Spg021022 (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.ATGCTTCGCGATCCCAAACCACCCACCAAACGGAGAGAAAGGTTGTCAATTGGGAGGAAATCACAGCCAGTAGAGTCGCACATCTTCGAGGCGGCAAAAGGGAGAGGTCGGCGAGTTCGAAGCGGCAAGGGTTTCCGAAAGTGCTTGTAGAAGAACCCTCGATCCATGGTTAAAAAACGCTTAAAAAAGACAGATCCACAGATCTATGGACTTCCGGTCGTAGATCCATAGAAAATAGGACCCCCATGGACGAAAGGAGGGATTTGAAGAAGAAACCAGACGAACGTGGTCAAGATTGAAGCGTAAATCCGACGAAAATCAACCACGCCGTTTGGTCGGACGATAGACAGTGGCCATCGACTGAATAAACGAAAGGGGTAGACGAACGGACGGCCATGCGAGATCAGAGATGAAGGAGGAGACGAAGAGGAAGACGCATTGATGGCTGAATCAGAAGGGAGAGAGAAATGGGCGGCTTGCATTTGGGTTGTAAAGAGGATTACAACTTCAGGATTCCATGTAATAGCATTGGATTACAATGCAGCCCAATTACGGCCCATCAAACAATGTAATGTGGATTACATTACAACCCCATCCCCCAAACACCAAAGTATTCCAAACTCGTTGAAAGTAAAATTAACACCGGAGATTTCCAAAAAAAAAAAAAATTAACACTTTTTTTTTTGAGAAATTTTTTTTTTAAAAGAAGCTCTACCCACTTTTCTTCTTCCTCACGCCGTCTCCTCCTCCGTTTCAGCCGCTCAACGTTGGGCAATTGAGAGTCATGGGCCCATTTAAATATTGTTTTATAAAAATGGGCCCAATTTTGAATTTACTTATTTGGGGACCCCTGACATTGTGAAAAGACGAAATTATCCTTGCCCTAAAAAATTCTCCCTCTCTCGACCGTTGGCTTCCTTCTTCTTCTTCCTCACTATCGTGCTCCCTTCTCTCACGATTTCGCCATTTCTTCCTCACGTTCGTCTGCTGTTTCCTTGCAAATCTTCCGCGGAAATCAAGCTTACATCTACACGAGGTAAGTAACTACTAGCATTTTTGGGTTTTCATCGCGCGATTTTATCCTTCGGCAATGTCATTTTTGGGTTTTGTTAGAAATCTAGGGTTTTGCTGTATTGGCTGGATTCTGATTATGTTTTAGGGTTTAGTTAAGTTCGTCGGCGGTTTCTGAGGAGGGTAGAGGGAAGAAGAACACAATTTTGTGGTGTTTAAGACCAAGGTTTCTGGATCGAGATGAATCTCGGCCGGGATTCATCTTCTGTAATTTCTCGGTCAACCGGGAAATTTGGCAGAACTCGAAGCCTTTTCTCGGTTGACCGAGAAATTACACAGACCAATCCCCCTCTCGATTTCGACCGAGATTTAGACCGGGAAATTTGGCAGAACTCGAAGCCTTTCCTCGGTTGACCGAGAAATTACAGAAGATGAATCCCGGTCACGATTTCGACCGAGATTTAGACCGGGAATTATGGCAGAGGGCTTGTTTTTAGTTAATTTTTTTTTACTTTGTATATTTGAAAATGTTGATTATGAATTGTTGTAATTTGCTAGGTCTAGTATGGAATCACCGAGAAAATCCCCCTCGCTGACCATTTTCCGGCTGCGTTGACATGTTGCTCACACCTAAACAAAACCATTAGCAATATTAAGTCAACCCTAAGTCGTACCCAATTAGACCTCTTTAGGCAAACATGTTTCAGGCCTTTAATAGATGTGAATGTTATTTTTAATGGCCAATTAGTACACTACATCCTCCTTAGGGAAGTAGAGGAGAATAGGGCAAATGTGATGAGTTTTAAATTGTTAGGTCAGAAGGTCTCCTTTGGTAAGAGAGATTTTGACCTCATAACCGGCCTTCGTCATTCATTTAGACCAATGAGGAGAGATAGAGAGGGCCCTCCCAATAGACTCCTAAGATTATATTTTAGGGAGAATGTAGGCATGAAGGTGGAGGAGTTAGATAAGTCGTTTCCGACCCTTCAGTTTGAGAACGACGAAGATGCAGTTAAGATCGCAGCGTTTTATTTTTTTGAGTTGGCTTTGATGGGGAGGGAACGCAAACAACAAGTAGATGCCAGCACCCCAGACTTAATGGATGATTGGGTGGCATTCTGCAACGAGGATTGAAGTACCATCGTTTTCGACAAGACGATCAAAAGTCTGAAGAAGGCACCAAAGGGGAAGGCTGAGTCGTACAAGCATAAGGGAAGTGGTCCAAAGAAGCAGGAGACATACAGTCTATACGGTTTCCCGTTTGCTTTTCAGGTTAGTAGATAATTAAACTTTTGAAATGTAATCTTCATATAGTTTGTATGGTTTCCCATTTTTTTCTTTAATTGTTTCTTTACACAGATATGGGCATACGAGACTGTTTCATCTCTCACTGGACGTGTTGCCAATCGAGTAAGTGAGACGGCCATCCCACGCATCCGTCGATGGTCTTGCGCCCACTCCCCATCATACACGATCATTGCTGATGAAGTTTTTGGATCCCGAGCGGTTAGTTTTTATAATTATTTAAATGTTTTGTCTTAATTATTATTTGTAAACAACCAACCACTAACTAAGTAATTTTTTTGCAGGCTAGAGTTAGGTCGAGTCTTGTTTCTTCTGCAGAGGAGAGTCAATACATGAATCGAGTGATGGAGCCTCCACGGGTGCCAGAGCCAGTGCATGAGCCAGTACTCGAGTCAGGGCAAGAGCCAGATCAAGAACGAGAGAGTCTACCTACTGTATCCGAGGCTAGACTACCTGATGTAGAGGAGGCTACTGTAGCCGACACTGAGATGGTAGATGTCATTGATGCAAATAAGAGAGGAAGGGAAAAAGAGGACAAAGACAAAGGGAAAGAGAAAGAGGAGGAAGTAGAAAAAGAGGATGAGAGCAGGAAGGAGAAGAAGAAGAAGAAGAAGATGATGATGATGAAGCAGACCTGTGAGTGTAGCCAGTGGATGGAGAGTATGGATGCTCGCATGTCTGATATGGAGTCATGCCTGAAGTCCATTACCAAGTTCTTACGTCGTCTCTCTAAGGTATTTTGGTAGTCGATCATTGTTTATCGTATTGGTTGGTTTTAGTTTGTCTAACATTTGTAAACTTTCAGGGAAAATTCGTGGACCCTGAGAAGTACTTTGGACCGAAAGATGGTCCGGATGACGTGGGTGGTCCATCAAAAGGACCGGATGACATGGGTGGTCCATCGAAAGGACCGGATGACGTGGGTGGTCCATCGAAAGGACCAGATGACAATGAGAAGGACGGGAAGGAGAAGGACGTTGATGAGGCGTACAACATAGAGCATATTACGGTAATAATATTTCTTATACTATCACATTTAAAATTTTACATTTCCATATTTAAATGTAAGTTGATATACAGGAGTTGGAGTCTCAACCAACCACTGACTTAGAGTCTCACTCAATTACTGACGTGGAGTCTCAACCAACTACAGACCCAGTCGAACTAATTGCACCTAAGGCTGAGGTACTTATTTGTCTTAATGTAAACAATATTATATAAATCTCACTAATGTATAAAATGTATGTATGTAGCCTGTTGAGTTAGGTGATGAGGAGGTTGAGGAGGTTGAAAAAGTAATCGGGCCGCATGAATTGGTAAAAAGACGAGGAAAGCGGACCCGACAAATTTCTTGGAAGCTTCGGTCTCCATGGGCTGACACCAGGCCGGACGGCAAAAGGCGAAAAGTTAAGCAATACGATCCCATGCGTGCCATTCCTGAGGAATACGAGACCAAGTTTCAGAAATGGTTGGAAGACCCATCGTCTGACGGATCGGAGCGTAAGACAGTATATGCCTACAGAAGCAAGCAGTGGTTTCAGACGTTACTCAAACCGTCTCATTGGATGAGTGATGAGGTACAAACCATCTTATCACTACAGTTGTTTTTTTAATCAAGGTTTTAGGCATAGGGTTTATAGTTAAAAGTTTAGGACTTAGCGTTTATGATTTAGGGTAATTTAGGGTTTAGGACTACAATTCACAATTCTTCTGATTCTGTAGGTGATTGACTCTCTCTTCCTCTTTATTCGGAAGAAGATGGATACCCGTCCTGACTTATGTCATCGAAAGTTTGTCACGGCGGATGTATTTGTAACAGTACGTACTTTCATCTTATTGAATTTCACTTAATCTAAATTGTACTAAGATTGAATGTTGTGCAGGAATTTTTGAGGCGCGAGGATGTGTACGAAGAACTCCTTCGTAGTGACCATGGGAACAACACGTTCGATTGGAGCAGATTCAAGACGGTCACTAACTACGTAATGGGAGAACACACAGATTACGGCGTTCCTTGGAGTTCCGTTGATGTTGTCTACATGCCCTTCAACTTAGGTAGAAACCATTGGGTTCTACTGTGCGCTGACTTTGAAACGGGCGAATTTGTGTTGACAGACTCCCTAACGACACTGAATTCAGATGCAGACATAGCCAAGCAGATGAATACGGTATGCACCATTTTTCCTAGGCTGCTATTAAGGTGCGACGTTATGAAGGAGAAGCCGTCTCTTCCAACACATCCATGGCGATTCAAAAGGAAGACCCAAGTGCCACAACAACAAGATAGTGGGGATTGTGGGGTTTTCACTGTAAAGTTTTTGGAATATGATGTAACTAGATCAGATTTAGGTAGTCTTAGTCAGGAGAAAATTGAGTTTTGTAGGCGGCAATTTGCTGTACAACTTTGGGCCAATAGGCCGTTCTTTTAGTAAAAAA ATGCTTCGCGATCCCAAACCACCCACCAAACGGAGAGAAAGGTTGTCAATTGGGAGGAAATCACAGCCAGTAGAGTCGCACATCTTCGAGGCGGCAAAAGGGAGAGGTCGGCGAGTTCGAAGCGGCAAGGGTTTCCGAAATACCATCGTTTTCGACAAGACGATCAAAAGTCTGAAGAAGGCACCAAAGGGGAAGGCTGAGTCGTACAAGCATAAGGGAAGTGGTCCAAAGAAGCAGGAGACATACAGTCTATACGGTTTCCCGTTTGCTTTTCAGATATGGGCATACGAGACTGTTTCATCTCTCACTGGACGTGTTGCCAATCGAGTAAGTGAGACGGCCATCCCACGCATCCGTCGATGGTCTTGCGCCCACTCCCCATCATACACGATCATTGCTGATGAAGTTTTTGGATCCCGAGCGGCTAGAGTTAGGTCGAGTCTTGTTTCTTCTGCAGAGGAGAGTCAATACATGAATCGAGTGATGGAGCCTCCACGGGTGCCAGAGCCAGTGCATGAGCCAGTACTCGAGTCAGGGCAAGAGCCAGATCAAGAACGAGAGAGTCTACCTACTGTATCCGAGGCTAGACTACCTGATGTAGAGGAGGCTACTGTAGCCGACACTGAGATGGTAGATGTCATTGATGCAAATAAGAGAGGAAGGGAAAAAGAGGACAAAGACAAAGGGAAAGAGAAAGAGGAGGAAGTAGAAAAAGAGGATGAGAGCAGGAAGGAGAAGAAGAAGAAGAAGAAGATGATGATGATGAAGCAGACCTGTGAGTGTAGCCAGTGGATGGAGAGTATGGATGCTCGCATGTCTGATATGGAGTCATGCCTGAAGTCCATTACCAAGTTCTTACGTCGTCTCTCTAAGGGAAAATTCGTGGACCCTGAGAAGTACTTTGGACCGAAAGATGGTCCGGATGACGTGGGTGGTCCATCAAAAGGACCGGATGACATGGGTGGTCCATCGAAAGGACCGGATGACGTGGGTGGTCCATCGAAAGGACCAGATGACAATGAGAAGGACGGGAAGGAGAAGGACGTTGATGAGGCGTACAACATAGAGCATATTACGGAGTTGGAGTCTCAACCAACCACTGACTTAGAGTCTCACTCAATTACTGACGTGGAGTCTCAACCAACTACAGACCCAGTCGAACTAATTGCACCTAAGGCTGAGCCTGTTGAGTTAGGTGATGAGGAGGTTGAGGAGGTTGAAAAAGTAATCGGGCCGCATGAATTGGTAAAAAGACGAGGAAAGCGGACCCGACAAATTTCTTGGAAGCTTCGGTCTCCATGGGCTGACACCAGGCCGGACGGCAAAAGGCGAAAAGTTAAGCAATACGATCCCATGCGTGCCATTCCTGAGGAATACGAGACCAAGTTTCAGAAATGGTTGGAAGACCCATCGTCTGACGGATCGGAGCGTAAGACAGTATATGCCTACAGAAGCAAGCAGTGGTTTCAGACGTTACTCAAACCGTCTCATTGGATGAGTGATGAGGTGATTGACTCTCTCTTCCTCTTTATTCGGAAGAAGATGGATACCCGTCCTGACTTATGTCATCGAAAGTTTGTCACGGCGGATGTATTTGTAACAGAATTTTTGAGGCGCGAGGATGTGTACGAAGAACTCCTTCGTAGTGACCATGGGAACAACACGTTCGATTGGAGCAGATTCAAGACGGTCACTAACTACGTAATGGGAGAACACACAGATTACGGCGTTCCTTGGAGTTCCGTTGATGTTGTCTACATGCCCTTCAACTTAGGTAGAAACCATTGGGTTCTACTGTGCGCTGACTTTGAAACGGGCGAATTTGTGTTGACAGACTCCCTAACGACACTGAATTCAGATGCAGACATAGCCAAGCAGATGAATACGGTATGCACCATTTTTCCTAGGCTGCTATTAAGGTGCGACGTTATGAAGGAGAAGCCGTCTCTTCCAACACATCCATGGCGATTCAAAAGGAAGACCCAAGTGCCACAACAACAAGATAGTGGGGATTGTGGGGTTTTCACTGTAAAGTTTTTGGAATATGATGTAACTAGATCAGATTTAGGTAGTCTTAGTCAGGAGAAAATTGAGTTTTGTAGGCGGCAATTTGCTGTACAACTTTGGGCCAATAGGCCGTTCTTTTAG ATGCTTCGCGATCCCAAACCACCCACCAAACGGAGAGAAAGGTTGTCAATTGGGAGGAAATCACAGCCAGTAGAGTCGCACATCTTCGAGGCGGCAAAAGGGAGAGGTCGGCGAGTTCGAAGCGGCAAGGGTTTCCGAAATACCATCGTTTTCGACAAGACGATCAAAAGTCTGAAGAAGGCACCAAAGGGGAAGGCTGAGTCGTACAAGCATAAGGGAAGTGGTCCAAAGAAGCAGGAGACATACAGTCTATACGGTTTCCCGTTTGCTTTTCAGATATGGGCATACGAGACTGTTTCATCTCTCACTGGACGTGTTGCCAATCGAGTAAGTGAGACGGCCATCCCACGCATCCGTCGATGGTCTTGCGCCCACTCCCCATCATACACGATCATTGCTGATGAAGTTTTTGGATCCCGAGCGGCTAGAGTTAGGTCGAGTCTTGTTTCTTCTGCAGAGGAGAGTCAATACATGAATCGAGTGATGGAGCCTCCACGGGTGCCAGAGCCAGTGCATGAGCCAGTACTCGAGTCAGGGCAAGAGCCAGATCAAGAACGAGAGAGTCTACCTACTGTATCCGAGGCTAGACTACCTGATGTAGAGGAGGCTACTGTAGCCGACACTGAGATGGTAGATGTCATTGATGCAAATAAGAGAGGAAGGGAAAAAGAGGACAAAGACAAAGGGAAAGAGAAAGAGGAGGAAGTAGAAAAAGAGGATGAGAGCAGGAAGGAGAAGAAGAAGAAGAAGAAGATGATGATGATGAAGCAGACCTGTGAGTGTAGCCAGTGGATGGAGAGTATGGATGCTCGCATGTCTGATATGGAGTCATGCCTGAAGTCCATTACCAAGTTCTTACGTCGTCTCTCTAAGGGAAAATTCGTGGACCCTGAGAAGTACTTTGGACCGAAAGATGGTCCGGATGACGTGGGTGGTCCATCAAAAGGACCGGATGACATGGGTGGTCCATCGAAAGGACCGGATGACGTGGGTGGTCCATCGAAAGGACCAGATGACAATGAGAAGGACGGGAAGGAGAAGGACGTTGATGAGGCGTACAACATAGAGCATATTACGGAGTTGGAGTCTCAACCAACCACTGACTTAGAGTCTCACTCAATTACTGACGTGGAGTCTCAACCAACTACAGACCCAGTCGAACTAATTGCACCTAAGGCTGAGCCTGTTGAGTTAGGTGATGAGGAGGTTGAGGAGGTTGAAAAAGTAATCGGGCCGCATGAATTGGTAAAAAGACGAGGAAAGCGGACCCGACAAATTTCTTGGAAGCTTCGGTCTCCATGGGCTGACACCAGGCCGGACGGCAAAAGGCGAAAAGTTAAGCAATACGATCCCATGCGTGCCATTCCTGAGGAATACGAGACCAAGTTTCAGAAATGGTTGGAAGACCCATCGTCTGACGGATCGGAGCGTAAGACAGTATATGCCTACAGAAGCAAGCAGTGGTTTCAGACGTTACTCAAACCGTCTCATTGGATGAGTGATGAGGTGATTGACTCTCTCTTCCTCTTTATTCGGAAGAAGATGGATACCCGTCCTGACTTATGTCATCGAAAGTTTGTCACGGCGGATGTATTTGTAACAGAATTTTTGAGGCGCGAGGATGTGTACGAAGAACTCCTTCGTAGTGACCATGGGAACAACACGTTCGATTGGAGCAGATTCAAGACGGTCACTAACTACGTAATGGGAGAACACACAGATTACGGCGTTCCTTGGAGTTCCGTTGATGTTGTCTACATGCCCTTCAACTTAGGTAGAAACCATTGGGTTCTACTGTGCGCTGACTTTGAAACGGGCGAATTTGTGTTGACAGACTCCCTAACGACACTGAATTCAGATGCAGACATAGCCAAGCAGATGAATACGGTATGCACCATTTTTCCTAGGCTGCTATTAAGGTGCGACGTTATGAAGGAGAAGCCGTCTCTTCCAACACATCCATGGCGATTCAAAAGGAAGACCCAAGTGCCACAACAACAAGATAGTGGGGATTGTGGGGTTTTCACTGTAAAGTTTTTGGAATATGATGTAACTAGATCAGATTTAGGTAGTCTTAGTCAGGAGAAAATTGAGTTTTGTAGGCGGCAATTTGCTGTACAACTTTGGGCCAATAGGCCGTTCTTTTAG MLRDPKPPTKRRERLSIGRKSQPVESHIFEAAKGRGRRVRSGKGFRNTIVFDKTIKSLKKAPKGKAESYKHKGSGPKKQETYSLYGFPFAFQIWAYETVSSLTGRVANRVSETAIPRIRRWSCAHSPSYTIIADEVFGSRAARVRSSLVSSAEESQYMNRVMEPPRVPEPVHEPVLESGQEPDQERESLPTVSEARLPDVEEATVADTEMVDVIDANKRGREKEDKDKGKEKEEEVEKEDESRKEKKKKKKMMMMKQTCECSQWMESMDARMSDMESCLKSITKFLRRLSKGKFVDPEKYFGPKDGPDDVGGPSKGPDDMGGPSKGPDDVGGPSKGPDDNEKDGKEKDVDEAYNIEHITELESQPTTDLESHSITDVESQPTTDPVELIAPKAEPVELGDEEVEEVEKVIGPHELVKRRGKRTRQISWKLRSPWADTRPDGKRRKVKQYDPMRAIPEEYETKFQKWLEDPSSDGSERKTVYAYRSKQWFQTLLKPSHWMSDEVIDSLFLFIRKKMDTRPDLCHRKFVTADVFVTEFLRREDVYEELLRSDHGNNTFDWSRFKTVTNYVMGEHTDYGVPWSSVDVVYMPFNLGRNHWVLLCADFETGEFVLTDSLTTLNSDADIAKQMNTVCTIFPRLLLRCDVMKEKPSLPTHPWRFKRKTQVPQQQDSGDCGVFTVKFLEYDVTRSDLGSLSQEKIEFCRRQFAVQLWANRPFF Homology
BLAST of Spg021022 vs. NCBI nr
Match: XP_022158807.1 (uncharacterized protein LOC111025273 [Momordica charantia]) HSP 1 Score: 196.1 bits (497), Expect = 1.1e-45 Identity = 96/251 (38.25%), Postives = 139/251 (55.38%), Query Frame = 0
BLAST of Spg021022 vs. NCBI nr
