Spg012820 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCTACTTCCACCTCCGCCTTGACATCGACGCCGTTCTTGAGCAGCAAGGTCCGTACTCACTGCCATTCAAGTCTTCTTCTATTCAAAAGATCTGCAAAATTGGCTTGTTTCTGTTCTATCATCATTTCTGTTGTTAGAGATTATATCTACTACTGTTTCTACACCTGGCTCAATCCCGTATCTAATCCGTCTATTGTTTTGTTTGCGTTTTCAGAAGGATTCGGACCTCGCCGCTCTCTCTTCGTCGTTGCCGTTTTCGTTTCGGAGATGCGAGAGAAACGTATCGAAGAAAATATGTTCGGTCGTGGCACCACAGCAATCGGAACGCAAGCCCAGCGCCACTGGCTCGGTTGGGTTTCTTCTGTGTTCTCACTGGCCTTCATTTTGTAATTGGGATTAAAGATTACGTGATTTTCAATTGTGCGTTATCTGTTGTTTTCAGGTTAAAACGGCCATGACTATGACGGAAAAGATATTTGCTAAAGCTTCTCAAAAAACTCAGTTGAGCCCAGGTGAAAATGTTTGGGTCAATGTGGACGTTTTAATGACTCACGATGTTTGCGGTCCTGGTTCTATCGGAATTTTTAAAAAGGAGTTCGGAGAGAACGCAAAGGTATCTTACCTTTTACATTTTTATGTTGGAAGTCTACATTTATTAGTAATTTACTCCGAGTCAAGTTTATTGATAGATATAGCTATGAAGTTATGCTATTAAAAAAGGTAAACAATAACGAAGTTATACACTGACTCGTTCAAAGAAATTTTCTGACGACGTTGGACTTTTTAGCACAAATCTTGGCCGTGCTTCAGAAATCTACAATTATGTCCAGTTAAAATTATGCCAGAGGATCGGAAGATAGAATGAAAAGAAACTGAATTAATTTAAGTTTCAGGTGTAAATTAATGGGAACAAGGCTACTCTATGCTCTATAGATAACCAATCCATTAATGGTTGAAACAATTGATGTGTTTTTATAATCCGAGTTAAATCATTTTAGCAGGATGGATGTTGTTGTTGCATTCATCTTAATAAGCCCCTAATACTTGTAATGTAATGTCCTTGTTCGAGCTTTTATTTCCATGTGCTCCTTGAATGTCATTGTAACTTAACTATTTTCCCATTGAAGGTTTGGGATCGAGAAAAGGTTGTGATTATACCTGACCATTACATATTCACCAGTGATGAACGTGCTAACCGTAATGTGGACATTCTGAGAGATTTCTCAAAAGAACAGAATATCAAGTACTTTTATGATATTAAGGATCTCAGTGATTTCAGGGTATGAGAATCTAACCTTACTTTTTTTCTGTAGCTGTTATTTTGTGCATCAAATAATCGAACTCAATTAATTTTACCAGGTGAACCCAGATTACAAAGGTGTCTGTCATGTTGCGTTAGCTCAAGAAGGTCACTGTAGGCCTGGGGAGGTTATATTCCTTTGAGATACTTATCTTTTTTCCTATGATTAGTTGCTTTCATATTAAGTAGCATTTTTGGAATGCTTCATGTTTTCAGGTCCTGCTTGGTACAGACTCTCATACCTGTACAGCTGGTGCATTTGGTCAATTTGCTAGTGGAATTGGTAATACAGATGCAGGATTTGTTCTGGGCACCGGGAAATCACTGCTCAAGGTCTGCCAAATTTTTAATTCTATCACTGTGCTTCTAGCATGGATGTTATTTGACCCTTTTCATGTGCGCGAAGTGTGCTTGCTAAGTTATACTAGTGCTTATTTGAGTAGATTTACAAAATGTAGTCTGGTTGTTTTGGGAATTCAAATTTGTTGAGAGCCATTCAAATTTGCTAAGTTATACTAGTGCTTATTTGAGTAGATTTTCAAATTTACAAAACATGTTTTTTTTATTTGAGAACGAGACATTGTTCAAGAGGGACTAAATAATATCCTTGACTTGATCTTGCTGTCCTACTTATCCATCAAAGAGCATAATACACATTCAATGGTACATTTGCTGCTTGGCTTGAAAGTGTCAAGTAACCAATGATAGTACACTTTTTGGAGTGAAACTATTATAGCTGTAAAATCTTTTTGACCAGTGTGTTTTTCACATCCTGTGTTCCTTCACATATCATTCCCACATACTTGTATCCTATCACTTGAAGGCTTGAAATTTGTATTTTAAGGATTATAATATGTCCCGACAATACATAATATTTGTTTGTCTGTTTTCTATATTTAAATTGCAGGTTCCCCCAACTTTGAGATTTGTCATGGATGGAGAAATGCCTGATTATTTACTTGCAAAGGACTTGATTTTGCAAGTAAGTCAAACCATCATTGATAATAGGATATTTATGTTTGTTTAAATTAAATGATTATATGCCTAATTAATAAGATATTCGTGTTTGTTTAAATGTTCATGTTCCTATATGTACAGTCATAACTTATCATCTTGACATGAACATATTTAAACACACCTGCACTTACACAGTCTCTTGAAAAACCCTCATTTCTTTGATTTTTCATTTTTCTTGTTATTCATAATGTTACATAAACTATTGTAATTCTCTTTGGATTGGAGCCCTTTTATGTCTTCTTTGATCTATTGTTATTACTTATTAGGCTCATTCTTTGGGCTGTTAATCTTGTTGGTCCTTATACAAAGTCAACAGATCTCACTGAATAAAAACCCTCATTTTTTGGTCACATTTCAAGTGTGGTTGGTACTTAAAAAAAATTGAGAACGATGCTATGAATCACTCTTCATGAGAGAATCAATGATACTTGAGGATAAATATGTAATAATAGGGCAAAACAGACATTTATCCTAACTAGAACTATGAACTATTGTGAAGGGTTAACTTATGTGTGGTGATCTTATCTACAAACGTCAATCTTAATTCTTAGCTCCACCGCATGAGAGAGTAGGTAAACTGAATGTGTTATGCTATTATATTGCCTTTTGGAATGCCGTTGTTTTATTGAGTGAGGACAAAAAAGTTTTATCAATCATATCCATAGTGTGAAAATAATTTAATATTAGATTGAAAATGAGATGATGATACTTCAAACTAATTTTAATATCTTTCATGACGTAATGGAGATTGAATTATTTAGCAATTTATGTAAATACTTCCTCTGATTTATGTAGCATCACATTCTGGAAAATAATTTTTTCCTCTCCAATTCCAGTGTTTGCAATAGCTATACATTTTTAAGTATTTGAATTGTCAGTTCTGTAGTCTTTTGTTTATGTTGTATGCTGTCTTGTTCTTGTAGCTTTCTTTCTTTTCTTGTTGCGTTGTTAACTAAACCTACTATTTGCACTTCACAGATTATTGGTGAAATCTCAGTATCTGGTGCAACATATAAAGCCATGGAATTTCTCGGAACAACTGTTGAAAGTTTAACTGTGAGACTTCTACATAGATCTTGGATGTTACATGACAATAATTTTACGTATATGTACATATTTTATATAAGCATTTGTTATCAGATGTTATAAAAGGTAATTTGATTGCTTGAATCCTTTCTACTGGTAGATGGAAGAAAGAATGACATTGTGCAACATGGTTGTTGAAGCCGGAGGAAAGAATGGAGTTATTCCTCCTGATAGCACTACGTTCAAGTACCTTGAGGTTAGTCTACAGGGGGCATTCAAATTTATTGAAATAATTTTAAGTCTATTTAGCATGTTTGCAATATTCAAGTGGTGAGTACGAAAAGGGCATTGAAGTTAATAGAACAGTTCTATTTCTCTTTTTAGCATGTCTGCTTGCAAGAAACAGTATAGTGATACATTGAAGCCTCAATGAGGCCAAGATTACTCAGATGTTTTTGATTGCAGCAAGTGCATACGGCATGGTTGCATGTATTTTTCATTTAGTTATCCAGATCGATGATGGATATATAGTCAGGCATGCATGCCATTTACGTTGACATTGAAGCAATTTTAAGTCTCTATGTTATTTAAACAATTCAGTCTCTCTCTCTTTAGCATATTTACCTGTCTGCTTGGAAGGAAGGAACAAAGTTAAAATGATACATTAAAGTCTCACCTTGGGATGTTTTATCAGATGTTTTAATAAATTCATTTTTAAACATTGATTATCTATTACGTGTTTTGGACAGGATAAGACATCCAAAGCTTACGAACCAGTTTACAGTGATGAGAATGCAAGGTATTTCATTTTGCTATTGTGTGAATTCCAAATTTCCTATATTTGCAAGGATGTCCTTTTAACGCATACGTTGACATTGTACACATGTATATGCTTTGCACTTACGTGCATATGTTAGTGCATGTATTTATATTGATCAGATGGAACTAATATAGCTCATGATAAACAGAATGATAATAAAATATGTTTGGTAATAAATAACCACCATAAATTGACCCTATGATTAAAACGGACAAGCTGTAATCTAAATGCTAGTCATGAGTTTATCGTGACAGCCACCAGTCAGCTATTTAGGTGTTGTATGCCGTATGAGTCTCTCAGTAGGTTTTTGGGTGTCAGTAATTCTTCTAGATGAGGAACTCAATCTTGTAGAATCTTTGAAGGGGGCTTTTTCTCCCATGGTGTAAGTGAAAGGGAAGGCAGTAAACACCTTGTAAATGAAGTAATTTTATTCTGCTTCATTATATTAGTCGTGCACGATACACGTATTTATAATATAAATTATAAAGGGCCCGAATGTTATGCCCAACACCCAATGTCATCAGTATATCAGAAAAGCCAAACCCATAACAGAATAATATCCAAGGGTAGTTATGAAAGACGAAGAAGAATGTTGAATTTCTAATATTTATTAGCCTCCACTTATTGACTTACTGTCATGGGAGACGGTGCTTGGCAGGTGGCTTAATGTTAAAATTGGTCCTTCGGAAATTGCAATTAAGGTAGAACTAAAAGTATGAAGAATTTTTGTATTATTGTAGAAGTAGTGGAGTGAAATTTCTTTATCCAATGGGAAGTTTGCATGGTCAATTTATTTTGGGTCCATGCTCTTCATTTTGAGAACACTTGGCTTCAAGACTTGGAACTTCAGAAACTGGTTCAATGTTGGTAGGAGGATGAGTTTTCTTTACGATAGTTGGATATCAAAAAGATGAAAGTGCTAAAAGAACTTGAAAGAAAGATTAAGGCTTGGGGTAGAAACATTCGAGGAAGAATAGCCAAAGAAAGGAAGGACATTGAGAAAGGGAGAAATCTTTCAATAGAAAAAAAAGGTAAGGGGTCTAACCTTGAACGGAGGTTTTCTGAGCAAGGAGGAGATTAGACTTTTGCAAAAGAGTAAACTTGTTTCAAGGAAGGGGATGGATGTTCGGTGCTCTTCCAGAGATTTCTGGAATTTAGATGGCGATCAGTCGGAGGCTGGAGTCAGTGTTGTAGAACACAGAGGCTTCAGAGAGGAAATCTTAAAGTTCTTCAGTAATCTATATGCCAGAAAAAATCATGGCAGTTTTATTCTGGAAGCCGGAAGGTATAAATTGGGCAGCCCTTACAATTCGGAAAAAAGAGATTGCTTCAGCTATCAATTCTTTAGGGGGTTCAATCCCCCTGAGTTGGATGGATACACTTCTGAAATCCTTATATAAACATTGAGTTTTGCTGTTTGTCCACTCTTGAGTCTTTGCTTCTAAAGAAACTCAAAAGTCAAAATAATAAACTTTTCTGTGTTAAAGAAAAAAAAAAAAGAGGATAAAAAGTATGGATCGTGCCTTCAGTAACTGTAAGTTATTGCAGAAAATGTTTGCTTTTGTTTGGTTGGTATATTCTCACATTACCATTCAAATCAATAAAAAGTCTCTTGTTTCTTAAAACATGATATAGGATGGAATTCAATTATATACCGAAAACTACTTAGTGATTTTTGCTTTGTTGTTTTTCCCTATTAAGTGATTTTTGCTATTTTTGTAACTATAAATAAATAATTGTAATAGAAAAATACCTCCATACCATATATATTGTCATTTTTGGAATCAGTTCTTAATTTCTCTCATTTTCTGTTCACCTGTTCAATCAATATTTGTTTGCTTTTGAGGTTCATTGTTATTGATTAGTATATTATGTTGTATTCAGATTTCTTTCGGAGTACAGATTTGATGTATCAAAACTGGATCCTGTGGTAGCTAAGGTTGGCGATCTAGATTGTCCTAATTTATATAGTTTCTGTCATTGTTTACTTGTTTTCTTTTCCTAAAATTCTCTCTCTCTCTCTCTCTCTCTCTCTGAAAAACTGCAGCCCCATTCTCCAGATAACCGTGCTTTAGCAAGGGAATGTAAAGATGTAAAAATTGATAGAGTATATGTTGGATCCTGTACTGGAGGAAAGACAGAGGATTTTCTGGCCTTGGCTAAAGTTTTTCATGCTGCAGTAATTATTCTCAACTCTTTTACTTGTGAATTTGATTATATATATACCCATGCTTATCATTTCCCTCAATTGATGTCGTAATATATTTTCTTCTTAAAAACATTTTATATTTGTGTTTTATTCTTTCAAGTGGTGACTAGTTTTTTTAAAAATGTGACGTCTATTCCGTTGATGTGATTGTTGTAAGCTTAAATGGCAACTGGTATTTTTCTTACATTGCTATTTGCTTATTATGCTATGTCTTACCGTACTATTGGTATATTGGTGGAAAACTTAGGGATGTTTCCGAGGTTTCCCATGATCCTTATCCTCGCTATGCTTTTCTTAATTTTTACTCATATTTTAGCATCTGGATATTTTTTGGGAGGCTTATAATAGAATGTAAATCTTATTTGCAGGGAAAGAAGGTTAAAGTTCCTACATTTATTGTCCCTGCCACCCAAAAGGTTTAGAACTGTGTACAATTCTGTGTTGAAGTGCAATTTTGTTCATCATTAGAAATTGCAGTCAGGATTTTTTGTTTGGCGGTTTATTTATGTATATATATTTTGTAAAAATGAATAGGTCTGGATGGACTTATATAGTATCCCAGTACCTGGAGCTGGTGGTAAAACTTGCTCTCAGATATTTGAGGAAGCTGGCTGTGATACACCAGCAAGTCCTGGTTGTGCTGCTTGTTTAGGTGGCCCTAGGGATACTTATGCACGGATGAATGAACCACAGGTAAGTCATAATTTTCCTGTTGTTCAGTTTTAGAATAGAATTAGAAAAAGGAAAACATGAACTTGTTATGCACTTGGTAGATCTCTGTTAGTGAACTCCAGCCACTGGTCCCCGGCCGTAATTTTTTCACGAGGGAGTAATTGGAGATGAAGTAAATATCCAGCCTTTTTATCTCAATAGATAATTAATTACTCTATACACAAACGTTCTAGCCCAACTGATCTACAATACTTGCATTTTGAACTTCTAAAAATTATGGTTTCAAGCTTGTAATCGAACTACGATCGAGTGTCTGACTTGTTTCTTCTCAGTGAAGTCATCAAGAGAATTATGCATCTGAGAATTTTATATGACCCTTACAGTCCGACTTTTATTATCCTCTCCTTTTGTTTTAAGCTATCATTAACATGCTCGTTTATGGTCAGCTGGCTATCTTATAGAATATTTTGGTCAAGAGGAATTAGAGTGTTTTACAGATGTAGACTCTTGTGAAGAGGTTTAGTGATCATGTAGTTCCATGCTTCCATGTGGGCTTTTGTGCCCAAATATTTAGCAATATTTCTCCAGAGCCTCCTTGAATTATCAACTTAAGCATAACTCAACGGTTACAGAATTAGAAACCTTTCCTATCAGTCGAAAGTTCAAATCACCTCAGAGTTCTATAATGTTCAGTCTAAAAAGTGAATGTGGCATATGATTTCCATCTACCAAAAGATCTTAGTTTTAGTTGGATTATCTTATGTTATGAATGTGAAATGACTTGGGTGGAGAGCTGGTGTTTGCAGGTCTGTGTTTCAACGACGAACAGGAACTTCCCTGGTAGAATGGGACACAAGGAGGGACAGATCTACCTTGCTTCTCCATATACGGCCGCAGCCTCTGCTTTGACTGGATATGTGACTGACCCAAGAGAGTTCTTGCAGTAAATCCACAGCTTTGACTGGATATTGTATGTTTTATGTATTATTTAAATTGGAATAAGGTTTCGTCATGTCATGTTTGTATCTGCTTAGAGCTTGGTTAGCAGTGGATGATCTCGTTTCAAGTTTAATGAGATTTTGGTCTAAGATAAGTGCTTTGGTCTATTTGGATTCGAAAGAAGGGGCGATGGATTTACTTTGAAATGATTAAATGAATGTTTAATATAATTATCAACACGCA ATGGCTACTTCCACCTCCGCCTTGACATCGACGCCGTTCTTGAGCAGCAAGGTCCGTACTCACTGCCATTCAAGTCTTCTTCTATTCAAAAGATCTGCAAAATTGGCTTGTTTCTGTTCTATCATCATTTCTGTTGTTAGAGATTATATCTACTACTGTTTCTACACCTGGCTCAATCCCGTATCTAATCCGTCTATTGTTTTGTTTGCGTTTTCAGAAGGATTCGGACCTCGCCGCTCTCTCTTCGTCGTTGCCGTTTTCGTTTCGGAGATGCGAGAGAAACGTATCGAAGAAAATATGTTCGGTCGTGGCACCACAGCAATCGGAACGCAAGCCCAGCGCCACTGGCTCGGTTGGGTTAAAACGGCCATGACTATGACGGAAAAGATATTTGCTAAAGCTTCTCAAAAAACTCAGTTGAGCCCAGGTGAAAATGTTTGGGTCAATGTGGACGTTTTAATGACTCACGATGTTTGCGGTCCTGGTTCTATCGGAATTTTTAAAAAGGAGTTCGGAGAGAACGCAAAGGTTTGGGATCGAGAAAAGGTTGTGATTATACCTGACCATTACATATTCACCAGTGATGAACGTGCTAACCGTAATGTGGACATTCTGAGAGATTTCTCAAAAGAACAGAATATCAAGTACTTTTATGATATTAAGGATCTCAGTGATTTCAGGGTGAACCCAGATTACAAAGGTGTCTGTCATGTTGCGTTAGCTCAAGAAGGTCACTGTAGGCCTGGGGAGGTCCTGCTTGGTACAGACTCTCATACCTGTACAGCTGGTGCATTTGGTCAATTTGCTAGTGGAATTGGTAATACAGATGCAGGATTTGTTCTGGGCACCGGGAAATCACTGCTCAAGGTTCCCCCAACTTTGAGATTTGTCATGGATGGAGAAATGCCTGATTATTTACTTGCAAAGGACTTGATTTTGCAAATTATTGGTGAAATCTCAGTATCTGGTGCAACATATAAAGCCATGGAATTTCTCGGAACAACTGTTGAAAGTTTAACTATGGAAGAAAGAATGACATTGTGCAACATGGTTGTTGAAGCCGGAGGAAAGAATGGAGTTATTCCTCCTGATAGCACTACGTTCAAGTACCTTGAGGATAAGACATCCAAAGCTTACGAACCAGTTTACAGTGATGAGAATGCAAGGTGGCTTAATGTTAAAATTGGTCCTTCGGAAATTGCAATTAAGGAGGAGATTAGACTTTTGCAAAAGAGTAAACTTGTTTCAAGGAAGGGGATGGATGTTCGGTGCTCTTCCAGAGATTTCTGGAATTTAGATGGCGATCAGTCGGAGGCTGGAGTCAGTGTTGTAGAACACAGAGGCTTCAGAGAGGAAATCTTAAAGTTCTTCAGTAATCTATATGCCAGAAAAAATCATGGCAGTTTTATTCTGGAAGCCGGAAGATTTCTTTCGGAGTACAGATTTGATGTATCAAAACTGGATCCTGTGGTAGCTAAGCCCCATTCTCCAGATAACCGTGCTTTAGCAAGGGAATGTAAAGATGTAAAAATTGATAGAGTATATGTTGGATCCTGTACTGGAGGAAAGACAGAGGATTTTCTGGCCTTGGCTAAAGTTTTTCATGCTGCAGGAAAGAAGGTTAAAGTTCCTACATTTATTGTCCCTGCCACCCAAAAGGTCTGGATGGACTTATATAGTATCCCAGTACCTGGAGCTGGTGGTAAAACTTGCTCTCAGATATTTGAGGAAGCTGGCTGTGATACACCAGCAAGTCCTGGTTGTGCTGCTTGTTTAGGTGGCCCTAGGGATACTTATGCACGGATGAATGAACCACAGGTCTGTGTTTCAACGACGAACAGGAACTTCCCTGGTAGAATGGGACACAAGGAGGGACAGATCTACCTTGCTTCTCCATATACGGCCGCAGCCTCTGCTTTGACTGGATATGTGACTGACCCAAGAGAGTTCTTGCAGTAA ATGGCTACTTCCACCTCCGCCTTGACATCGACGCCGTTCTTGAGCAGCAAGGTCCGTACTCACTGCCATTCAAGTCTTCTTCTATTCAAAAGATCTGCAAAATTGGCTTGTTTCTGTTCTATCATCATTTCTGTTGTTAGAGATTATATCTACTACTGTTTCTACACCTGGCTCAATCCCGTATCTAATCCGTCTATTGTTTTGTTTGCGTTTTCAGAAGGATTCGGACCTCGCCGCTCTCTCTTCGTCGTTGCCGTTTTCGTTTCGGAGATGCGAGAGAAACGTATCGAAGAAAATATGTTCGGTCGTGGCACCACAGCAATCGGAACGCAAGCCCAGCGCCACTGGCTCGGTTGGGTTAAAACGGCCATGACTATGACGGAAAAGATATTTGCTAAAGCTTCTCAAAAAACTCAGTTGAGCCCAGGTGAAAATGTTTGGGTCAATGTGGACGTTTTAATGACTCACGATGTTTGCGGTCCTGGTTCTATCGGAATTTTTAAAAAGGAGTTCGGAGAGAACGCAAAGGTTTGGGATCGAGAAAAGGTTGTGATTATACCTGACCATTACATATTCACCAGTGATGAACGTGCTAACCGTAATGTGGACATTCTGAGAGATTTCTCAAAAGAACAGAATATCAAGTACTTTTATGATATTAAGGATCTCAGTGATTTCAGGGTGAACCCAGATTACAAAGGTGTCTGTCATGTTGCGTTAGCTCAAGAAGGTCACTGTAGGCCTGGGGAGGTCCTGCTTGGTACAGACTCTCATACCTGTACAGCTGGTGCATTTGGTCAATTTGCTAGTGGAATTGGTAATACAGATGCAGGATTTGTTCTGGGCACCGGGAAATCACTGCTCAAGGTTCCCCCAACTTTGAGATTTGTCATGGATGGAGAAATGCCTGATTATTTACTTGCAAAGGACTTGATTTTGCAAATTATTGGTGAAATCTCAGTATCTGGTGCAACATATAAAGCCATGGAATTTCTCGGAACAACTGTTGAAAGTTTAACTATGGAAGAAAGAATGACATTGTGCAACATGGTTGTTGAAGCCGGAGGAAAGAATGGAGTTATTCCTCCTGATAGCACTACGTTCAAGTACCTTGAGGATAAGACATCCAAAGCTTACGAACCAGTTTACAGTGATGAGAATGCAAGGTGGCTTAATGTTAAAATTGGTCCTTCGGAAATTGCAATTAAGGAGGAGATTAGACTTTTGCAAAAGAGTAAACTTGTTTCAAGGAAGGGGATGGATGTTCGGTGCTCTTCCAGAGATTTCTGGAATTTAGATGGCGATCAGTCGGAGGCTGGAGTCAGTGTTGTAGAACACAGAGGCTTCAGAGAGGAAATCTTAAAGTTCTTCAGTAATCTATATGCCAGAAAAAATCATGGCAGTTTTATTCTGGAAGCCGGAAGATTTCTTTCGGAGTACAGATTTGATGTATCAAAACTGGATCCTGTGGTAGCTAAGCCCCATTCTCCAGATAACCGTGCTTTAGCAAGGGAATGTAAAGATGTAAAAATTGATAGAGTATATGTTGGATCCTGTACTGGAGGAAAGACAGAGGATTTTCTGGCCTTGGCTAAAGTTTTTCATGCTGCAGGAAAGAAGGTTAAAGTTCCTACATTTATTGTCCCTGCCACCCAAAAGGTCTGGATGGACTTATATAGTATCCCAGTACCTGGAGCTGGTGGTAAAACTTGCTCTCAGATATTTGAGGAAGCTGGCTGTGATACACCAGCAAGTCCTGGTTGTGCTGCTTGTTTAGGTGGCCCTAGGGATACTTATGCACGGATGAATGAACCACAGGTCTGTGTTTCAACGACGAACAGGAACTTCCCTGGTAGAATGGGACACAAGGAGGGACAGATCTACCTTGCTTCTCCATATACGGCCGCAGCCTCTGCTTTGACTGGATATGTGACTGACCCAAGAGAGTTCTTGCAGTAA MATSTSALTSTPFLSSKVRTHCHSSLLLFKRSAKLACFCSIIISVVRDYIYYCFYTWLNPVSNPSIVLFAFSEGFGPRRSLFVVAVFVSEMREKRIEENMFGRGTTAIGTQAQRHWLGWVKTAMTMTEKIFAKASQKTQLSPGENVWVNVDVLMTHDVCGPGSIGIFKKEFGENAKVWDREKVVIIPDHYIFTSDERANRNVDILRDFSKEQNIKYFYDIKDLSDFRVNPDYKGVCHVALAQEGHCRPGEVLLGTDSHTCTAGAFGQFASGIGNTDAGFVLGTGKSLLKVPPTLRFVMDGEMPDYLLAKDLILQIIGEISVSGATYKAMEFLGTTVESLTMEERMTLCNMVVEAGGKNGVIPPDSTTFKYLEDKTSKAYEPVYSDENARWLNVKIGPSEIAIKEEIRLLQKSKLVSRKGMDVRCSSRDFWNLDGDQSEAGVSVVEHRGFREEILKFFSNLYARKNHGSFILEAGRFLSEYRFDVSKLDPVVAKPHSPDNRALARECKDVKIDRVYVGSCTGGKTEDFLALAKVFHAAGKKVKVPTFIVPATQKVWMDLYSIPVPGAGGKTCSQIFEEAGCDTPASPGCAACLGGPRDTYARMNEPQVCVSTTNRNFPGRMGHKEGQIYLASPYTAAASALTGYVTDPREFLQ Homology
BLAST of Spg012820 vs. NCBI nr
Match: XP_022963044.1 (3-isopropylmalate dehydratase large subunit, chloroplastic [Cucurbita moschata] >XP_023517927.1 3-isopropylmalate dehydratase large subunit, chloroplastic [Cucurbita pepo subsp. pepo] >KAG7027191.1 3-isopropylmalate dehydratase large subunit, chloroplastic, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 869.8 bits (2246), Expect = 1.5e-248 Identity = 443/535 (82.80%), Postives = 446/535 (83.36%), Query Frame = 0
BLAST of Spg012820 vs. NCBI nr
