLAST of Lsi08G002400 vs. TAIR 10
Match: AT3G49660.1 (Transducin/WD40 repeat-like superfamily protein ) HSP 1 Score: 101.3 bits (251), Expect = 1.8e-21 Identity = 61/238 (25.63%), Postives = 112/238 (47.06%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bottle gourd (USVL1VR-Ls) v1
Date Performed: 2021-10-18
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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