Match: KAA0044249.1 (Ulp1-like peptidase [Cucumis melo var. makuwa]) HSP 1 Score: 195.7 bits (496), Expect = 1.4e-45 Identity = 185/677 (27.33%), Postives = 304/677 (44.90%), Query Frame = 0
BLAST of Spg021022 vs. NCBI nr
Match: TYK09806.1 (Ulp1-like peptidase [Cucumis melo var. makuwa]) HSP 1 Score: 191.4 bits (485), Expect = 2.6e-44 Identity = 188/678 (27.73%), Postives = 308/678 (45.43%), Query Frame = 0
BLAST of Spg021022 vs. NCBI nr
Match: TYK01838.1 (Ulp1-like peptidase [Cucumis melo var. makuwa]) HSP 1 Score: 191.4 bits (485), Expect = 2.6e-44 Identity = 188/678 (27.73%), Postives = 308/678 (45.43%), Query Frame = 0
BLAST of Spg021022 vs. NCBI nr
Match: KAA0055496.1 (Ulp1-like peptidase [Cucumis melo var. makuwa] >TYK14349.1 Ulp1-like peptidase [Cucumis melo var. makuwa] >TYK18723.1 Ulp1-like peptidase [Cucumis melo var. makuwa] >TYK28419.1 Ulp1-like peptidase [Cucumis melo var. makuwa]) HSP 1 Score: 190.7 bits (483), Expect = 4.5e-44 Identity = 183/677 (27.03%), Postives = 302/677 (44.61%), Query Frame = 0
BLAST of Spg021022 vs. ExPASy Swiss-Prot
Match: Q94F30 (Ubiquitin-like-specific protease ESD4 OS=Arabidopsis thaliana OX=3702 GN=ESD4 PE=1 SV=1) HSP 1 Score: 57.0 bits (136), Expect = 1.0e-06 Identity = 53/218 (24.31%), Postives = 97/218 (44.50%), Query Frame = 0
BLAST of Spg021022 vs. ExPASy Swiss-Prot
Match: O65278 (Putative ubiquitin-like-specific protease 1B OS=Arabidopsis thaliana OX=3702 GN=ULP1B PE=5 SV=2) HSP 1 Score: 55.1 bits (131), Expect = 3.9e-06 Identity = 51/216 (23.61%), Postives = 99/216 (45.83%), Query Frame = 0
BLAST of Spg021022 vs. ExPASy Swiss-Prot
Match: Q09353 (Sentrin-specific protease OS=Caenorhabditis elegans OX=6239 GN=ulp-1 PE=2 SV=3) HSP 1 Score: 48.1 bits (113), Expect = 4.7e-04 Identity = 37/155 (23.87%), Postives = 68/155 (43.87%), Query Frame = 0
BLAST of Spg021022 vs. ExPASy TrEMBL
Match: A0A5A7TSP7 (Ulp1-like peptidase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold2741G00060 PE=3 SV=1) HSP 1 Score: 195.7 bits (496), Expect = 6.7e-46 Identity = 185/677 (27.33%), Postives = 304/677 (44.90%), Query Frame = 0