Match: XP_022972644.1 (3-isopropylmalate dehydratase large subunit, chloroplastic [Cucurbita maxima]) HSP 1 Score: 869.4 bits (2245), Expect = 2.0e-248 Identity = 442/535 (82.62%), Postives = 446/535 (83.36%), Query Frame = 0
BLAST of Spg012820 vs. NCBI nr
Match: XP_038887540.1 (3-isopropylmalate dehydratase large subunit, chloroplastic [Benincasa hispida]) HSP 1 Score: 865.9 bits (2236), Expect = 2.2e-247 Identity = 439/535 (82.06%), Postives = 445/535 (83.18%), Query Frame = 0
BLAST of Spg012820 vs. NCBI nr
Match: XP_008465910.1 (PREDICTED: 3-isopropylmalate dehydratase large subunit [Cucumis melo] >KAA0038519.1 3-isopropylmalate dehydratase large subunit [Cucumis melo var. makuwa] >TYK31113.1 3-isopropylmalate dehydratase large subunit [Cucumis melo var. makuwa]) HSP 1 Score: 865.5 bits (2235), Expect = 2.9e-247 Identity = 439/535 (82.06%), Postives = 445/535 (83.18%), Query Frame = 0
BLAST of Spg012820 vs. NCBI nr
Match: XP_022132847.1 (3-isopropylmalate dehydratase large subunit, chloroplastic [Momordica charantia]) HSP 1 Score: 865.1 bits (2234), Expect = 3.7e-247 Identity = 437/535 (81.68%), Postives = 445/535 (83.18%), Query Frame = 0
BLAST of Spg012820 vs. ExPASy Swiss-Prot
Match: Q94AR8 (3-isopropylmalate dehydratase large subunit, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=IIL1 PE=1 SV=1) HSP 1 Score: 770.8 bits (1989), Expect = 1.3e-221 Identity = 376/535 (70.28%), Postives = 419/535 (78.32%), Query Frame = 0
BLAST of Spg012820 vs. ExPASy Swiss-Prot
Match: P81291 (Isopropylmalate/citramalate isomerase large subunit OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) OX=243232 GN=leuC PE=1 SV=1) HSP 1 Score: 322.0 bits (824), Expect = 1.5e-86 Identity = 194/527 (36.81%), Postives = 268/527 (50.85%), Query Frame = 0
BLAST of Spg012820 vs. ExPASy Swiss-Prot
Match: Q8TVF2 (3-isopropylmalate dehydratase large subunit 1 OS=Methanopyrus kandleri (strain AV19 / DSM 6324 / JCM 9639 / NBRC 100938) OX=190192 GN=leuC1 PE=3 SV=1) HSP 1 Score: 315.8 bits (808), Expect = 1.1e-84 Identity = 185/527 (35.10%), Postives = 263/527 (49.91%), Query Frame = 0
BLAST of Spg012820 vs. ExPASy Swiss-Prot