BLAST of Spg021022 vs. ExPASy TrEMBL
Match: A0A5D3BS58 (Ulp1-like peptidase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold113G00860 PE=3 SV=1) HSP 1 Score: 191.4 bits (485), Expect = 1.3e-44 Identity = 188/678 (27.73%), Postives = 308/678 (45.43%), Query Frame = 0
BLAST of Spg021022 vs. ExPASy TrEMBL
Match: A0A5D3CHE4 (Ulp1-like peptidase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold127G001040 PE=3 SV=1) HSP 1 Score: 191.4 bits (485), Expect = 1.3e-44 Identity = 188/678 (27.73%), Postives = 308/678 (45.43%), Query Frame = 0
BLAST of Spg021022 vs. ExPASy TrEMBL
Match: A0A5D3DYH3 (Ulp1-like peptidase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold257G00240 PE=3 SV=1) HSP 1 Score: 190.7 bits (483), Expect = 2.2e-44 Identity = 183/677 (27.03%), Postives = 302/677 (44.61%), Query Frame = 0
BLAST of Spg021022 vs. ExPASy TrEMBL
Match: A0A5D3DIC1 (Ulp1-like peptidase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold142G003860 PE=3 SV=1) HSP 1 Score: 190.7 bits (483), Expect = 2.2e-44 Identity = 183/677 (27.03%), Postives = 302/677 (44.61%), Query Frame = 0
BLAST of Spg021022 vs. TAIR 10
Match: AT5G45570.1 (Ulp1 protease family protein ) HSP 1 Score: 63.5 bits (153), Expect = 7.7e-10 Identity = 37/129 (28.68%), Postives = 64/129 (49.61%), Query Frame = 0
BLAST of Spg021022 vs. TAIR 10
Match: AT4G15880.1 (Cysteine proteinases superfamily protein ) HSP 1 Score: 57.0 bits (136), Expect = 7.2e-08 Identity = 53/218 (24.31%), Postives = 97/218 (44.50%), Query Frame = 0
BLAST of Spg021022 vs. TAIR 10
Match: AT4G08430.1 (Ulp1 protease family protein ) HSP 1 Score: 56.2 bits (134), Expect = 1.2e-07 Identity = 34/129 (26.36%), Postives = 62/129 (48.06%), Query Frame = 0
BLAST of Spg021022 vs. TAIR 10
Match: AT2G07240.1 (cysteine-type peptidases;cysteine-type peptidases ) HSP 1 Score: 55.8 bits (133), Expect = 1.6e-07 Identity = 30/99 (30.30%), Postives = 45/99 (45.45%), 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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