Match: B8CX22 (3-isopropylmalate dehydratase large subunit OS=Halothermothrix orenii (strain H 168 / OCM 544 / DSM 9562) OX=373903 GN=leuC PE=3 SV=1) HSP 1 Score: 301.2 bits (770), Expect = 2.8e-80 Identity = 176/528 (33.33%), Postives = 270/528 (51.14%), Query Frame = 0
BLAST of Spg012820 vs. ExPASy Swiss-Prot
Match: B0TCR2 (3-isopropylmalate dehydratase large subunit OS=Heliobacterium modesticaldum (strain ATCC 51547 / Ice1) OX=498761 GN=leuC PE=3 SV=1) HSP 1 Score: 296.6 bits (758), Expect = 6.9e-79 Identity = 176/528 (33.33%), Postives = 265/528 (50.19%), Query Frame = 0
BLAST of Spg012820 vs. ExPASy TrEMBL
Match: A0A6J1HIW0 (3-isopropylmalate dehydratase OS=Cucurbita moschata OX=3662 GN=LOC111463365 PE=4 SV=1) HSP 1 Score: 869.8 bits (2246), Expect = 7.3e-249 Identity = 443/535 (82.80%), Postives = 446/535 (83.36%), Query Frame = 0
BLAST of Spg012820 vs. ExPASy TrEMBL
Match: A0A6J1IC64 (3-isopropylmalate dehydratase OS=Cucurbita maxima OX=3661 GN=LOC111471179 PE=4 SV=1) HSP 1 Score: 869.4 bits (2245), Expect = 9.6e-249 Identity = 442/535 (82.62%), Postives = 446/535 (83.36%), Query Frame = 0
BLAST of Spg012820 vs. ExPASy TrEMBL
Match: A0A5D3E4R8 (3-isopropylmalate dehydratase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold455G003900 PE=4 SV=1) HSP 1 Score: 865.5 bits (2235), Expect = 1.4e-247 Identity = 439/535 (82.06%), Postives = 445/535 (83.18%), Query Frame = 0
BLAST of Spg012820 vs. ExPASy TrEMBL
Match: A0A1S3CQ00 (3-isopropylmalate dehydratase OS=Cucumis melo OX=3656 GN=LOC103503487 PE=4 SV=1) HSP 1 Score: 865.5 bits (2235), Expect = 1.4e-247 Identity = 439/535 (82.06%), Postives = 445/535 (83.18%), Query Frame = 0
BLAST of Spg012820 vs. ExPASy TrEMBL
Match: A0A0A0LEJ4 (3-isopropylmalate dehydratase OS=Cucumis sativus OX=3659 GN=Csa_3G912340 PE=4 SV=1) HSP 1 Score: 865.1 bits (2234), Expect = 1.8e-247 Identity = 437/535 (81.68%), Postives = 445/535 (83.18%), Query Frame = 0
BLAST of Spg012820 vs. TAIR 10
Match: AT4G13430.1 (isopropyl malate isomerase large subunit 1 ) HSP 1 Score: 770.8 bits (1989), Expect = 8.9e-223 Identity = 376/535 (70.28%), Postives = 419/535 (78.32%), Query Frame = 0
BLAST of Spg012820 vs. TAIR 10
Match: AT4G26970.1 (aconitase 2 ) HSP 1 Score: 85.9 bits (211), Expect = 1.3e-16 Identity = 138/576 (23.96%), Postives = 215/576 (37.33%), 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.
|